何茂霞
教授
所属院部: 环境研究院
访问次数:
基本信息
  • 教师拼音名称:
    He Maoxia
  • 电子邮箱:
  • 入职时间:
    2006-09-12
  • 所在单位:
    环境研究院
  • 职务:
    环境理论化学与实验研究所所长/院长助理
  • 学历:
    研究生(博士)毕业
  • 办公地点:
    山东大学青岛校区淦昌苑 K6-412
  • 性别:
  • 学位:
    博士生
  • 在职信息:
    在职
  • 毕业院校:
    山东大学
  • 博士生导师
  • 硕士生导师
曾获荣誉:

2016    2016年度山东大学优秀硕士学位论文指导奖;
2013    2013年度环境研究院奖教金奖;
2013    2013年度山东大学优秀硕士学位论文指导奖;
教师简介

何茂霞,女,教授,博士生导师。中共环境研究院教工党支部书记、环境研究院院长助理、环境理论化学与实验研究所所长、山东大学生态环境大数据创新研究中心常务副主任。 2005年6月博士毕业于山东大学,2005年9月至2006年9月在香港城市大学物理材料系做高级研究助理,主要从事硅纳米材料对于大气环境中有毒有害气体探测机制的理论研究。2006年9月至今为山东大学副教授、教授,从事环境中有毒有害物质均相/异相大气化学过程及气溶胶形成机制的理论研究。其中,2012年7月至2013年7月在美国佛罗里达大学做访问学者,主要从事水体中污染降解机制研究;2023年9月至2024年9月在加拿大阿尔伯塔大学做访问学者。目前已申请到国家自然科学基金面上项目5项,面上子课题1项,其他省部级项目6项,参与国家自然科学基金重点项目2项。在Chem.Eng.J., J. Hazard. Mater., Water Research, Environ. Sci. & Technol., J. Cata., Atoms. Environ.等国际主流期刊上发表SCI学术论文150余篇。所培养的研究生中已有10名获得山东大学优秀毕业生荣誉称号,3名获山东省优秀毕业生荣誉称号,有2名学生的毕业论文获山东大学优秀毕业论文奖,4名获得国家奖学金。三次获得山东大学优研究生指导老师的称号。


教育经历
  • 2001-09  — 2005-07
    山东大学
    化学物理
    理学博士学位
工作经历
  • 2005-09 — 2006-09
    香港城市大学
  • 2012-07 — 2013-07
    美国弗罗里达大学
  • 2006-09-至今
    山东大学环境研究院
  • 2006-09-至今
    山东大学
    教授 博导
  • 2012-07 — 2013-07
    弗罗里达大学
    访问学者
  • 2005-09 — 2006-09
    香港城市大学
    高级研究助理
研究领域

主要从事含氧类挥发性不饱和有机化合物在对流层中的大气化学转化过程及其对二次有机气溶胶的形成机制研究、典型持久性有机污染物在水体中的降解转化行为及其毒性预测评估、新型有毒有机污染物在材料表面的催化降解转化机制及环境功能材料设计等。

科研成果
论文

1.  Gu, Qingyuan. Theoretical evidence for a pH-dependent effect of carbonate on the degradation of sulfonamide antibiotics.  Environmental Pollution,  361,  2024. 

2.  赵曼淑. Long-lasting organics removal via ?OH adsorbed transition metal flocs: Electron transfer-mediated H-bond and van der Waals force.  PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF T,  121,  2024. 

3.  霍彦汝. Atmospheric fate of typical liquid crystal monomers in the tropospheric gas, liquid, and granular phases.  《JOURNAL OF ENVIRONMENTAL SCIENCES-CHINA》,  2024. 

4.  安泽秀. Hydroxylation of some emerging disinfection byproducts (DBPs) in water environment: Halogenation induced strong pH-dependency.  JOURNAL OF HAZARDOUS MATERIALS,  452,  2023. 

5.  霍彦汝. The aomogeneous and heterogeneous oxidation of organophosphate esters (OPEs) in the atmosphere: Take diphenyl phosphate (DPhP) as an example.  Environmental Pollution,  324,  2023. 

6.  周玉欣. Efficient electrocatalytic CO2 reduction on Ti3C2O2 surfaces: The effect of single-atom TM anchoring on product selectivity.  Applied Surface Science,  616,  2023. 

7.  周玉欣. Efficient electrocatalytic CO2 reduction on Ti3C2O2 surfaces: The effect of single-atom TM anchoring on product selectivity.  Applied Surface Science,  2023. 

8.  Dongchen Yang. Citric Acid Modified Ultrasmall Copper Peroxide Nanozyme for in situ Remediation of Environmental Sulfonylurea Herbicide Contamination.  JOURNAL OF HAZARDOUS MATERIALS,  443,  2023. 

9.  李明雪. The multiple roles of phenols in the degradation of aniline contaminants by sulfate radicals: A combined study of DFT calculations and experiments.  JOURNAL OF HAZARDOUS MATERIALS,  443,  2023. 

10.  姜金蝉. Comparison of ribavirin degradation in the UV/H2O2 and UV/PDS systems: Reaction mechanism, operational parameter and toxicity evaluation.  Journal of Environmental Chemical Engineering,  11,  2023. 

11.  . Ozone mechanism, kinetics, and toxicity studies of halophenols: Theoretical calculation combined with toxicity experiment.  Science of The Total Environment,  858,  2023. 

12.  王乃仙. A sandstorm extreme event from the Yellow River Basin in March 2021: Accurate identification and driving cause..  Science of The Total Environment,  846,  157424, 2022. 

13.  李明雪. Individual and combined degradation of N-heterocyclic compounds under sulfate radical-based advanced oxidation processes.  Chemical Engineering Journal,  442,  2022. 

14.  姜金蝉. Theoretical investigation on degradation of DEET by ?OH in aqueous solution: Mechanism, kinetics, process optimization and toxicity evaluation.  Journal of Cleaner Production,  362,  2022. 

15.  苏瑞典. Visible-Light Photocatalytic Chlorite Activation Mediated by Oxygen Vacancy Abundant Nd-Doped BiVO4 for Efficient Chlorine Dioxide Generation and Pollutant Degradation.  ACS Applied Materials & Interfaces,  2022. 

16.  苏瑞典. Visible-Light Photocatalytic Chlorite Activation Mediated by Oxygen Vacancy Abundant Nd-Doped BiVO4 for Efficient Chlorine Dioxide Generation and Pollutant Degradation.  ACS Applied Materials & Interfaces,  14,  31920-31932, 2022. 

17.  周玉欣. Electroreduction of nitrogen to ammonia by single-atom catalysis with synergistic boron-carbon nitrogen nanotubes.  Journal of Environmental Chemical Engineering,  10,  2022. 

18.  安泽秀. Unravelling the effects of complexation of transition metal ions on the hydroxylation of catechol over the whole pH region.  《JOURNAL OF ENVIRONMENTAL SCIENCES-CHINA》,  115,  392, 2022. 

19.  魏博. Nonmetal doped carbon nitride nanosheet as photocatalyst for degradation of 4, 5-dichloroguaiacol.  Environmental Research,  207,  112623, 2022. 

20.  . Theoretical insights into the degradation of swep by hydroxyl radicals in atmosphere and water environment: Mechanisms, kinetics and toxicity.  Science of The Total Environment,  816,  2022. 

21.  安泽秀. The pH-dependent contributions of radical species during the removal of aromatic acids and bases in light/chlorine systems.  Chemical Engineering Journal,  433,  2022. 

22.  孙建菲. Oxidative degradation of phenols and substituted phenols in the water and atmosphere: a review.  ADVANCED COMPOSITES AND HYBRID MATERIALS,  2022. 

23.  李明雪. Simulation degradation of bromophenolic compounds in chlorine-based advanced oxidation processes: Mechanism, microscopic and apparent kinetics, and toxicity assessment.  Chemosphere,  291,  2022. 

24.  霍彦汝. The reaction laws and toxicity effects of phthalate acid esters (PAEs) ozonation degradation on the troposphere.  Environmental Pollution,  295,  2022. 

25.  王雪玉. Degradation evaluation of acrylamide in advanced oxidation processes based on theoretical method: Mechanisms, kinetics, toxicity evaluation and the role of soil particles.  JOURNAL OF HAZARDOUS MATERIALS,  2022. 

26.  王雪玉. Degradation evaluation of acrylamide in advanced oxidation processes based on theoretical method: Mechanisms, kinetics, toxicity evaluation and the role of soil particles.  JOURNAL OF HAZARDOUS MATERIALS,  424,  2022. 

27.  徐世平. Diametrically opposite effect of Cu2+ on sulfamerazine and ciprofloxacin adsorption-photodegradation in g-C3N4/visible light system: Behavior and mechanism study.  Chemical Engineering Journal,  2022. 

28.  王雪玉. Enhanced uptake of methacrolein at the acidic nanoparticle interface: Adsorption, heterogeneous reaction and impact for the secondary organic aerosol formation.  Science of The Total Environment,  800,  2021. 

29.  王乃仙. Homogeneous and heterogeneous atmospheric ozonolysis of acrylonitrile on the mineral dust aerosols surface.  Journal of Environmental Chemical Engineering,  9,  2021. 

30.  修齐. Warrior's armor: Study on the aging of sulfidated micro-sized zero valent iron in air and its subsequent reactivity for chloramphenicol degradation in different acid systems.  CHEMOSPHERE Journal,  285,  2021. 

31.  王雪玉. Understanding the properties of methyl vinyl ketone and methacrolein at the air-water interface: Adsorption, heterogeneous reaction and environmental impact analysis.  CHEMOSPHERE Journal,  283,  2021. 

32.  王雪玉. Understanding the properties of methyl vinyl ketone and methacrolein at the air-water interface: Adsorption, heterogeneous reaction and environmental impact analysis.  CHEMOSPHERE Journal,  283,  2021. 

33.  王蕙. Homogeneous and heterogeneous atmospheric ozonolysis of acrylonitrile on the mineral dust aerosols surface.  Journal of Environmental Chemical Engineering,  2021. 

34.  王乃仙. Atmospheric ozonolysis of crotonaldehyde in the absence and presence of hydroxylated silica oligomer cluster adsorption.  CHEMOSPHERE Journal,  281,  2021. 

35.  王乃仙. Atmospheric ozonolysis of crotonaldehyde in the absence and presence of hydroxylated silica oligomer cluster adsorption.  Chemosphere,  281,  2021. 

36.  霍彦汝. Ozonolysis of Permethrin in the Atmosphere: Mechanism, Kinetics, and Evaluation of Toxicity.  JOURNAL OF PHYSICAL CHEMISTRY A,  125,  7705, 2021. 

37.  李明雪. Acetaminophen degradation by hydroxyl and organic radicals in the peracetic acid-based advanced oxidation processes: Theoretical calculation and toxicity assessment.  JOURNAL OF HAZARDOUS MATERIALS,  416,  2021. 

38.  王乃仙. Gaseous and heterogeneous reactions on the mechanisms and kinetics of acrolein with ozone.  Atmospheric Environment,  254,  2021. 

39.  李明雪. Mechanism and kinetics of ClO[rad]-mediated degradation of aromatic compounds in aqueous solution: DFT and QSAR studies.  Chemical Engineering Journal,  412,  2021. 

40.  李明雪. Mechanism and kinetics of ClO?-mediated degradation of aromatic compounds in aqueous solution: DFT and QSAR studies.  Chemical Engineering Journal,  2021. 

41.  李明雪. Mechanism and kinetics of ClO0.7?-mediated degradation of aromatic compounds in aqueous solution: DFT and QSAR studies.  Chemical Engineering Journal ,  412,  2021. 

42.  李明雪. The roles of HO, ClO and BrO radicals in caffeine degradation: A theoretical study.  Science of The Total Environment,  2021. 

43.  李明雪. The roles of HO center dot, ClO center dot and BrO center dot radicals in caffeine degradation: A theoretical study.  Science of the Total Environment,  768,  2021. 

44.  梅琼. Degradation mechanisms, kinetics and eco-toxicity assessment of 2,4-Dinitrophenol by oxygen- containing free radicals.  Molecular Physics,  2021. 

45.  梅琼. Degradation mechanisms, kinetics and eco-toxicity assessment of 2,4-Dinitrophenol by oxygen-containing free radicals in aqueous solution.  MOLECULAR PHYSICS,  119,  2021. 

46.  薄晓飞. Theoretical insights into the degradation of tyrosol stimulated by hydroxyl and sulfate radicals in wastewater and ecotoxicity evaluation.  Journal of Cleaner Production,  293,  2021. 

47.  薄晓飞. Theoretical insights into the degradation of tyrosol stimulated by hydroxyl and sulfate radicals in wastewater.  Journal of Cleaner Production,  2021. 

48.  Theoretical insights into the degradation of tyrosol stimulated by hydroxyl and sulfate radicals in wastewater and ecotoxicity evaluation.  Journal Cleaner Production,  2021. 

49.  Mechanism and kinetics of ClO•-mediated degradation of aromatic compounds in aqueous solution: DFT and QSAR studies.  Chemical Engineering Journal,  2021. 

50.  Full insights into the roles of pH on hydroxylation of aromatic acids/bases and toxicity evaluation.  Water Research,  2021. 

51.  Gaseous and Heterogeneous Reactions on the Mechanisms and Kinetics of Acrolein with Ozone.  Atmospheric Environment,  2021. 

52.  Nonmetal-Doped C2N Nanosheets for Removal of Methoxyphenols: A First-Principles Study.  ACS Applied Nano Material,  2021. 

53.  The contribution of HO•, SO4•- and CO3•- radicals to the degradation of phenacetin in water: Mechanisms, kinetics, and toxicity evaluation.  Science of the Total Environment,  2021. 

54.  安泽秀. Full insights into the roles of pH on hydroxylation of aromatic acids/bases.  Water Research ,  2021. 

55.  安泽秀. Full insights into the roles of pH on hydroxylation of aromatic acids/bases and toxicity evaluation.  Water Research,  190,  2021. 

56.  安泽秀. Full insights into the roles of pH on hydroxylation of aromatic acids/bases and toxicity evaluation.  Water Research ,  190,  116689, 2021. 

57.  解举. Heteroatom-bridged pillar[4]quinone: evolutionary active cathode material for lithium-ion battery using density functional theory.  JOURNAL OF CHEMICAL SCIENCES,  133,  2021. 

58.  Theoretical studies on the heterogeneous ozonolysis of syringol on graphene: Mechanism, kinetics and ecotoxicity assessment.  Chemical Engineering Journal,  2021. 

59.  Cao, Jianghang. Synthesis of mesoporous nickel-cobalt-manganese sulfides as electroactive materials for hybrid supercapacitors.  Chemical Engineering Journal,  405,  2021. 

60.  王雪玉. Theoretical investigation on the degradation of methyl vinyl ketone initiated by center dot OH and center dot Cl in the atmosphere and aqueous particles: Mechanism, kinetics, and environmental impact analysis.  Atmospheric Environment,  246,  2021. 

61.  魏博. Nonmetal-Doped C 2 N Nanosheets for Removal of Methoxyphenols.  ACS Applied Nano Materials,  2021. 

62.  魏博. Nonmetal-Doped C2N Nanosheets for Removal of Methoxyphenols: A First-Principles Study.  ACS Applied Nano Materials,  4,  478, 2021. 

63.  Zhang, Chuanhui. Catalytic mechanism and pathways of 1, 2-dichloropropane oxidation over LaMnO3 perovskite: An experimental and DFT study.  JOURNAL OF HAZARDOUS MATERIALS,  402,  2021. 

64.  孙建菲. Theoretical studies on the heterogeneous ozonolysis of syringol on graphene: Mechanism, kinetics and ecotoxicity assessment.  Chemical Engineering Journal,  404,  2021. 

65.  魏博. Reactivity of aromatic contaminants towards nitrate radical in tropospheric gas and aqueous phase.  JOURNAL OF HAZARDOUS MATERIALS,  401,  2021. 

66.  Reactivity of aromatic contaminants towards nitrate radical in tropospheric gas and aqueous phase.  Journal of Hazardous Materials,  2021. 

67.  The roles of HO• and organic radicals in micropollutant degradation by peracetic acid-based advanced oxidation processes: Mechanism, kinetics, and toxicity studies.  Journal of Hazardous Materials,  2021. 

68.  邱兆旭. Theoretical Study of Ozonation of Methylparaben and Ethylparaben.  JOURNAL OF PHYSICAL CHEMISTRY A,  2020. 

69.  邱兆旭. Theoretical Study of Ozonation of Methylparaben and Ethylparaben in Aqueous Solution.  JOURNAL OF PHYSICAL CHEMISTRY A,  124,  10967, 2020. 

70.  李明雪. Theoretical investigation on the contribution of HO center dot, SO4 center dot- and CO3 center dot- radicals to the degradation of phenacetin in water: Mechanisms, kinetics, and toxicity evaluation.  Ecotoxicology and Environmental Safety,  204,  2020. 

71.  池英华. Effective blockage of chloride ion quenching and chlorinated by-product generation in photocatalytic wastewater treatment.  JOURNAL OF HAZARDOUS MATERIALS,  396,  2020. 

72.  徐世平. Effective blockage of chloride ion quenching and chlorinated by-product generation in photocatalytic wastewater treatment.  Journalof Hazardous Materials,  2020. 

73.  安泽秀. Effect of pH on center dot OH-induced degradation progress of syringol/syringaldehyde and health effect.  CHEMOSPHERE Journal,  255,  2020. 

74.  邱兆旭. Ozonation of diclofenac in the aqueous solution: Mechanism, kinetics and ecotoxicity assessment.  Environmental Research,  188,  2020. 

75.  王雪玉. Gaseous and heterogeneous reactions of low-molecular-weight (LMW) unsaturated ketones with O-3: Mechanisms, kinetics, and effects of mineral dust in tropospheric chemical processes.  Chemical Engineering Journal,  395,  2020. 

76.  Peralta, Ricardo A.. Highly Active Gas Phase Organometallic Catalysis Supported Within Metal-Organic Framework Pores.  Journal of the American Chemical Society,  142,  13533, 2020. 

77.  Peralta, Ricardo A.. Highly Active Gas Phase Organometallic Catalysis Supported Within Metal–Organic Framework Pores.  Journal of the American Chemical Society,  142,  2020. 

78.  何茂霞. Theoretical studies on the heterogeneous ozonolysis of syringol on graphene: Mechanism, kinetics and ecotoxicity assessment.  Chemical Engineering Journal,  2020. 

79.  何茂霞. Theoretical investigation on the contribution of HO, SO4- and CO3- radicals to the degradation of phenacetin in water: Mechanisms, kinetics, and toxicity evaluation.  Ecotoxicology and Environmental Safety,  2020. 

80.  Yu, Qiang. N-doping activated defective Co3O4 as an efficient catalyst for low-temperature methane oxidation.  应用催化-b,  269,  2020. 

81.  何茂霞. Reactivity of aromatic contaminants towards nitrate radical in tropospheric gas and aqueous phase.  JOURNAL OF HAZARDOUS MATERIALS,  2020. 

82.  Han, Dandan. Quantum chemical study on center dot Cl-initiated degradation of ethyl vinyl ether in atmosphere.  118,  2020. 

83.  何茂霞. Ozonation of diclofenac in the aqueous solution: Mechanism, kinetics and ecotoxicity assessment.  Environmental Research,  2020. 

84.  Ouyang, Yirui. Tuning Pt-skinned PtAg nanotubes in nanoscales to efficiently modify electronic structure for boosting performance of methanol electrooxidation.  应用催化-b,  265,  2020. 

85.  梅琼. Theoretical insight into the degradation of p-nitrophenol by OH radicals synergized with other active oxidants in aqueous solution.  JOURNAL OF HAZARDOUS MATERIALS,  389,  2020. 

86.  Effect of pH on •OH-induced degradation progress of syringol/syringaldehyde and health effect.  Chemosphere,  2020. 

87.  Theoretical investigation on the degradation of dibutyl phthalate initiated by OH• and SO4•‒ in aqueous solution: Mechanism, kinetics and ecotoxicity assessment.  Chemical Engineering Journal,  2020. 

88.  魏博. Insight into the effect of boron doping on electronic structure, photocatalytic and adsorption performance of g-C3N4 by first-principles study.  Applied Surface Science,  511,  2020. 

89.  Computational study on advanced oxidation degradation of phenacetin in water: mechanisms, kinetics, and toxicity evaluation.  Ecotoxity Environment Safety,  2020. 

90.  Gaseous and heterogeneous reactions of low-molecular-weight (LMW) unsaturated ketones with O3: Mechanisms, kinetics, and effects of mineral dust in tropospheric chemical processes.  Chemical Engineering Journal,  2020. 

91.  何茂霞. Effect of pH on ·OH -induced degradation progress of syringol/syringaldehyde and health effect.  Chemosphere,  2020. 

92.  何茂霞. Gaseous and heterogeneous reactions of low-molecular-weight (LMW) unsaturated ketones with O3: Mechanisms, kinetics, and effects of mineral dust in tropospheric chemical processes.  Chemical Engineering Journal,  2020. 

93.  Bao, Shouchun. Immobilization of zinc oxide nanoparticles on graphene sheets for lithium ion storage and electromagnetic microwave absorption.  MATERIALS CHEMISTRY AND PHYSICS Journal,  245,  2020. 

94.  Theoretical Insight into the Degradation of p-Nitrophenol by OH Radicals Synergized with other Active Oxidants in Aqueous Solution.  Journal of Hazardous Materials,  2020. 

95.  Ozonation of diclofenac in the aqueous solution: Mechanism, kinetics and ecotoxicity assessment.  Environmental Research,  2020. 

96.  Theoretical investigation on the contribution of HO, SO4- and CO3- radicals to the degradation of phenacetin in water: Mechanisms, kinetics, and toxicity evaluation.  Ecotoxicology and Environmental Safety,  2020. 

97.  薄晓飞. Degradation of prosulfocarb by hydroxyl radicals in gas and aqueous phase: Mechanisms, kinetics and toxicity.  Ecotoxicology and Environmental Safety,  191,  2020. 

98.  薄晓飞. Degradation of prosulfocarb by hydroxyl radicals in gas and aqueous phase: Mechanisms, kinetics and toxicity.  Ecotoxicology and Environmental Safety,  191,  110175, 2020. 

99.  孙建菲. Theoretical investigation on the degradation of dibutyl phthalate initiated by (OH)-O-center dot and SO4 center dot- in aqueous solution: Mechanism, kinetics and ecotoxicity assessment.  Chemical Engineering Journal ,  382,  2020. 

100.  Xie, Ju. Theoretical prediction of structures and inclusion properties of heteroatom-bridged pillar[n]arenes.  Struct Chem.,  31,  329, 2020. 

101.  何茂霞. Insight into the effect of boron doping on electronic structure, photocatalytic and adsorption performance of g-C3N4 by first-principles study.  Applied Surface Science,  2020. 

102.  韩丹丹. Quantum chemical study on ·Cl-initiated degradation of ethyl vinyl ether in atmosphere.  Molecular Physics,  2020. 

103.  何茂霞. Degradation of prosulfocarb by hydroxyl radicals in gas and aqueous phase:Mechanisms, kinetics and toxicity.  Ecotoxicology and Environmental Safety,  2020. 

104.  何茂霞. Degradation of prosulfocarb by hydroxyl radicals in gas and aqueous phase.  ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY,  2020. 

105.  Insight into the effect of boron doping on electronic structure, photocatalytic and adsorption performance of g-C3N4 by first-principles study.  Applied Surface Science,  2020. 

106.  Theoretical Study of Ozonation of Methylparaben and Ethylparaben in Aqueous Solution.  Journal of Physics Chemistry A,  2020. 

107.  孙建菲. Theoretical investigation on the degradation of dibutyl phthalate initiated by [rad]OH and SO4·- in aqueous solution: Mechanism, kinetics and ecotoxicity assessment.  Chemical Engineering Journal,  382,  2020. 

108.  何茂霞. Theoretical Insight into the Degradation of p-Nitrophenol by OH Radicals Synergized with other Active Oxidants in Aqueous Solution.  JOURNAL OF HAZARDOUS MATERIALS,  2019. 

109.  赵正华. Triarylborane-based [5]Helicenes with Full-Color Circularly Polarized Luminescence.  Organic Letters,  21,  9569, 2019. 

110.  魏博. Feasibility of carbon-doped BN nanosheets as photocatalyst for degradation of 4-chloroguaiacol and ecotoxicity fate.  Journal of Catalysis,  2019. 

111.  魏博. Feasibility of carbon-doped BN nanosheets as photocatalyst for degradation of 4-chloroguaiacol and ecotoxicity fate during indirect photochemical transformation.  Journal of Catalysis,  379,  10-17, 2019. 

112.  魏博. Feasibility of carbon-doped BN nanosheets as photocatalyst for degradation of 4-chloroguaiacol and ecotoxicity fate during indirect photochemical transformation.  Journal of Catalysis,  379,  10, 2019. 

113.  梅琼. Sulfate and hydroxyl radicals-initiated degradation reaction on phenolic contaminants in the aqueous phase: mechanisms, kinetics and toxicity assessment.  Chemical Engineering Journal,  373,  668, 2019. 

114.  安泽秀. Theoretical study on the mechanisms, kinetics and ecotoxicity assessment of OH-initiated reactions of guaiacol.  Science of The Total Environment,  2019. 

115.  安泽秀. Theoretical study on the mechanisms, kinetics and ecotoxicity assessment of OH-initiated reactions of guaiacol in atmosphere and wastewater.  Science of The Total Environment,  685,  729-740, 2019. 

116.  安泽秀. Theoretical study on the mechanisms, kinetics and ecotoxicity assessment of OH-initiated reactions of guaiacol in atmosphere and wastewater.  Science of The Total Environment,  685,  729, 2019. 

117.  何茂霞. Theoretical investigation on the degradation of dibutyl phthalate initiated by OH and SO4- in aqueous solution: Mechanism, kinetics and ecotoxicity assessment.  Chemical Engineering Journal,  382,  2019. 

118.  何茂霞  and Cao, Haijie. Quantum chemical study on isomerization and transformation of hexabromocyclododecanes.  Struct Chem.,  30,  899, 2019. 

119.  何茂霞  and Cao, Haijie. Quantum chemical study on isomerization and transformation of hexabromocyclododecanes.  Struct Chem.,  30,  899, 2019. 

120.  Cao, Haijie. Quantum chemical study on isomerization and transformation of hexabromocyclododecanes.  Struct. chem.,  30,  899-910, 2019. 

121.  何茂霞. Sulfate and hydroxyl radicals-initiated degradation reaction on phenolic contaminants in the aqueous phase: mechanisms, kinetics and toxicity assessment.  chemical engineering journal,  373,  668, 2019. 

122.  何茂霞  and 王雪玉. Mechanisms and Kinetic Parameters for the Gas-Phase Reactions of 3-Methyl-3-Buten-2-One and 3-Methyl-3-Penten-2-One with Ozone.  journal physical chemistry,  123,  2745, 2019. 

123.  Hai Chao Chen. Sea-urchin-like nickel–cobalt phosphide/phosphate composites as advanced battery materials for hybrid supercapacitors.  Journal of Materials Chemistry A,  2019. 

124.  何茂霞. Mechanisms and Kinetic Parameters for the Gas-Phase Reactions of 3-Methyl-3-Buten-2-One and 3-Methyl-3-Penten-2-One with Ozone.  journal physical chemistry,  123,  2745, 2019. 

125.  何茂霞  and 孙建菲. Ozonation of 3-methylcatechol and 4-methylcatechol in the atmosphere and aqueous particles: Mechanism, kinetics and ecotoxicity assessment.  Chemical Engineering Journal,  358,  456, 2019. 

126.  孙建菲. Ozonation of 3-methylcatechol and 4-methylcatechol in the atmosphere and aqueous particles: Mechanism, kinetics and ecotoxicity assessment.  Chemical Engineering Journal,  358,  456, 2019. 

127.  何茂霞  and 孙建菲. Ozonation of 3-methylcatechol and 4-methylcatechol in the atmosphere and aqueous particles: Mechanism, kinetics and ecotoxicity assessment.  Chemical Engineering Journal,  358,  456, 2019. 

128.  曹海杰. Quantum chemical study on isomerization and transformation of.  Structural Chemistry,  2019. 

129.  魏博. Theoretical study on gas-phase reactions of nitrate radicals with methoxyphenols: Mechanism, kinetic and toxicity assessment.  Environmental Pollution,  35,  1772, 2018. 

130.  何茂霞  and 魏博. Theoretical study on gas-phase reactions of nitrate radicals with methoxyphenols: Mechanism, kinetic and toxicity assessment.  Environmental Pollution,  243,  1772, 2018. 

131.  魏博. Theoretical study on gas-phase reactions of nitrate radicals with methoxyphenols: Mechanism, kinetic and toxicity assessment.  Environmental Pollution,  243,  1772, 2018. 

132.  曹海杰  and 何茂霞. Computational study on the mechanism and kinetics of NO3-initiated atmosphere oxidation of vinyl acetate.  Computational and Theoretical Chemistry,  1, 2018. 

133.  曹海杰. Computational study on the mechanism and kinetics of NO3-initiated atmosphere oxidation of vinyl acetate.  Computational and Theoretical Chemistry,  1144,  18-25, 2018. 

134.  何茂霞. Ozonation of 3-methylcatechol and 4-methylcatechol in the atmosphere and aqueous particles: Mechanism, kinetics and ecotoxicity assessment.  chemical engineering journal,  358,  456, 2018. 

135.  何茂霞. Theoretical study on gas-phase reactions of nitrate radicals with methoxyphenols: Mechanism, kinetic and toxicity assessment.  Environmental Pollution,  243,  1772, 2018. 

136.  孙建菲. Mechanisms for ozone-initiated removal of biomass burning products from the atmosphere.  Environmental Chemistry,  15,  83, 2018. 

137.  何茂霞  and 孙建菲. Mechanisms for ozone-initiated removal of biomass burning products from the atmosphere.  Environmental Chemistry,  15,  83, 2018. 

138.  何茂霞. Mechanisms for ozone-initiated removal of biomass burning products from the atmosphere.  Environmental Chemistry,  15,  83, 2018. 

139.  何茂霞  and 魏博. Mechanism and kinetic of nitrate radical-initiated atmospheric reactions of guaiacol (2-methoxyphenol).  Computational and Theoretical Chemistry,  1129,  1, 2018. 

140.  魏博. Mechanism and kinetic of nitrate radical-initiated atmospheric reactions of guaiacol (2-methoxyphenol).  Computational and Theoretical Chemistry,  1129,  1, 2018. 

141.  何茂霞. Mechanism and kinetic of nitrate radical-initiated atmospheric reactions of guaiacol (2-methoxyphenol).  Computational and Theoretical Chemistry,  1129,  1, 2018. 

142.  Wang, Qianbin. Regulation of Structure and Ionic Intercalation of Colloidal Nanocrystal Assembly.  《COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS》,  538,  229, 2018. 

143.  张士清  and 何茂霞. Computational study on the mechanism and kinetics of Cl-initiated oxidation of ethyl acrylate.  Structural Chemistry,  28,  1831, 2017. 

144.  何茂霞  and 张士清. Computational study on the mechanism and kinetics of Cl-initiated oxidation of ethyl acrylate.  Struct Chem.,  28,  1831, 2017. 

145.  何茂霞. Computational study on the mechanism and kinetics of Cl-initiated oxidation of ethyl acrylate.  Struct Chem.,  28,  1831, 2017. 

146.  何茂霞. Theoretical study on the mechanism of the gas phase reaction of methoxybenzene .  RSC advances,  2016. 

147.  何茂霞  and 孙建菲. Theoretical study on the mechanism of the gas phase reaction of methoxybenzene with ozone.  RSC Adv.,  6,  113561, 2016. 

148.  何茂霞. Theoretical study on the mechanism of the gas phase reaction of methoxybenzene with ozone.  RSC Adv.,  6,  113561, 2016. 

149.  何茂霞. OH-Initiated Tropospheric Photooxidation of Allyl Acetate (AAC): A Theoretical Stu.  Can. J. Chem,  2016. 

150.  何茂霞. Theoretical study on the mechanisms and kinetics of Cl-initiated oxidation of methy.  Comput. Theo. Chem,  2016. 

151.  何茂霞  and 张士清. Theoretical study on the mechanisms and kinetics of Cl-initiated oxidation of methy acrylate.  Comput. Theo. Chem,  1091,  99, 2016. 

152.  何茂霞. Mechanisms and kinetic parameters for the gas-phase reactions of anthracene and pyrene with Cl atom.  RSC advances,  2016. 

153.  何茂霞  and 李鑫. The mechanism and kinetic studies for Cl-initiated oxidation of allyl acetate in troposphere.  Comput. Theo. Chem.,  48, 2016. 

154.  何茂霞  and 曹海杰. OH-Initiated Tropospheric Photooxidation of Allyl Acetate: A Theoretical Stu.  Can. J. Chem,  94,  648, 2016. 

155.  王文兴 , 何茂霞  and 何茂霞. Mechanistic and kinetic investigation on OH-initiated oxidation of tetrabromobishpenol A.  Chemosphere,  153,  262, 2016. 

156.  何茂霞  and 党娟. Mechanisms and kinetic parameters for the gas-phase reactions of anthracene and pyrene with Cl atom in the presence of NOx.  RSC advances,  17345, 2016. 

157.  何茂霞  and 孙建菲. Theoretical study on the mechanism of the gas phase reaction of methoxybenzene with ozone.  RSC advances,  6,  114, 2016. 

158.  何茂霞. Mechanistic and kinetic investigation on.  Chemosphere,  2016. 

159.  何茂霞. The mechanism and kinetic studies for Cl-initiated oxidation of allyl.  Comput. Theo. Chem.,  2016. 

160.  党娟. Mechanisms and kinetic parameters for the gas-phase reactions of anthracene and pyrene with Cl atoms in the presence of NOx.  RSC advances,  2016. 

161.  何茂霞. Theoretical study on the nitrate radical oxidation of methyl vinyl .  Comput. Theo. Chem.,  1072,  72, 2015. 

162.  何茂霞 , 王文兴  and 曹海杰. Theoretical study on the nitrate radical oxidation of methyl vinyl ether.  Comput. Theo. Chem.,  1072,  72, 2015. 

163.  何茂霞  and 李云凤. Computational investigation on NO3-initiated degradation of p, p -DDE in atmosphere: mechanism and kienetics.  Comput. Theo. Chem.,  1068,  21, 2015. 

164.  何茂霞. Computational investigation on NO3-initiated degradation of .  Comput. Theo. Chem.,  1068,  21, 2015. 

165.  何茂霞 , 王文兴  and 曹海杰. Theoretical Investigation on Mechanistic and Kinetic Transformation of 2,2 ',4,4 ',5-Pentabromodiphenyl Ether.  J. Phys. Chem. A,  119,  6404, 2015. 

166.  王文兴  and 何茂霞. Theoretical Investigation on Mechanistic and Kinetic Transformation of 2,2 ',4,4 ',5-Pentabromodiphenyl Ether.  J. Phys. Chem. A,  119,  6404, 2015. 

167.  何茂霞 , 胡敬田  and 韩丹丹. Theoretical Studies on the Mechanisms and Rate Constants for the hydroxylation of n-Butyl, iso-Butyl and tert-Butyl Vinyl Ethers in Atmosphere.  Struct Chem,  26,  713, 2015. 

168.  何茂霞. Kinetics and mechanism of the reactions of OH radicals with p-nitroaniline in gas-phase and aqueous solution.  Comput. Theo. Chem.,  1055,  68, 2015. 

169.  胡敬田  and 何茂霞. Computational Study on the Mechanisms and Rate Constants of the Cl-initiated Oxidation of Methyl Vinyl Ether in the Atmosphere.  J. Phys. Chem. A,  119,  719, 2015. 

170.  胡敬田  and 何茂霞. Theoretical Studies on the Mechanisms and Rate Constants for the hydroxylation of n-Butyl, iso-Butyl and tert-Butyl Vinyl Ethers in Atmosphere.  Struct Chem,  26,  713, 2015. 

171.  何茂霞. Computational Study on the Mechanisms and Rate Constants of the Cl-initiated Oxidation of Methyl Vinyl Ether in the Atmosphere.  J. Phys. Chem. A,  119,  719, 2015. 

172.  何茂霞. Kinetics and mechanism of the reactions of OH radicals with p-nitroaniline in gas-phase and aqueous solution.  Comput. Theo. Chem.,  1055,  68, 2015. 

173.  何茂霞  and 何茂霞. Mechanistic and kinetic investigations on the ozonolysis of isopropenyl acetate and propenyl acetate in atmosphere.  Comput. Theor. Chem.,  1049,  42, 2014. 

174.  何茂霞. Mechanistic and kinetic investigations on the ozonolysis of isopropenyl acetate and propenyl acetate in atmosphere.  Comput. Theor. Chem.,  1049,  42, 2014. 

175.  胡敬田 , 何茂霞  and 何茂霞. Computational Study on the Mechanisms and Rate Constants of the OH-initiated Oxidation of Ethyl Vinyl Ether in Atmosphere.  Chemosphere,  111,  61, 2014. 

176.  胡敬田  and 何茂霞. Computational Study on the Mechanisms and Rate Constants of the OH-initiated Oxidation of Ethyl Vinyl Ether in Atmosphere.  Chemosphere,  111,  61, 2014. 

177.  马树萍  and 何茂霞. Computational Study on the Mechanisms and Kinetics of Cl-initiated Oxidation of Vinyl Acetate (VAC).  Atmos. Environ.,  94,  63, 2014. 

178.  何茂霞 , 马树萍  and 何茂霞. Computational Study on the Mechanisms and Kinetics of Cl-initiated Oxidation of Vinyl Acetate (VAC).  Atmos. Environ.,  94,  63, 2014. 

179.  何茂霞  and 何茂霞. Reactions of n-butyl acrylate and ethyl Methacrylate with Ozone in the Gas Phase.  Comput. Theor. Chem.,  1039,  33, 2014. 

180.  何茂霞. Reactions of n-butyl acrylate and ethyl Methacrylate with Ozone in the Gas Phase.  Comput. Theor. Chem.,  1039,  33, 2014. 

181.  何茂霞. Theoretical study on the mechanism and kinetics for the ozonolysis of vinyl propionate.  Struct. chem.,  25,  285, 2014. 

182.  何茂霞  and 何茂霞. Theoretical study on the mechanism and kinetics for the ozonolysis of vinyl propionate.  Struct. chem.,  25,  285, 2014. 

183.  孙延慧  and 何茂霞. Mechanisms and kinetics of the ozonolysis reaction of cis-3-hexenyl acetate and trans-2-hexenyl acetate in atmosphere:a theoretical study.  Struct. chem.,  25,  71, 2014. 

184.  孙延慧 , 何茂霞  and 何茂霞. Mechanisms and kinetics of the ozonolysis reaction of cis-3-hexenyl acetate and trans-2-hexenyl acetate in atmosphere:a theoretical study.  Struct. chem.,  25,  71, 2014. 

185.  胡敬田 , 何茂霞  and 何茂霞. Theoretical investigation on the mechanisms and kinetics of OH-initiated photooxidation of dimethyl phthalate (DMP) in atmosphere.  Chemosphere,  95,  50, 2014. 

186.  胡敬田  and 何茂霞. Theoretical investigation on the mechanisms and kinetics of OH-initiated photooxidation of dimethyl phthalate (DMP) in atmosphere.  Chemosphere,  95,  50, 2014. 

187.  孙延慧  and 何茂霞. Atmospheric ozonolysis study of methyl acrylate and methyl 3-methyl acrylate.  Struc. Chem,  24,  1451, 2013. 

188.  孙延慧 , 何茂霞  and 何茂霞. Atmospheric ozonolysis study of methyl acrylate and methyl 3-methyl acrylate.  Struc. Chem,  24,  1451, 2013. 

189.  王文兴  and 何茂霞. OH-Initiated Oxidation Mechanisms and Kinetics of 2,4,4′-Tribrominated Diphenyl Ether.  Environ. Sci. & Technol.,  47,  8238, 2013. 

190.  王文兴 , 何茂霞  and 何茂霞. OH-Initiated Oxidation Mechanisms and Kinetics of 2,4,4′-Tribrominated Diphenyl Ether.  Environ. Sci. & Technol.,  47,  8238, 2013. 

191.  何茂霞. Computational Study of the Reaction Mechanism and Kinetics of Ethyl Acrylate Ozonolysis in Atmosphere.  Chem. Phys.,  402,  6, 2012. 

192.  何茂霞  and 何茂霞. Computational Study of the Reaction Mechanism and Kinetics of Ethyl Acrylate Ozonolysis in Atmosphere.  Chem. Phys.,  402,  6, 2012. 

193.  胡敬田  and 何茂霞. Mechanistic and Kinetic Study of the Gas-Phase Reaction of Vinyl Acetate with Ozone .  Atmos. Environ.,  49,  197, 2012. 

194.  何茂霞 , 胡敬田  and 何茂霞. Mechanistic and Kinetic Study of the Gas-Phase Reaction of Vinyl Acetate with Ozone .  Atmos. Environ.,  49,  197, 2012. 

195.  何茂霞  and 何茂霞. Mechanistic and Kinetic Study on the Ozonolysis of Ethyl Vinyl Ether and Propyl Vinyl Ether.  Struct Chem,  23,  499, 2012. 

196.  孙孝敏 , 何茂霞  and 何茂霞. Kinetic study on the linalool ozonolysis reaction in the atmosphere .  Can. J. Chem.,  90,  353, 2012. 

197.  孙孝敏  and 何茂霞. Kinetic study on the linalool ozonolysis reaction in the atmosphere .  Can. J. Chem.,  90,  353, 2012. 

198.  何茂霞  and 孙孝敏. Kinetic study on the linalool ozonolysis reaction in the atmosphere.  Can. J. Chem.,  90,  353, 2012. 

199.  何茂霞. Mechanistic and Kinetic Study on the Ozonolysis of Ethyl Vinyl Ether and Propyl Vinyl Ether.  Struct Chem,  23,  499, 2012. 

200.  何茂霞  and 孙孝敏. Kinetic study on the linalool ozonolysis reaction in the atmosphere.  Can. J. Chem.,  90,  353, 2012. 

201.  何茂霞 , 孙孝敏  and 孙孝敏. Kinetic study on the linalool ozonolysis reaction in the atmosphere.  Can. J. Chem.,  90,  353, 2012. 

202.  何茂霞. Mechanistic and kinetic study on the reaction of 2, 4-dibrominated diphenyl ether (BDE-7) with OH radicals .  Comput. Theor. Chem.,  983,  31, 2012. 

203.  何茂霞  and 何茂霞. Mechanistic and kinetic study on the reaction of 2, 4-dibrominated diphenyl ether (BDE-7) with OH radicals .  Comput. Theor. Chem.,  983,  31, 2012. 

204.  何茂霞 , 胡敬田  and 何茂霞. Theoretical study of the ozonolysis of Allyl Acetate: Mechanism and Kinetics.  Struct. chem.,  23,  201, 2012. 

205.  胡敬田  and 何茂霞. Theoretical study of the ozonolysis of Allyl Acetate: Mechanism and Kinetics.  Struct. chem.,  23,  201, 2012. 

206.  何茂霞  and 何茂霞. Mechanical and Kinetic Studies of the Formation of Polyhalogenated Dibenzo-p-dioxins from Hydroxylated Polybrominated Diphenyl Ethers and Chlorinated Derivatives.  J. Phys. Chem. A.,  115,  13489, 2011. 

207.  何茂霞. Mechanical and Kinetic Studies of the Formation of Polyhalogenated Dibenzo-p-dioxins from Hydroxylated Polybrominated Diphenyl Ethers and Chlorinated Derivatives.  J. Phys. Chem. A.,  115,  13489, 2011. 

208.  何茂霞. Theoretical study on the mechanism and kinetics of the reaction of 2, 2′, 4, 4′-tetrabrominated diphenyl ether (BDE-47) with OH radicals.  Atmos. Environ,  45,  1525, 2011. 

209.  何茂霞  and 何茂霞. Theoretical study on the mechanism and kinetics of the reaction of 2, 2′, 4, 4′-tetrabrominated diphenyl ether (BDE-47) with OH radicals.  Atmos. Environ,  45,  1525, 2011. 

210.  何茂霞  and 张庆竹. Theoretical Study on Mechanism for O3-Initiated Atmospheric Oxidation Reaction of β-Caryophyllene: A DFT study.  J. Mol. Struct. (Theochem),  947,  68, 2010. 

211.  何茂霞 , 张庆竹  and 孙孝敏. Theoretical study on mechanism for O-3-initiated atmospheric oxidation reaction of beta-caryophyllene.  JOURNAL OF MOLECULAR STRUCTURE-THEOCHEM,  947,  68, 2010. 

212.  何茂霞 , 张庆竹  and 孙孝敏. Theoretical study on mechanism for O-3-initiated atmospheric oxidation reaction of beta-caryophyllene.  JOURNAL OF MOLECULAR STRUCTURE-THEOCHEM,  947,  68, 2010. 

213.  何茂霞  and 张庆竹. Theoretical Study on Mechanism for O3-Initiated Atmospheric Oxidation Reaction of β-Caryophyllene: A DFT study.  J. Mol. Struct. (Theochem),  947,  68, 2010. 

214.  何茂霞 , 张庆竹 , 孙孝敏  and 孙孝敏. Theoretical study on mechanism for O-3-initiated atmospheric oxidation reaction of beta-caryophyllene.  JOURNAL OF MOLECULAR STRUCTURE-THEOCHEM,  947,  68, 2010. 

215.  何茂霞 , 张庆竹  and 张庆竹. Theoretical Study on Mechanism for O3-Initiated Atmospheric Oxidation Reaction of β-Caryophyllene: A DFT study.  J. Mol. Struct. (Theochem),  947,  68, 2010. 

216.  何茂霞  and 张庆竹. Mechanism of Atmospheric Ozonolysis of Sabinene: A DFT Study.  J. Mol. Stru. (Theochem),  942,  32, 2010. 

217.  张庆竹 , 王文兴 , 孙孝敏  and 何茂霞. Mechanism of atmospheric ozonolysis of sabinene: A DFT study.  JOURNAL OF MOLECULAR STRUCTURE-THEOCHEM,  942,  32, 2010. 

218.  何茂霞  and 张庆竹. Mechanism of Atmospheric Ozonolysis of Sabinene: A DFT Study.  J. Mol. Stru. (Theochem),  942,  32, 2010. 

219.  何茂霞 , 张庆竹 , 王文兴  and 孙孝敏. Mechanism of atmospheric ozonolysis of sabinene: A DFT study.  JOURNAL OF MOLECULAR STRUCTURE-THEOCHEM,  942,  32, 2010. 

220.  何茂霞 , 张庆竹  and 张庆竹. Mechanism of Atmospheric Ozonolysis of Sabinene: A DFT Study.  J. Mol. Stru. (Theochem),  942,  32, 2010. 

221.  王文兴 , 孙孝敏 , 何茂霞 , 张庆竹  and 孙孝敏. Mechanism of atmospheric ozonolysis of sabinene: A DFT study.  JOURNAL OF MOLECULAR STRUCTURE-THEOCHEM,  942,  32, 2010. 

222.  王文兴 , 何茂霞  and 何茂霞. Mechanism of OH-Initiated Atmospheric Photooxidation of the Organophosphorus Insecticide (C2H5O)3PS.  Atmos. Environ,  43,  4163, 2009. 

223.  王文兴  and 何茂霞. Mechanism of OH-Initiated Atmospheric Photooxidation of the Organophosphorus Insecticide (C2H5O)3PS.  Atmos. Environ,  43,  4163, 2009. 

224.  王文兴  and 何茂霞. Mechanism of OH-Initiated Atmospheric Photooxidation of the Organophosphorus Insecticide (C2H5O)3PS.  Atmos. Environ,  43,  4163, 2009. 

225.  何茂霞  and 何茂霞. Sensitivity of Hydrogenated Silicon Nanodot on Small Polar Molecules.  J. Theor. Comp. Chem.,  8,  299, 2009. 

226.  张庆竹 , 王文兴 , 何茂霞  and 何茂霞. Theoretical study of OH-initiated atmospheric oxidation for Propyl vinyl ether.  J. Theor. Comp. Chem,  8,  261, 2009. 

227.  何茂霞. Sensitivity of Hydrogenated Silicon Nanodot on Small Polar Molecules.  J. Theor. Comp. Chem.,  8,  299, 2009. 

228.  王文兴 , 张庆竹  and 何茂霞. Theoretical study of OH-initiated atmospheric oxidation for Propyl vinyl ether.  J. Theor. Comp. Chem,  8,  261, 2009. 

229.  何茂霞 , 张庆竹  and 张庆竹. Quantum chemical study on the atmospheric photooxidation of methyl vinyl ether (MVE).  JOURNAL OF MOLECULAR STRUCTURE-THEOCHEM,  868,  87, 2008. 

230.  何茂霞  and 张庆竹. Quantum chemical study on the atmospheric photooxidation of methyl vinyl ether (MVE).  JOURNAL OF MOLECULAR STRUCTURE-THEOCHEM,  868,  87, 2008. 

231.  何茂霞  and 张庆竹. Quantum chemical study on the atmospheric photooxidation of methyl vinyl ether (MVE).  JOURNAL OF MOLECULAR STRUCTURE-THEOCHEM,  868,  87, 2008. 

232.  何茂霞  and 冯大诚. The mechanisms about the water‘s and methanol‘s effects on the alcoholysis of N-benzyl-3-oxo-β-sultam.  Chin. J. Struct. Chem,  26,  1118, 2007. 

233.  何茂霞  and 冯大诚. The mechanisms about the water‘s and methanol‘s effects on the alcoholysis of N-benzyl-3-oxo-β-sultam.  Chin. J. Struct. Chem,  26,  1118, 2007. 

234.  何茂霞 , 冯大诚  and 111900040606. The mechanisms about the water‘s and methanol‘s effects on the alcoholysis of N-benzyl-3-oxo-β-sultam.  Chin. J. Struct. Chem,  26,  1118, 2007. 

235.  何茂霞  and 何茂霞. A Computational Study on Water-assisted Ammonolysis of N-Methyl β-Sultam.  Chem. Res. Chin. U,  22,  94, 2006. 

236.  何茂霞. A Computational Study on Water-assisted Ammonolysis of N-Methyl β-Sultam.  Chem. Res. Chin. U,  22,  94, 2006. 

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