郑昭科
个人信息Personal Information
教授 博士生导师 硕士生导师
主要任职:《Molecules》、《Catalysts》特刊编辑、中国感光学会光催化专业委员会委员
其他任职:欧洲研究委员会(ERC)评审专家
性别:男
出生日期:1985-02-21
毕业院校:山东大学
学历:博士研究生毕业
学位:博士生
在职信息:在职
所在单位:晶体材料研究院
入职时间:2017-10-19
学科:材料物理与化学
办公地点:晶体材料研究所406
联系方式:zkzheng@sdu.edu.cn
电子邮箱:zkzheng@sdu.edu.cn
扫描关注
- [21] 李蓓. In Situ Monitoring Charge Transfer on Topotactic Epitaxial Heterointerface for Tetracycline Degradation at the Single-Particle Level. ACS Catal. , 2022.
- [22] 徐亚洋. Strain-assisted in-situ formed oxygen defective WO3 film for photothermal-synergistic reverse water gas shift reaction and single-particle study. Chemical Engineering Journal, 433, 2022.
- [23] 吕敏. BiVO4 quadrangular nanoprisms with highly exposed {101} facets for selective photocatalytic oxidation of benzylamine. Journal of Materials Chemistry A, 2022.
- [24] 刘木. Enhanced stability and activity towards photocatalytic CO2 reduction via supercycle ALD of Cu and TiO2. Chemical Engineering Journal, 429, 2022.
- [25] 马法豪. Targeted Regulation of the Electronic States of Nickel Toward the Efficient Electrosynthesis of Benzonitrile and Hydrogen Production. ACS Applied Materials & Interfaces, 13, 56140, 2021.
- [26] 仝凤霞. Probing the Mechanism of Plasmon-Enhanced Ammonia Borane Methanolysis on a CuAg Alloy at a Single-Particle Level. Acs catalysis, 11, 10814, 2021.
- [27] 赵云瑞. Borate-modulated amorphous NiFeB nanocatalysts as highly active and stable electrocatalysts for oxygen evolution reaction. JOURNAL OF ALLOYS AND COMPOUNDS , 903, 2022.
- [28] 仝凤霞. Plasmon-Enhanced Water Activation for Hydrogen Evolution from Ammonia-Borane Studied at a Single-Particle Level. Acs catalysis, 12, 3558, 2022.
- [29] 宫雪芹. Photoreforming of plastic waste poly (ethylene terephthalate) via in-situ derived CN-CNTs-NiMo hybrids. 应用催化B, 307, 2022.
- [30] 仝凤霞. Boosting hot electrons transfer via laser-induced atomic redistribution for plasmon-enhanced nitroreduction and single-particle study. Journal of Catalysis, 407, 115, 2022.
- [31] 刘福燕. alpha-Fe2O3 Film with Highly Photoactivity for Non-Enzymatic Photoelectrochemical Detection of Glucose. ELECTROANALYSIS Journal, 31, 1809, 2019.
- [32] 李昱杰. Boron containing metal–organic framework for highly selective photocatalytic production of H2O2 by promoting two-electron O2 reduction. MATERIALS HORIZONS, 2842, 2021.
- [33] . Boosting the electrocatalytic HER performance of Ni3N-V2O3 via the interface coupling effect. Applied Catalysis B: Environmental, 119590, 2020.
- [34] 雷龙飞. A Bismuth-Based Metal?Organic Framework for Visible-LightDriven Photocatalytic Decolorization of Dyes and Oxidation of Phenylboronic Acids. Inorg. Chem. , 11110, 2022.
- [35] 翟广耀. Improved photocatalytic CO2 and epoxides cycloaddition via the synergistic effect of Lewis acidity and charge separation over Zn modified UiO-bpydc. Applied Catalysis B: Environmental, 120793, 2021.
- [36] 李昱杰. Synergistic effect between boron containing metal-organic frameworks and light leading to enhanced CO2 cycloaddition with epoxides. Chemical Engineering Journal, 135363, 2022.
- [37] . Oxygen Vacancies Enhanced Ozonation toward Phenol Derivatives Removal over Ov?Bi2O3. ACS EST Water , 1725, 2022.
- [38] 张洪刚. Photo-induced photo-thermal synergy effect leading to efficient CO2 cycloaddition with epoxide over a Fe-based metal organic framework. JOURNAL OF COLLOID AND INTERFACE SCIENCE, 33, 2022.
- [39] 张庆燕. A biocompatible bismuth based metal-organic framework as efficient light-sensitive drug carrier. JOURNAL OF COLLOID AND INTERFACE SCIENCE, 578, 2022.
- [40] . Enhanced photocatalytic driven hydroxylation of phenylboric acid to phenol over pyrenetetrasulfonic acid intercalated ZnAl-LDHs. JOURNAL OF COLLOID AND INTERFACE SCIENCE, 455, 2021.