许兴东
副教授
访问次数:
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基本信息
  • 教师拼音名称:
    xuxingdong
  • 电子邮箱:
  • 入职时间:
    2016-03-02
  • 所在单位:
    国家胶体材料工程技术研究中心
  • 学历:
    博士研究生毕业
  • 办公地点:
    生命北楼639
  • 性别:
  • 联系方式:
  • 学位:
    博士生
  • 在职信息:
    在职
  • 毕业院校:
    华东师范大学
  • 博士生导师
  • 硕士生导师
学科:
化学工程
教师简介

【个人简介】   

 许兴东,山东大学副教授,博士生导师,山东大学青年学者未来计划入选者,Chinese Chemical Letters (影响因子: 9.1)青年编委,ACSRSC John Wiley等化学核心期刊上发表科技论文40余篇。工作发表以来,引起了国际国内同行的关注,有3文章选为封面文章,3篇文章被编辑选为“Hot Paper”, 并被Materials Views China 及Pharmacy Choice等网站评述。近年来依托山东大学国家胶体材料工程技术研究中心和特种功能聚集体材料教育部重点实验室,主要致力于有机硅超分子化学的研究,包括:

1.有机硅化学及功能材料;

2.含硅精细化学品;

3.超分子化学与聚集体材料。



【教育及工作经历】

2016.03-今           山东大学         副教授,硕士生导师(2016年)

                                       博士生导师(2022年)     

2015.09-2016.03    新加坡国立大学       博士后(导师:吴继善 教授)

2013.09-2015.07    南洋理工大学        博士后(导师:赵彦利 教授)

2008.09-2013.07    华东师范大学        博士(导师:杨海波 教授)     

2004.09-2008.07    聊城大学           本科

【奖励荣誉与社会兼职】

2023年                  Chinese Chemical Letters 青年编委

2018年                  山东大学未来青年学者

2013年                  上海市优秀毕业生

2012年                  博士研究生国家奖学金

【承担科研项目】

1. 山东省自然科学基金重点项目,项目负责人,2022.1-2024.12

2. 国家自然科学基金青年项目,项目负责人,2017.1-2019.12 

3. 山东省自然科学基金青年项目,项目负责人,2016.11-2019.6

4. 山东大学人才引进与培养基金,项目负责人,2016.9-2019.12

5. 国家博士后基金面上项目,项目负责人,2017.5-2018.12

6. 山东大学青年学者未来计划,项目负责人,2018.7-2023.6

7. 企业合作开发项目,7项,项目负责人,2017-2026

【招生情况】 

招收化学工程(学术型)和材料与化工(专业型)硕士研究生,欢迎推荐免试或联系报考!

欢迎对有机硅化学和超分子功能材料感兴趣的本科生进行创新实验和毕业设计!

【学生获奖情况】

王 宁(2017级研究生):山东大学优秀毕业生

付 容(2018级研究生):研究生国家奖学金

许 倩(2019级研究生):新安化工奖学金

冯名雪(2020级研究生):山东大学优秀毕业生,宝龙达奖学金

曹阳,郝新慧,季宏甜,舒依波等(2021级本科生):

山东大学“新安集团杯”大学生化学与物质科学创新创业大赛 银奖

沈 娟(2021级研究生):山东大学优秀毕业生

【发表论文】

2025年


47. Pei-Pei Jia, Yi-Xiong Hu,* Zhen-Chen Lou, Xuelei Ji, Xing-Dong Xu,* Haitao Sun, Tongxia Jin, Feng Zheng,* Lin Xu,* Construction of 

BODIPY-based Triangular Metallacycles with Tunable Photosensitization Efficiency, Chin. Chem. Lett., 2025, 110835.


46. Junjun Liu, Ke Ren, Huanjing Zhao, Dong Wang, Qianqian Wang, Yitan Li, Xing-Dong Xu,* Wenbing Kang,* Design of dual-sensitive 

functional photoresist for uv lithography. ACS Appl. Polym. Mater. 2025, 7, 3103-3111.


2024年


45. Yu-Kun Jiang, Yong-Le Tian,  Jia Feng, Huan Zhang,  Lei Wang, Wei-Ao Yang, Xing-Dong Xu, Ren-Rong Liu*, Angew. Chem. Int. Ed. 

2024, e202407752.


44. Chong Liu, Zhen Cheng, Xingdong Xu*, Ning Wang, Xingwei Luo, Xia Xin*, ACS Appl. Nano Mater. 2024, 7, 11455-11464.


43. Junying Zhang, Ruochen Li, Haihua Wang, Wenbing Kang*, Xing-Dong Xu*, Photo-induced tunable luminescence from an aggregated

 amphiphilic ethylene-pyrene derivative in aqueous media, Chin. Chem. Lett., 2024, 34, 109216.


42. Junying Zhang, Hui-Wei Feng*, Huan Chen, Wenbing Kang*, Xing-Dong Xu*, Highly selective and sensitive detection of hyaluronic acid

 based on a pyrene-cored cationic aggregation-induced emission luminogen, Microchem. J., 2024, 200, 110395.


2023年


41. Yi-Xiong Hu, Xingtian Hao, Dan Wang, Zi-Cheng Zhang, Haitao Sun, Xing-Dong Xu, Xiaolin Xie, Xueliang Shi, Haiyan Peng*, Hai-Bo 

Yang, and Lin Xu*, Light-Responsive Supramolecular Liquid-Crystalline Metallacycle for Orthogonal Multimode Photopatterning, Angew. 

Chem. Int. Ed. 2023, e202315061.(Cover Article)


40. Junying Zhang, Wenbing Kang* and Xing-Dong Xu*, Tetraphenylethene-based macrocycles with dual-ring topology: synthesis, 

structures, and applications, Org. Chem. Front., 2023, 10, 6225-6239. ( 2023 Organic Chemistry Frontiers HOT articles)


39. Ning Wang, Weiao Yang, Lei Feng, Xing-Dong Xu* and Shengyu Feng*, A supramolecular artificial light-harvesting system based on a 

luminescent platinum(II) metallacage, Dalton Trans., 2023, 52, 15524 - 15529. (The themed collection: New Talent: Asia Pacific)


38. Yunqin Qi, Longyue Yu, Chong Liu, Ning Wang, Xingdong Xu*, Xia Xin*, Surfactant regulated aggregation-induced emission of 

tetraphenylethene-based tetracationic salt for the construction of light harvesting supramolecular system, J. Mol. Liq., 2023, 386, 122504.


37. Mingxue Feng, Junying Zhang, Hong-Tian Ji, Xing-Dong Xu*, Shengyu Feng, Tetraphenylethene-based macrocycles: Visualized 

monitoring the hydrolysis of silicon-oxygen bond and their tunable luminescent properties, Chem. Eng. J., 2023, 463, 142241.


36. Pei-Pei Jia, Lianrui Hu,* Wei-Tao Dou, Xing-Dong Xu,  Haitao Sun, Zhi-Yong Peng, Dan-Yang Zhang, Hai-Bo Yang and Lin Xu*, An 

efficient hierarchical self-assembly approach to construct structurally diverse two-step sequential energy-transfer artificial light-harvesting

systems, J. Mater. Chem. C, 2023, 11, 6607-6615. ( Journal of Materials Chemistry C HOT Papers and Photofunctional Materials and 

Transformations)


35. Ning Wang, Hui-Wei Feng, Xinhui Hao, Yang Cao, Xing-Dong Xu* and Shengyu Feng*, Dynamic covalent bond and metal coordination 

bond-cross-linked silicone elastomers with excellent mechanical and aggregation-induced emission properties, Polym. Chem., 2023, 14, 1396-1403. 


34. Junying Zhang, Ruochen Li, Yiling Bei, Xing-Dong Xu*, Wenbing Kang*, Design of a large Stokes shift ratiometric fluorescent sensor with

 hypochlorite detection towards the potential application as invisible security ink, Spectrochimica Acta Part A, 2023, 285, 121859.(Cover 

Article)


2022年


33. Ning Wang,+ Jianjian Zhao,+ Qian Xu, Pengyao Xing,* Shengyu Feng, Xing-Dong Xu,* and Hai-Bo Yang, "Platinum(II) Metallacycles as 

Highly Affinitive Hosts for Dendritic Amino Acid with Tunable Circularly Polarized Luminescence," J. Mater. Chem. C, 2022, 10, 13860-13870.

 (+contributed equally) 


32. Mingxue Feng, Ning Wang, Jiaqi Li, Shengyu Feng, Xing-Dong Xu,* "Facile construction of luminescent silicone elastomers from the

 compatibilization of porphyrins via the Piers-Rubinsztajn reaction," Colloids Surf. A, 2022, 642, 128646.


31. Qian Xu,+ Ziyu Qin,+ Yiling Bei, Shengyu Feng, Xing-Dong Xu,* "A cationic amphiphilic tetraphenylethylene derivative with 

hydrochromic sensitive property: Applications in anti-counterfeiting ink and rewritable paper," Chin. Chem. Lett., 2022, 33, 4838-4841. 

(+contributed equally)


30. Ning Wang, Lei Feng, Xing-Dong Xu* and Shengyu Feng,* "Dynamic covalent bond cross-linked luminescent silicone elastomer with 

self-healing and recyclable property," Macromol. Rapid Commun., 2022, 2100885.(Top Downloaded Article)


29. Rong Fu, Longyue Yu, Junying Zhang, Huidong Yu, Shengyu Feng, Xing-Dong Xu,* "Facile construction of aggregation-induced 

emission molecular liquids via Piers-Rubinsztajn reaction for green fluorescent ink," Chin. Chem. Lett., 2022, 33,1993-1996 .


2021年


28. Yi-Xiong Hu, Pei-Pei Jia, Chang-Wei Zhang, Xing-Dong Xu,* Yanfei Niu, Xiaoli Zhao, Qian Xu, Lin Xu* and Hai-Bo Yang,* "A 

supramolecular dual-donor artificial light-harvesting system with efficient visible light-harvesting capacity", Org. Chem. Front., 2021, 8, 

5250-5257. ( FOCUS: Macrocyclic and supramolecular chemistry, Macrocycle-based Supramolecular Elements and 2021 Organic Chemistry 

Frontiers HOT articles)


27. Longyue Yu, Ruiguang Zhao, Ning Wang, Shengyu Feng, and Xing-Dong Xu*, "Coordination Mode-Regulated Lanthanide 

Supramolecular Hydrogels with Tunable Luminescence and Stimuli-Responsive Properties", ACS Appl. Polym. Mater. 2021, 3, 3623-3630.


26. Qian Xu, Ziyu Qin, Ning Wang, Shengyu Feng and Xing-Dong Xu*, "Tetraphenylethylene Based Amphiphilic Derivatives: The Self

-Assembly, Photo-Responsiveness and Their Application for Erasable Fluorescent Ink", Dyes and Pigments, 2021, 193, 109479.


25. Xia Xin*, Ting Ling, Lei Ye and Xingdong Xu*, "Supramolecular self-assembly of an alkynylpyrene derivative and dye for modulation of 

white light", Colloids Surf. A, 2021, 610, 125940.


2020年


24. Cong-Xin Xia, Ning Wang, Pan-Pan Sun, Shao-Xiong Tang, Xing-Dong Xu*, Ye-Bang Tan and Xia Xin*, "Self-assembly of an 

alkynylpyrene derivative for multi-responsive fluorescence behavior and photoswitching performance", Soft Matter, 2020, 16, 7390-7399.


23. Rong Fu, Junying Zhang, Shaojie Liu, Xing-Dong Xu* and Shengyu Feng, "Facile construction of double network cross-linked 

luminescent supramolecular elastomer from hydrosilylation and pillar[5]arene host–guest recognition", Chem. Commun., 2020, 56, 

6719-6722.


22. Ning Wang, Junying Zhang, Xing-Dong Xu* and Shengyu Feng, "Turn-on fluorescence in a pyridine-decorated tetraphenylethylene: the

 cooperative effect of coordination-driven rigidification and silver ion induced aggregation", Dalton Trans., 2020, 49, 1883-1890. (Spotlight 

Collection: Aggregation induced luminescence of metal complexes)


21. Xiaoxing Kong, Jinlong Lei, Qinghe Cao, Fenggang Liu, Chuqi Xie, Miao Huang, Xingdong Xu,* Jiahai Wang,* "Alloy Foam-Derived

 Ni0.86Fe2.14O4 Hexagonal Plates as an Efficient  Electrochemical Catalyst for the Oxygen Evolution Reaction", ChemistrySelect, 2020, 5, 

1578-1585.


2019年


20. Junying Zhang, Shao-Xiong Tang, Rong Fu, Xing-Dong Xu* and Shengyu Feng, "Aggregation-induced photodimerization of an 

alkynylpyrene derivative as a photoresponsive fluorescent ink", J. Mater. Chem. C, 2019, 7, 13786-13793.


19. Shao-Xiong Tang, Ning Wang, Xing-Dong Xu,* Shengyu Feng, "A ratiometric fluorescent thermometer based on amphiphilic 

alkynylpyrene derivatives", New J. Chem., 2019, 43, 6461-6464.


18. Qinghe Cao, Chuanqin Wang, Shujie Chen, Xingdong Xu,* Fenggang Liu, Xinhua Geng,* Jiahai Wang,* "Vertically aligned NiP2 

nanosheets with interlaced mesh network for highly efficient water splitting under alkaline and acid solutions", Int. J. Hydrogen Energy, 

2019, 44, 6535-6543.


2017年


17. Jian Wang, Xingdong Xu, Hoa Phan, Tun Seng Herng, Tullimilli Y. Gopalakrishna, Guangwu Li, Jun Ding, and Jishan Wu*, " Stable 

Oxindolyl-Based Analogues of ChichibabinQs and MgllerQs Hydrocarbons", Angew. Chem. Int. Ed., 2017, 56, 14154-14158.


2016年


16. Xing-Dong Xu, Chang-Jiang Yao, Li-Jun Chen, Guang-Qiang Yin, Yu-Wu Zhong*, Hai-Bo Yang*, "Facile Construction of Structurally 

Defined Porous Membranes from Supramolecular Hexakistriphenylamine Metallacycles through Electropolymerization" Chem.-Eur. J. 2016,

 18, 16000-16013.


15. Pengyao Xing, Hongzhong Chen, Mingfang Ma, Xingdong Xu, Aiyou Hao* and Yanli Zhao, "Light and cucurbit[7]uril complexation 

dualresponsiveness of a cyanostilbene-based selfassembled system", Nanoscale, 2016, 8, 1892-1896.


2015年


14. Xing-Dong Xu, Xin Li, Hongzhong Chen, Qiuyu Qu, Lingzhi Zhao, Hans Ågren, and Yanli Zhao,* “Host-Guest Interaction Mediated 

Construction of Hydrogels and Nanovesicles for Drug Delivery,” Small, 2015, 11, 5901-5906.


13. Xing-Dong Xu, Lingzhi Zhao, Qiuyu Qu, Jin-Gui Wang, Huifang Shi, and Yanli Zhao,* “Imaging-Guided Drug Release from Glutathione

-Responsive Supramolecular Porphysome Nanovesicles”, ACS Appl. Mater. Interfaces, 2015, 7, 17371-17380.


2014年


12. Nai-Wei Wu, Jing Zhang, Xing-Dong Xu and Hai-Bo Yang*, “Design and Preparation of Ethynyl-Pyrene Modified Platinum-Acetylide 

Gelators and Their Application in Dispersion of Graphene”, Chem. Commun., 2014, 50, 10269-10272.


11. Wei Wang, Yanyan Zhang, Bin Sun, Li-Jun Chen, Xing-Dong Xu, Ming Wang, Xiaopeng Li, Yihua Yu*, Wei Jiang* and Hai-Bo Yang*, 

“The Construction of Complex Multicomponent Supramolecular Systems via the Combination of Orthogonal Self-Assembly and Self

-Sorting Approach”, Chem. Sci., 2014, 5, 4554-4560. (Cover Article)


10. Jing Zhang, Nai-Wei Wu, Xing-Dong Xu, Quan-Jie Li, Cui-Hong Wang, Hongwei Tan and Lin Xu*, “Branched platinum-acetylide 

complexes: synthesis, properties, and their aggregation behavior”, RSC Adv., 2014, 4, 16047-16054.


9. Jing Zhang, Riccardo Marega, Li-Jun Chen, Nai-Wei Wu, Xing-Dong Xu, David C. Muddiman, Davide Bonifazi,* and Hai-Bo Yang,* 

“Hierarchical Self-assembly of Supramolecular Hydrophobic Metallacycles into the Ordered Nanostructures”, Chem.-Asian J., 2014, 9, 

2928-2936.


2013年


8. Xing-Dong Xu, Jiang-Kun Ou-Yang, Jing Zhang, Yan-Yan Zhang, Han-Yuan Gong,* Yihua Yu, and Hai-Bo Yang,* “Self-assembly of 

Supramolecular Tris(crown ether) Hexagons with Dendritic Dibenzylammonium Cations”, Tetrahedron, 2013, 69, 1086-1091.


2012年


7. Xing-Dong Xu, Jing Zhang, Xudong Yu, Li-Jun Chen, De-Xian Wang, Tao Yi,* Fuyou Li, and Hai-Bo Yang,* “Design and Preparation of 

Platinum Acetylide Organogelators Containing Ethynyl-Pyrene Moieties as Main Skeleton” Chem. Eur. J. 2012, 18, 16000-16013.


6. Xing-Dong Xu, Jing Zhang, Li-Jun Chen, Rong Guo, De-Xian Wang, and Hai-Bo Yang,* “Design and synthesis of branched platinum

-acetylide complexes possessing a porphyrin core and their self-assembly behavior” Chem. Commun. 2012, 48, 11223-11225.


5. Xing-Dong Xu, Jing Zhang, Li-Jun Chen, Xiao-Li Zhao, De-Xian Wang, and Hai-Bo Yang,* “Large-Scale Honeycomb Microstructures 

Constructed by Platinum Acetylide Gelators through Supramolecular Self-Assembly” Chem. Eur. J. 2012, 18, 1659-1667.


2011年


4. Li-Jun Chen, Jing Zhang, Jiuming He, Xing-Dong Xu, Nai-Wei Wu, De-Xian Wang, Zeper Abliz, and Hai-Bo Yang,* “The Synthesis of 

Platinum Acetylide Derivatives with Different Shape and Their Gel Formation Behavior” Organometallics, 2011, 30, 5590-5594.


3. Jing Zhang, Xing-Dong Xu, Li-Jun Chen, Qi Luo, Nai-Wei Wu, De-Xian Wang, Xiao-Li Zhao, and Hai-Bo Yang*, “Platinum Acetylide 

Complexes Containing Iptycene as Cores: A New Family of Unexpected Efficient Organometallic Gelators”, Organometallics, 2011, 30, 

4032-4038.


2. Wenjun Wu, Xingdong Xu, Haibo Yang,* Jianli Hua, Xiaoyu Zhang, Lei Zhang, Yitao Long, and He Tian*, “D-π-M-π-A structured 

platinum acetylide sensitizer for dye-sensitized solar cells” J. Mater. Chem., 2011, 21, 10666-10671. (Hot Paper)


2010年


1. Xing-Dong Xu, Hai-Bo Yang,* Yao-Rong Zheng, Koushik Ghosh, Matthew M. Lyndon, David C. Muddiman, and Peter J. Stang, “Self

-Assembly of Dendritic Tris(Crown Ether) Hexagons and Their Complexation with Dibenzylammonium Cations” J. Org. Chem. 2010, 75, 

7373-7380.




教育经历
  • 2010-09  — 2013-05
    华东师范大学
    有机化学
    理学博士学位
  • 2004-09  — 2008-07
    聊城大学
    化学
    理学学士学位
工作经历
  • 2016-03-至今
    山东大学
  • 2015-09 — 2016-02
    新加坡国立大学
  • 2013-09 — 2015-07
    南洋理工大学
科研成果
论文

1.  冯名雪. Tetraphenylethene-based macrocycles: Visualized monitoring the hydrolysis of silicon-oxygen bond and their tunable luminescent properties.  Chemical Engineering Journal,  463,  2023. 

2.  Fu, Rong. Facile construction of aggregation-induced emission molecular liquids via Piers-Rubinsztajn reaction for green fluorescent ink.  CHINESE CHEMICAL LETTERS,  33,  1993-1996, 2022. 

3.  张俊英. Tetraphenylethene-based macrocycles with dual-ring topology: synthesis, structures, and applications.  Organic Chemistry Frontiers,  10,  6225-6239, 2023. 

4.  王宁. A supramolecular artificial light-harvesting system based on a luminescent platinum(ii) metallacage.  dalton transactions,  2023. 

5.  王宁. Dynamic covalent bond and metal coordination bond-cross-linked silicone elastomers with excellent mechanical and aggregation-induced emission properties.  POLYMER CHEMISTRY,  14,  1396-1403, 2023. 

6.  冯名雪. Facile construction of luminescent silicone elastomers from the compatibilization of porphyrins via the Piers-Rubinsztajn reaction.  Colloids and Surfaces A,  642,  2022. 

7.  刘冲. Fluorescent Nanocomposite Prepared through Supramolecular Self-Assembly of a Tetraphenylethene Derivative and Polyoxometalate for Light-Emitting Diodes.  ACS Applied Nano Materials,  2024. 

8.  张俊英. Photo-induced tunable luminescence from an aggregated amphiphilic ethylene-pyrene derivative in aqueous media.  CHINESE CHEMICAL LETTERS Journal,  35,  2023. 

9.  张俊英. Highly selective and sensitive detection of hyaluronic acid based on a pyrene-cored cationic aggregation-induced emission luminogen.  Microchemical Journal,  200,  110395, 2024. 

10.  . Surfactant regulated aggregation-induced emission of tetraphenylethene-based tetracationic salt for the construction of light harvesting supramolecular system.  Journal of Molecular Liquids,  2023. 

11.  许倩. A cationic amphiphilic tetraphenylethylene derivative with hydrochromic sensitive property: Applications in anti-counterfeiting ink and rewritable paper.  CHINESE CHEMICAL LETTERS,  4838, 2022. 

12.  冯名雪. Tetraphenylethene-based macrocycles: Visualized monitoring the hydrolysis of silicon-oxygen bond and their tunable luminescent properties.  Chemical Engineering Journal,  142241, 2023. 

13.  康文兵. Design of a large Stokes shift ratiometric fluorescent sensor with hypochlorite detection towards the potential application as invisible security ink.  Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy,  285,  2023. 

14.  夏聪欣. Self-assembly of an alkynylpyrene derivative for multi-responsive fluorescence behavior and photoswitching performance.  Soft Matter,  7390, 2020. 

15.  付容. Facile construction of aggregation-induced emission molecular liquids via Piers-Rubinsztajn reaction for green fluorescent ink.  CHINESE CHEMICAL LETTERS,  1993, 2021. 

16.  许倩. Tetraphenylethylene based amphiphilic derivatives: The self-assembly, photo-responsiveness and their application for erasable fluorescent ink.  Dyes and pigments,  109479, 2021. 

17.  王宁. Dynamic Covalent Bond Cross-Linked Luminescent Silicone Elastomer with Self-Healing and Recyclable Properties.  MACROMOLECULAR RAPID COMMUNICATIONS Journal,  43,  2022. 

18.  Hu, Yi-Xiong. A supramolecular dual-donor artificial light-harvesting system with efficient visible light-harvesting capacity.  Organic Chemistry Frontier,  2021. 

19.  于龙跃. Coordination Mode-Regulated Lanthanide Supramolecular Hydrogels with Tunable Luminescence and Stimuli-Responsive Properties.  ACS Applied Polymer Materials,  3,  3623, 2021. 

20.  许倩. Tetraphenylethylene based amphiphilic derivatives: The self-assembly, photo-responsiveness and their application for erasable fluorescent ink.  PASSIVE COMPONENTS AND FIBER-BASED DEVICES, PTS 1 AND 2,  193,  2021. 

21.  夏聪欣. Self-assembly of an alkynylpyrene derivative for multi-responsive fluorescence behavior and photoswitching performance.  Soft Matter,  16,  7390, 2020. 

22.  许倩. Tetraphenylethylene Based Amphiphilic Derivatives : The Self-Assembly, Photo-Responsiveness and Their Application for Erasable Fluorescent Ink.  Dyes and pigments,  109479, 2021. 

23.  辛霞. Supramolecular self-assembly of an alkynylpyrene derivative and dye for modulation of white light.  Colloids and Surfaces A,  610,  2021. 

24.  孔小星. Alloy Foam-Derived Ni0.86Fe2.14O4 Hexagonal Plates as an Efficient Electrochemical Catalyst for the Oxygen Evolution Reaction.  ChemistrySelect,  5,  1578, 2020. 

25.  付容. Facile construction of a double network cross-linked luminescent supramolecular elastomer by hydrosilylation and pillar[5]arene host-guest recognition.  chemical communications,  56,  6719, 2020. 

26.  冯圣玉. Turn-on fluorescence in a pyridine-decorated tetraphenylethylene: the cooperative effect of coordination-driven rigidification and silver ions induced aggregation.  Dalton Transactions,  49,  1883, 2020. 

27.  王宁. Turn-on fluorescence in a pyridine-decorated tetraphenylethylene: the cooperative effect of coordination-driven rigidification and silver ion induced aggregation.  DaltonTrans,  49,  1883, 2020. 

28.  张俊英 , 冯圣玉 , 许兴东  and 张俊英. Aggregation-induced photodimerization of an alkynylpyrene derivative as a photoresponsive fluorescent ink.  Journal of Materials Chemistry C,  7,  13786, 2019. 

29.  许兴东  and 许兴东. A ratiometric fluorescent thermometer based on amphiphilic alkynylpyrene derivatives.  new journal of chemistry,  43,  6461, 2019. 

30.  许兴东  and 曹庆贺. Vertically aligned NiP2 nanosheets with interlaced mesh network for highly efficient water splitting under alkaline and acid solutions.  International journal of hydrogen energy,  44,  6535, 2019. 

31.  许兴东  and 唐少雄. A ratiometric fluorescent thermometer based on amphiphilic alkynylpyrene derivatives.  new journal of chemistry,  43,  6461, 2019. 

32.  许兴东  and 许兴东. Design and synthesis of branched platinum–acetylide complexes possessing a porphyrin core and their self-assembly behaviour.  chem. commun.,  48,  11223, 2012. 

33.  许兴东  and 许兴东. Facile Construction of Structurally Defined Porous Membranes from Supramolecular Hexakistriphenylamine Metallacycles through Electropolymerization .  Chem. Eur. J.,  22,  5211, 2016. 

34.  许兴东  and 许兴东. Large-Scale Honeycomb Microstructures Constructed by Platinum–Acetylide Gelators through Supramolecular Self-Assembly.  Chem. Eur. J.,  18,  1659, 2012. 

35.  许兴东  and 许兴东. Design and Preparation of Platinum–Acetylide Organogelators Containing Ethynyl–Pyrene Moieties as the Main Skeleton.  Chem. Eur. J.,  18,  16000, 2012. 

36.  许兴东  and 许兴东. Self-assembly of supramolecular tris(crown ether) hexagons with dendritic dibenzylammonium cations.  Tetrahedron,  69,  1086, 2012. 

37.  许兴东  and 许兴东. Imaging-Guided Drug Release from Glutathione-Responsive Supramolecular Porphysome Nanovesicles.  ACS Applied Materials & Interfaces,  7,  17371, 2015. 

38.  许兴东  and 许兴东. Host–Guest Interaction-Mediated Construction of Hydrogels and Nanovesicles for Drug Delivery.  Small,  2015. 

39.  许兴东  and 曹庆贺. Vertically aligned NiP2 nanosheets with interlaced mesh network for highly efficient water splitting under alkaline and acid solutions.  International journal of hydrogen energy,  44,  6535, 2019. 

40.  许兴东. A ratiometric fluorescent thermometer based on amphiphilic alkynylpyrene derivatives.  new journal of chemistry,  43,  6461, 2019. 

41.  许兴东  and 曹庆贺. Vertically aligned NiP2 nanosheets with interlaced mesh network for highly efficient water splitting under alkaline and acid solutions.  International journal of hydrogen energy,  44,  6535, 2019. 

42.  许兴东  and 唐少雄. A ratiometric fluorescent thermometer based on amphiphilic alkynylpyrene derivatives.  new journal of chemistry,  43,  6461, 2019. 

43.  许兴东  and 曹庆贺. Vertically aligned NiP2 nanosheets with interlaced mesh network for highly efficient water splitting under alkaline and acid solutions.  INTERNATIONAL JOURNAL OF HYDROGEN ENERGY Journal,  44,  6535, 2019. 

44.  许兴东. A ratiometric fluorescent thermometer based on amphiphilic alkynylpyrene derivatives.  new journal of chemistry,  43,  6461, 2019. 

45.  许兴东. Large-Scale Honeycomb Microstructures Constructed by Platinum–Acetylide Gelators through Supramolecular Self-Assembly.  Chem. Eur. J.,  18,  1659, 2012. 

46.  许兴东. Design and synthesis of branched platinum–acetylide complexes possessing a porphyrin core and their self-assembly behaviour.  chem. commun.,  48,  11223, 2012. 

47.  许兴东. Design and Preparation of Platinum–Acetylide Organogelators Containing Ethynyl–Pyrene Moieties as the Main Skeleton.  Chem. Eur. J.,  18,  16000, 2012. 

48.  许兴东. Self-assembly of supramolecular tris(crown ether) hexagons with dendritic dibenzylammonium cations.  Tetrahedron,  69,  1086, 2012. 

49.  许兴东. Imaging-Guided Drug Release from Glutathione-Responsive Supramolecular Porphysome Nanovesicles.  ACS Appl. Mater. Interfaces,  7,  17371, 2015. 

50.  许兴东. Host–Guest Interaction-Mediated Construction of Hydrogels and Nanovesicles for Drug Delivery.  Small,  2015. 

51.  许兴东. Facile Construction of Structurally Defined Porous Membranes from Supramolecular Hexakistriphenylamine Metallacycles through Electropolymerization .  Chem. Eur. J.,  22,  5211, 2016. 

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