钟兴 教授 博士 浙江省 研究领域: 新材料,石油炼制,石油化工,精细化工 研究方向: (1)持续流动工业电催化氧化研发及产业化; (2)低压电解臭氧发生器研发及产业化; (3)新一代涂层钛阳极研发及产业化。 所在单位: 浙江工业大学

基本信息

所在单位:
浙江工业大学
机构细分:
化学工程学院
单位类型:
高等院校
职务:
教授
职称:
教授
最高学历:
博士
教育经历:
2007.09-2012.06, 兰州大学 物理化学,博士
2003.09-2007.06, 兰州大学 化学工程与工艺,本科
工作经历:
2022.01-至今,    浙江工业大学化工学院,教授,博士生导师
2016.01-2021.12, 浙江工业大学化工学院,副教授
2018.12-2019.12, 美国威斯康辛大学麦迪逊分校,访问学者 合作导师:Prof. Shannon. S. Stahl
2012.10-2015.12, 浙江工业大学化工学院,讲师
专家介绍:
钟兴,教授,博士生导师,国家优秀青年基金获得者。长期从事替代重金属的绿色工业电催化反应工程研究,在持续流动新型SPE电反应工程研究领域形成特色,系统开展“电催化剂-SPE膜电极-电反应器”及成套设备的应用基础研究。以通讯/第一作者在国内外主流学术刊物发表SCI论文60余篇,发明专利授权20余项。先后主持国家自然科学青年,面上,国家重点研发计划课题,重大专利成果转让等项目。实现非铅低压电解臭氧发生技术专利所有权超千万转让。荣获中国化工学会基础研究成果奖一等奖,侯德榜化工科学技术青年奖等。入选2016年浙江工业大学“青年英才支持计划(优青)”,2017年浙江省高校中青年学科带头人,2020年浙江省高校领军-青年优秀人才,2021年浙江省杰出青年基金,2023年国家优秀青年科学基金。现任中国化工学会青年工作委员会委员,中国化工学会化工过程强化专业委员会青年委员,催化联盟青年工作委员会青年委员。
专家荣誉:
2024年 侯德榜化工科学技术青年奖
2024年 中国商业联合会科学技术奖科技进步一等奖 (5/15)
2022年 中国化工学会 基础研究成果奖一等奖 浙江工业大学 (2/7)
2024年 浙江工业大学校级优秀共产党员
2024年 浙江工业大学校级优秀教师
2023年 国家优秀青年科学基金
2023年 浙江工业大学化工学院第十七届卓越化工人教师年度人物
2022年 浙江工业大学化工学院第十六届卓越化工人教师年度人物
2021年 浙江省杰出青年基金
2020年 浙江省“高校领军-青年优秀人才”
2017年 浙江省高校中青年学科带头人
2016年 浙江工业大学 第二批 “青年英才计划” 优青
2015年 浙江工业大学化工学院 优秀班主任
2014年 浙江工业大学化工学院 优秀教师(先进工作者)

科研能力

研究领域:
新材料,石油炼制,石油化工,精细化工
研究方向:
(1)持续流动工业电催化氧化研发及产业化;
(2)低压电解臭氧发生器研发及产业化;
(3)新一代涂层钛阳极研发及产业化。
英文标签:
Electrochemical Ozone Production;Density Functional Theory;Hydrogen Peroxide;DFT;Graphene;Electrocatalysis;Oxygen Evolution Reaction;Hydrogenation;Catalysis;Electrocatalytic Oxidation
论文著作:
[63] Electrooxidation of Sterols Coupled with H2 Production via Electron-Rich Pt Supported on Ni2P Electrocatalysts, Suiqin Li, Jieyu Wang, Yuhang Wang, Jiahui He, Kai Li, Lihao Liu, Linhan Ren, Ying Chen, Xiaonian Li, Zhengbin Zhang, Zihao Yao*, Xing Zhong*, Jianguo Wang, AIChE Journal, 2025, DOI: 10.1002/aic.70021
[62] Lihao Liu, Suiqin Li, Kai Li, Jiahui He, Yuhang Wang, Jieyu Wang, Ying Chen, Yinjie Xu, Mengxin Wang, Yongyong Cao,* Xing Zhong*, Jianguo Wang, Dynamic Reconstruction Engineering of Nickel(II) Carbonate Hydroxide for Enhanced Electrocatalytic Alcohol Oxidation, Chemical Engineering Journal, 2025, 163294.
[61] Linhan Ren, Jiayuan Li, Suiqin Li, Kai Li, Yuhang Wang, Jieyu Wang, Ying Chen, Jiahui He, Xing Zhong*, Jianguo Wang*, Flow Electrooxidation of Chiral Alcohols with High Enantioselectivity via Integrated Ru/S-Ni-MOFs and Aminoxyl Radicals, AIChE Journal, 2025, e18847.
[60] Fengying Gao, Xinyu Li, Lihao Liu, Mengmeng Lu, Huaijie Shi, Xuan Yu, Lei Ding, Shibin Wang, Sheng Dai*, Xing Zhong*, Jianguo Wang*, Effective Electrochemical Ozone Production Coupled with Hydrogen Evolution Reaction by Synergistic Effect of PtCo alloy and Borides, Chemical Engineering Science, 2025, 309, 121444.
[59] Yuhang Wang, Ying Chen, Lihao Liu, Linhan Ren, Jieyu Wang, Kai Li, Jiahui He, Suiqing Li, Jinfu Cai, Chuang Qi, Pan Hu, Yongyong Cao*, Xing Zhong*, Jianguo Wang*, Anion doping promotes electrocatalyst reconfiguration for efficient C-C bond cleavage of 4-Methylcyclohexanol, Green Chemistry, 2025, 27, 2008.
[58] Suiqin Li, Shibin Wang, Yuhang Wang, Jiahui He, Kai Li, James B. Gerken, Shannon S. Stahl, Xing Zhong*, Jianguo Wang*, Synergistic Enhancement of Electrochemical Alcohol Oxidation by Combining NiV-Layerd Double Hydroxide with an Aminoxyl Radical, Nature Communications, 2025, 16, 266.
[57]  Jinfu Cai, Jinglei Si, Jia Liu, Yufeng Xue, Zaixiang Xu, Yuhang Wang, Yabing Wang, Yang Ding, Haoqiang Cao*, Yunyi Cao, Shibin Wang*, Xing Zhong*, Jianguo Wang*, Highly Active Multicomponent Metal Oxides/Nanodiamond Hybrid for Enhanced Electrochemical Ozone Production and Chlorine Evolution Reaction, Applied Catalysis B: Environmental and Energy, 2025, 366, 125015.
[56]  Jiahui He, Suiqin Li, Kai Li, Lihao Liu, Yuhang Wang, Linhan Ren, Ying Chen, Jieyu Wang, Yongyong Cao*, Xing Zhong*, Jianguo Wang*, High Enantiomeric Purity Carboxylic Acid Synthesis via Synergistic Electrocatalytic Oxidation Using Mn-NiSe2 and Aminoxyl Radicals, Advanced Energy Materials, 2025, 2405358.
[55] Xiaoge Peng, Xu Liu, Xiaosa Wang, Yuanan Li, Suiqin Li, Yuhang Wang, Zhikang Bao, Haoqiang Cao, Yunyi Cao*, Xing Zhong*, Jianguo Wang*, Enhanced Reactive Oxygen Species Generation: Synergic Process of Three-electron Oxygen Reduction and Electrochemical Ozone Production by Bimetallic La-Nb Oxides, Journal of Energy Chemistry, 2025, 104, 155.
[54] Xiaosa Wang, Zaixiang Xu, Mengmeng Lu, Lei Ding, Huaijie Shi, Jiahui He, Haoqiang Cao, Yunyi Cao*, Xing Zhong*, Jianguo Wang*, Robust Bilayer Ni-Sb-SnO2 Combined with Continuous Flow Stacked Electrolyzer for Electrochemical Ozone Production, AIChE Journal, 2025, e18711.
[53] Ying Chen, Shibin Wang, Zaixiang Xu, Yuhang Wang, Jiahui He, Kai Li, Jieyu Wang, Lihao Liu, Linhan Ren, Suiqin Li, Zhengbin Zhang, Xing Zhong*, Jianguo Wang*, Boosting Electrocatalytic Alcohol Oxidation: Efficient d-π Interaction with Modified TEMPO and Bioinspired Structure, AIChE Journal, 2025, e18662
[52] Liu Jia, Xiaoge Peng, Xiaosa Wang, Xing Zhong*, Jianguo Wang*, Electrochemical Ozone Production: From Fundamental Mechanisms to Advanced Applications, EES Catalysis, 2025, 3, 170-204 (review)
[51] Yufeng Xue, Jinglei Si, Jinfu Cai, Zaixiang Xu, Yuhang Wang, Yabing Wang, Mingzhe Xue, Yang Ding, Yichen Gu, Yunyi Cao, Shibin Wang*, Haoqiang Cao*, Xing Zhong*, Jianguo Wang*, Lanthanide-Doped Enhances Ni-Sb-SnO2 Orbital Hybridization: Promoting Efficient Electrochemical Ozone Production and Chlorine Evolution Reaction, Chemical Engineering Journal, 2024, 502, 158098.
[50] Mengmeng Lu, Xu Liu, Changfei Jing, Xiaosa Wang, Lei Ding, Fengying Gao, Linhan Ren, Sheng Dai*, Xing Zhong*, Jianguo Wang*, Efficient Electrochemical Ozone and Hydrogen Peroxide Production by Synergistic Effect of Atomically dispersed Pt, Boron and Nitrogen Doped Two-dimensional Diamonds, Advanced Functional Materials, 2024, 2412170
[49] Xiaoge Peng, Lei Ding, Zhikang Bao, Jia Liu, Huaijie Shi, Xiaosa Wang, Xing Zhong*, Haoqiang Cao*, Jianguo Wang*, TaO/TaN heterosturecture promote the synergistic electrosynthesis of ozone and hydrogen peroxide and their coupled applications, Industrial & Engineering Chemistry Research, 2024, 63, 38, 16312–16323
[48] Kai Li, Linhan Ren, Suiqin Li, LiHao Liu, Jiahui He, Yinjie Xu, Mengxin Wang, Shuying Zhao, Yuhang Wang, Ying Chen, Jieyu Wang, Xing Zhong*, Jianguo Wang*, Boosting electrocatalytic oxidation of heterocyclic alcohols with low usage aminoxyl radicals via MOF-derived NiOOH, AIChE Journal, 2024, e18531.
[47] Huaijie Shi, Xiaosa Wang, Xiaoge Peng, Mingzhe Xue, Yufeng Xue, Fengying Gao, Xing Zhong*, Jianguo Wang*. Regulation of the microenvironment of Pb2O3@Bi2O3-tube by structural reconstruction for boosting the electrochemical ozone production performance. Journal of Materials Chemistry A, 2024, 12, 10852-10862
[46] Shuying Zhao, Shibing Wang, Chenglong Qiu, Zaixiang Xu, Linhan Ren, Yuhang Wang, Suiqin Li, Jiahui He, Kai Li, Yinjie Xu, Mengxin Wang, Xing Zhong*, Jianguo Wang*, Enhanced Electrocatalytic Alcohol Oxidation Mediated With Ultra-low Concentration of Aminoxyl Radicals via an Intermediate-Rich Local Microenvironment, Chemical Engineering Science, 2024, 286, 119653
[45] Xuan Yu, Xu Liu, Jinyan Zhao, Mingzhe Xue, Huaijie Shi, Chenghang Jiang, Jia Liu, Yufeng Xue, Fengying Gao, Xing Zhong*, Zihao Yao*, Jianguo Wang*. Tuning Intermediate-Enriched Microenvironment of Pt-loaded Porous TiN Nanorods for Enhanced Electrochemical Ozone Production and Hydrogen Evolution Reaction, Chemical Engineering Science, 2024, 286, 119652
[44] Jia Liu, Shibin Wang, Jinfu Cai, Lizhen Wu, Yun Liu, Jiahui He, Zaixiang Xu, Xiaoge Peng, Xing Zhong*, Liang An*, Jianguo Wang*, Synergistic promotion by highly active square-shaped lead oxide and visualized electrolyzer for enhanced electrochemical ozone production, Chinese Journal of Catalysis, 2024, 57, 80-95
[43] Mengxin Wang, JiaYuan Li, Suiqin Li, LiHao Liu, Jiahui He, Kai Li, Yinjie Xu, Shuying Zhao, Wenwu Zhou, Chun Li, Xing Zhong*, Zhengbin Zhang*, Zihao Yao*, Jianguo Wang*. Process Intensification Enhanced Continuous Flow for the Effective Coupling of Sterol Electrooxidation with H2 Evolution Using NiMo-based Electrocatalysts. Chemical Engineering Science, 2024, 285,119589
[42] Yinjie Xu, Suiqin Li, Lihao Liu, Jiahui He, Kai Li, Mengxin Wang, Shuying Zhao, Chun Li, Zhengbin Zhang, Xing Zhong*, Jianguo Wang*. Enhanced Electrocatalytic Oxidation of Sterols using the Synergistic Effect of NiFe-MOF and Aminoxyl Radicals. Acta Physico-Chimica Sinica 2024, 40, 2305012
[41] Lei Ding, Wenwen Li, Mingzhe Xue, Xiaoge Peng, Huaijie Shi, Jia Liu, Xiaosa Wang, Chenghang Jiang, Yufeng Xue, Shibin Wang, Xing Zhong*, Jianguo Wang*. Simultaneous Ozone and Hydrogen Peroxide Electrosynthesis via Defect Modulation in Ni, Sb-doped SnO2 Electrocatalysts. AIChE Journal, 2024, e18314
[40] Mingzhe Xue, Jinyan Zhao, Xuan Yu, Lei Ding, Xiaosa Wang, Jia Liu, Huaijie Shi, Yufeng Xue, Zihao Yao, Xing Zhong*, Jianguo Wang*, Facilitating electrochemical ozone production and chlorine evolution reaction by synergistic effect of multicomponent metal oxides. Advanced Functional Materials, 2023, 2308567
[39] Huaijie Shi, Ge Feng, Tulai Sun, Xiaosa Wang, Lei Ding, Zhi Wang, Hui Jin, Qiaoli Chen, Shibin Wang, Xing Zhong*, Yihan Zhu*, Jianguo Wang*. Convex Polyhedral Nanocrystals with High-Index and Low-Index Microfacets for Electrochemical Co-production of Ozone and Hydrogen Peroxide. Chem Catalysis, 2023, 3 (9), 100728
[38] Zhikang Bao, Zihao Yao,  Chongzhi Zhu,  Yikuan Liu,  Shijie Zhang,  Jinyan Zhao,  Lei Ding, Zaixiang Xu, Xing Zhong*, Yihan Zhu*, and Jianguo Wang*. Coherent Sub-nanometer Interface Between Crystalline and Amorphous Materials Boosts Electrochemical Synthesis of Hydrogen Peroxide. Small, 2023, 2302380
[37] Jiahui He, Suiqin Li, Chun Li, Kai Li, Yinjie Xu, Mengxin Wang, Shuying Zhao, Jiefeng Zhang, Xing Zhong*, Xiaonian Li, Zhengbin Zhang*, Jianguo Wang*, Highly Efficient Electrocatalytic Oxidation of Sterol by Synergistic Effect of Aminoxyl Radicals and Se-Ni5P4. AIChE Journal, 2023, e18153
[36] Xiaosa Wang, Jiayuan Li, Lei Ding, Huaijie Shi, Jia Liu, Xinying Yang, Min Li, Xing Zhong*, Zihao Yao*, Jianguo Wang*. Tailoring Crystal Facet Microenvironments for Simultaneous Electrochemical Ozone and Hydrogen Peroxide Production. AIChE Journal, 2023, e18152
[35] Suiqin Li, Shibin Wang, Jiahui He, Kai Li, Yinjie Xu, Mengxin Wang, Shuying Zhao, Yuhang Wang, Xiaonian Li, Xing Zhong*, Jianguo Wang*. Chromium-Doped Nickel Oxide and Nickel Nitride Mediate Selective Electrocatalytic Oxidation of Sterol Intermediates Coupled with H2 Evolution. Angewandte Chemie International Edition, 2023, e202306553
[34] Jia Liu, Chenglong Qiu, Zaixiang Xu, Mingzhe Xue, Jinfu Cai, Huaijie Shi, Lei Ding, Xiaonian Li, Xing Zhong*,  Jianguo Wang*. Tailoring hydrophobic-aerophilic microenvironment for robust electrochemical ozone production. Chemical Engineering Journal, 2023, 468: 143504
[33] Min Li, Chenglong Qiu, Tulai Sun, Xiaosa Wang, Liwei Xia, Xinying Yang, Wei Zhao, Huaijie Shi, Lei Ding, Xing Zhong*, Yihan Zhu*, Jianguo Wang*. Frustrating Surface Segregation by Nanoconfinement: Boosting Electrochemical Ozone Production over B13C2 Encapsulated PtNi Alloy Electrocatalyst. Industrial & Engineering Chemistry Research, 2023, 62, 20, 7889-7900
[32] Jia Liu, Shibin Wang, Zhangnv Yang, Chencheng Dai, Ge Feng, Beibei Wu, Wenwen Li, Lu Shu, Kamal Elouarzaki, Xiao Hu, Xiaonian Li, Hui Wang, Zhen Wang*, Xing Zhong*, Zhichuan J. Xu*, Jianguo Wang*. Phase shuttling-enhanced electrochemical ozone production. EES Catalysis. 2023, 1, 301-311
[31] Xinying Yang, Wenwen Li, Shibin Wang, Huaijie Shi, Xiaosa Wang, Min Li, Lei Ding, Xing Zhong*, Jianguo Wang*. Hybrid sp3/sp2 Two-dimension Nanodiamonds for Electrochemical Ozone Production. ACS ES&T Engineering. 2023, 3, 6, 894-905
[30] Suiqin Li, Shibin Wang, Yuhang Wang, Jiahui He, Kai Li, Yinjie Xu, Mengxin Wang, Shuying Zhao, Xiaonian Li, Xing Zhong*, Jianguo Wang*. Doped Mn Enhanced NiS Electrooxidation Performance of HMF into FDCA at Industrial-Level Current Density. Advanced Functional Materials, 2023, 33 (24), 2214488
[29] Xiaoge Peng, Zhikang Bao, Shijie Zhang, Yuanan Li, Lei Ding, Huaijie Shi, Jia Liu, Xing Zhong, * Xiaonian Li, Jianguo Wang*. Modulation of Lewis and Brønsted acid centers with oxygen vacancies for Nb2O5 electrocatalysts: Towards highly efficient simultaneously electrochemical ozone and hydrogen peroxide production. Chemical Engineering Science, 2023, 271, 118573
[28] Lei Ding, Jinyan Zhao, Zhikang Bao, Shijie Zhang, Huaijie Shi, Jia Liu, Guoliang Wang, Xiaoge Peng, Xing Zhong,* and Jianguo Wang*. Synchronous generation of green oxidants H2O2 and O3 by using a heterojunction bifunctional ZnO/ZnS@C electrocatalyst. Journal of Materials Chemistry A, 2023, 11 (7), 3454-3463
[27] Suiqin Li, Chun Li, Kai Li, Xiang Sun, Xing Zhong,* Jiahui He, Zaixiang Xu, Xin Liu, Jiefeng Zhang, Fangjun Shao, Meichao Li, Zhengbin Zhang,* Xiaonian Li, Jianguo Wang*. Reaction and transport co-intensification enhanced continuous flow electrocatalytic aminoxyl-mediated oxidation of sterol intermediates by 3D porous framework electrode, Chemical Engineering Journal, 2022, 446, 136659
[26] Haiyang Zheng, Yijing Gao, Xiaosa Wang, Huaijie Shi, Yu Gu, Wenbin Jiang, Jia Liu, Suiqin Li, Aiyuan Li, Shibin Wang, Jianguo Wang, Xing Zhong*.  Tailoring the d-Band Centers of Perovskite Oxides for Electrochemical Ozone Production, ChemistrySelect, 2022, 7, 19, e202200966
[25] Huaijie Shi, Ge Feng, Suiqin Li, Jia Liu, Xinying Yang, Ye Li, Ye Lu, Xing Zhong,* Shibin Wang* and Jianguo Wang*. Weak Pb–O of confined [Pb–O4] in pyramidal sillenite-type Bi12PbO20 for enhanced electrochemical ozone production, Journal of Materials Chemistry A, 2022,10, 5430-5441
[24] Yu Gu, Shibin Wang, Huaijie Shi, Jun Yang, Shuiqin Li, Haiyang Zheng, Wenbin Jiang, Liu, J, Xing Zhong*, Jianguo Wang*. Atomic Pt Embedded in BNC Nanotubes for Enhanced Electrochemical Ozone Production via an Oxygen Intermediate-Rich Local Environment, ACS Catalysis. 2021, 11(9): 5438-5451
[23] Wenbin Jiang, Shibin Wang, Jia Liu, Haiyang Zheng, Yu Gu, Wenwen Li, Huaijie Shi, Suiqin Li, Xing Zhong*, Jianguo Wang*. Lattice oxygen of PbO2 induces crystal facet dependent electrochemical ozone production, Journal of Materials Chemistry A, 2021, 9 (14), 9010-9017
[22] Xing Zhong, Md Asmaul Hoque, Matthew D. Graaf, Kaid C. Harper, Fei Wang, J. David Genders, and Shannon S. Stahl*. Scalable Flow Electrochemical Alcohol Oxidation: Maintaining High Stereochemical Fidelity in the Synthesis of Levetiracetam, Organic Process Research & Development, 2021, 25, 12, 2601–2607
[21] Bowen Yuan, Zihao Yao, Chenlong Qiu, Haiyang Zheng, Yilong Yan, Qiaoqiao Zhang, Xiang Sun, Yu Gu, Xing Zhong*, Jianguo Wang*, Synergistic effect of size-dependent PtZn nanoparticles and zinc single-atom sites for electrochemical ozone production in neutral media, Journal of Energy Chemistry, 2020, 51, 312-322
[20] Yilong Yan, Yijing Gao, Haiyang Zheng, Bowen Yuan, Qiaoqiao Zhang, Yu Gu, Guilin Zhuang, Zhongzhe Wei, Zihao Yao, Xing Zhong*, Xiaonian Li, Jianguo Wang*. Simultaneous electrochemical ozone production and hydrogen evolution by using tantalum-based nanorods electrocatalysts, Applied Catalysis B: Environmental, 2020, 266, 118632
[19] Qiaoqiao Zhang, Yongyong Cao, Yilong Yan, Bowen Yuan, Haiyang Zheng, Yu Gu, Xing Zhong* and Jianguo Wang*. Synergetic effect of pyrrolic-N and doped boron in mesoporous carbon for electrocatalytic ozone production, Journal of Materials Chemistry A, 2020, 8, 2336-2342
[18] Suiqin Li, Xiang Sun, Yao Zihao, Xing Zhong*, Yongyong Cao, Yulin Liang, Zhongzhe Wei, Deng Shengwei, Guilin Zhuang, Xiaonian Li, Jianguo Wang*. Biomass Valorization via Paired Electrosynthesis Over Vanadium Nitride-Based Electrocatalysts, Advanced Functional Materials, 2019, 29(42): 1904780
[17] Yulin Zhou, Yijing Gao, Xing Zhong*, Wenbin Jiang, Yulin Liang, Pengfei Niu, Meichao Li, Guilin Zhuang, Xiaonian Li, Jianguo Wang*. Electrocatalytic Upgrading of Lignin-Derived Bio-Oil Based on Surface-Engineered PtNiB Nanostructure, Advanced Functional Materials, 2019, 29(10): 1807651
[16] Xianlang Chen, Xing Zhong*, Bowen Yuan, Suiqin Li, Yongbing Gu, Qiaoqiao Zhang, Guilin Zhuang, Xiaonian Li, Shengwei Deng, Jianguo Wang*. Defect engineering of nickel hydroxide nanosheets by Ostwald ripening for enhanced selective electrocatalytic alcohol oxidation, Green Chemistry, 2019, 21(3): 578-588
[15] Jian Zheng, Xianlang Chen, Xing Zhong*, Suiqin Li, Tianzhu Liu, Guilin Zhuang, Xiaonian Li, Shengwei Deng, Donghai Mei, Jianguo Wang*. Hierarchical Porous NC@CuCo Nitride Nanosheet Networks: Highly Efficient Bifunctional Electrocatalyst for Overall Water Splitting and Selective Electrooxidation of Benzyl Alcohol, Advanced Functional Materials, 2017, 27(46): 1704169
[14] Xianlang Chen, Jian Zheng, Xing Zhong*, Yihan Jin, Guilin Zhuang*, Xiaonian Li, Shengwei Deng and Jianguo Wang*. Tuning the confinement space of N-carbon shell-coated ruthenium nanoparticles: highly efficient electrocatalysts for hydrogen evolution reaction, Catalysis Science & Technology, 2017, 7, 4964-4970
[13] Xing Zhong, Yingying Qin, Xianlang Chen, Wenlei Xu, Guilin Zhuang, Xiaonian Li, Jianguo Wang*. PtPd alloy embedded in nitrogen-rich graphene nanopores: High-performance bifunctional electrocatalysts for hydrogen evolution and oxygen reduction, Carbon,2017, 114, 740-748
[12] Xing Zhong, Lei Wang, Zhenzhan Zhuang, Xianlang Chen, Jian Zheng, Yulin Zhou, Guilin Zhuang, Xiaonian Li, Jianguo Wang*. Double Nanoporous Structure with Nanoporous PtFe Embedded in Graphene Nanopores: Highly Efficient Bifunctional Electrocatalysts for Hydrogen Evolution and Oxygen Reduction, Advanced. Materials. Interfaces, 2017, 4, 1601029
[11] Xing Zhong, Youyi Sun, Xianlang Chen, Guilin Zhuang, Xiaonian Li, Jianguo Wang*. Mo Doping Induced More Active Sites in Urchin-Like W18O49 Nanostructure with Remarkably Enhanced Performance for Hydrogen Evolution Reaction, Advanced Functional Materials, 2016, 26(32): 5778-5786
[10] Xing Zhong, Wenlei Xu, Lei Wang, Yingying Qin, Guilin Zhuang, Xiaonian Li, Jianguo Wang*. Twin-like ternary PtCoFe alloy in nitrogen-doped graphene nanopores as a highly effective electrocatalyst for oxygen reduction, Catalysis Science & Technology, 2016, 6, 5942
[09] Xing Zhong, Yu Jiang, Xianlang Chen, Lei Wang, Guilin Zhuang, Xiaonian Li, Jianguo Wang*. Integrating cobalt phosphide and cobalt nitride-embedded nitrogen-rich nanocarbons: high-performance bifunctional electrocatalysts for oxygen reduction and evolution, Journal of Materials Chemistry A, 2016, 4, 10575.
[08] Xing Zhong, Lei Wang, Hu Zhou, Yingying Qin, Wenlei Xu, Yu Jiang, Youyi Sun, Zheqi Shi, Guilin Zhuang, Xiaonian Li, Donghai Mei, JianGuo Wang*. In Situ Fabrication of PtCo Alloy Embedded in Nitrogen-Doped Graphene Nanopores as Synergistic Catalyst for Oxygen Reduction Reaction, Advanced. Materials. Interfaces, 2015, 2, 1500365.
[07] Xing Zhong, Lin Liu, Yu Jiang, Xinde Wang, Lei Wang, Guilin Zhuang, Xiaonian Li, Prof. Donghai Mei, Prof. Jianguo Wang*, Prof. Dang Sheng Su*. Synergistic Effect of Nitrogen in Cobalt Nitride and Nitrogen-Doped Hollow Carbon Spheres for the Oxygen Reduction Reaction, ChemCatChem, 2015,7, 1826. (内封面文章)
[06] Xing Zhong, Huiyou Yu, Guilin Zhuang, Qiang Li, Xinde Wang, Yuanshuai Zhu, Lin Liu, Xiaonian Li, Mingdong Dong and Jianguo Wang*. Pyridyne cycloaddition of graphene: external active sites for oxygen reduction reaction, Journal of Materials Chemistry A, 2014, 2, 897. (封面文章)
[05] Xing Zhong, Huiyou Yu, Xinde Wang, Lin Liu, Yu Jiang, Lei Wang, Guilin Zhuang, Youqun Chu, Xiaonian Li, and Jian-guo Wang*. Pt@Au Nanorods Uniformly Decorated on Pyridyne Cycloaddition Graphene as a Highly Effective Electrocatalyst for Oxygen Reduction, Advanced. Materials. Interfaces, 2014, 6, 13448.
[04] Xing Zhong, Lin Liu, Xinde Wang, Huiyou Yu, Guilin Zhuang, Donghai Mei, Xiaonian Li and Jian-guo Wang*. A radar-like iron based nanohybrid as an efficient and stable electrocatalyst for oxygen reduction, Journal of Materials Chemistry A, 2014, 2, 6703.
[03] Xing Zhong, Meimei Jin, Huaqing Dong, Lin Liu, Lei Wang, Huiyou Yu, Shuai Leng, Guilin Zhuang, Xiaonian Li, Jian-guo Wang*. TiO2 nanobelts with a uniform coating of g-C3N4 as a highly effective heterostructure for enhanced photocatalytic activities, Journal of Solid State Chemistry, 2014, 220, 54.
[02] Xing Zhong, Haidong Yang, Shujing Guo, Shuwen Li, Galian Gou, Zhiyong Niu, Zhengping Dong, Yaojie Lei, Jun Jin, Rong Li and Jiantai Ma*. In situ growth of Ni Fe alloy on graphene-like MoS2 for catalysis of hydrazine oxidation, Journal of Materials Chemistry. 2012, 22, 13925.
[01] Xing Zhong, Jun Jin, Shuwen Li, Zhiyong Niu, Wuquan Hu, Rong Lia and Jiantai Ma*. Aryne cycloaddition: highly efficient chemical modification of graphene, Chemical Communications, 2010, 46, 7340.
发明专利:
1. 一种镍钒纳米片催化剂电催化氧化制取羰基中间体的方法
浙江工业大学
钟兴; 李随勤; 王建国; 贺佳辉; 李凯; 王梦欣
公开日期: 2025-03-18 申请日期: 2022-08-26 公开号: CN115323410B

2. 一种双氧水-臭氧双功能电催化剂的制备方法及其应用
浙江工业大学
钟兴; 彭小革; 王建国
公开日期: 2024-10-18 申请日期: 2024-06-11 公开号: CN118792683A

3. 一种磷化镍电催化剂电氧化制备3-甲基己二酸的方法
浙江工业大学
钟兴; 王宇航; 王建国
公开日期: 2024-09-06 申请日期: 2024-06-12 公开号: CN118600458A

4. 一种掺杂镧系元素锡锑镍涂层电极及其制备方法和应用
浙江工业大学; 杭州热威洁净技术有限公司
钟兴; 薛雨凤; 王建国
公开日期: 2024-08-20 申请日期: 2024-05-23 公开号: CN118516698A

5. 一种二维纳米金刚石负载锡-钌双金属氧化物电催化剂及其制备方法和应用
浙江工业大学; 杭州热威洁净技术有限公司
钟兴; 蔡锦福; 王建国
公开日期: 2024-08-16 申请日期: 2024-05-22 公开号: CN118497805A

6. 一种镍钌有机金属框架催化剂电催化氧化制取手性羧酸产品的方法
浙江工业大学
钟兴; 任林瀚; 王建国
公开日期: 2024-08-06 申请日期: 2024-05-07 公开号: CN118441294A

7. 一种具有Bi(I)的铋磷氮材料及制备方法和应用
德清县浙工大莫干山研究院; 浙江工业大学
王建国; 包志康; 钟兴
公开日期: 2024-08-02 申请日期: 2023-04-23 公开号: CN118419869A

8. 一种PdCu双原子修饰的氮化碳催化剂材料及制备方法和应用
德清县浙工大莫干山研究院; 浙江工业大学
王建国; 包志康; 钟兴
公开日期: 2024-07-30 申请日期: 2023-04-23 公开号: CN118403648A

9. 铂掺杂金属磷化物电催化氧化制取17β-醛基-19-去甲雄甾-4-烯-3-酮的方法
浙江工业大学
钟兴; 王洁妤; 李随勤; 王建国
公开日期: 2024-07-16 申请日期: 2024-04-25 公开号: CN118345386A

10. 一种镍钼金属有机框架催化剂电氧化制备羰基中间体的方法
浙江工业大学
钟兴; 刘力豪; 王建国
公开日期: 2024-07-12 申请日期: 2024-04-02 公开号: CN118326429A

11. 一种旋转电反应装置及其使用方法
浙江工业大学
钟兴; 李凯; 王建国
公开日期: 2024-06-14 申请日期: 2024-03-22 公开号: CN118186427A

12. 一种铂合金硼化物负载碳化硼催化剂及其制备方法和应用
浙江工业大学; 杭州热威洁净技术有限公司
钟兴; 高凤英; 王建国
公开日期: 2024-06-07 申请日期: 2024-02-05 公开号: CN118147690A

13. 一种镍掺杂碳质吸盘状电催化剂及其制备方法和在电催化醇氧化中的应用
浙江工业大学
钟兴; 陈颖; 王建国
公开日期: 2024-05-10 申请日期: 2024-02-01 公开号: CN118007165A

14. 一种锰掺杂硒化镍催化剂电催化氧化制取左乙拉西坦药物中间体的方法
浙江工业大学
钟兴; 贺佳辉; 王建国
公开日期: 2024-04-12 申请日期: 2024-01-23 公开号: CN117867528A

15. 一种硼、氮掺杂二维金刚石负载单原子铂催化剂及其制备方法和应用
浙江工业大学; 杭州热威洁净技术有限公司
钟兴; 卢梦梦; 王建国
公开日期: 2024-03-29 申请日期: 2023-12-18 公开号: CN117790823A

16. 一种基于电镀和浸渍法制备的锡锑镍尺寸稳定电极及其制备方法和应用
浙江工业大学; 杭州热威洁净技术有限公司
钟兴; 丁磊; 王建国
公开日期: 2024-03-22 申请日期: 2023-11-07 公开号: CN117737773A

17. 一种双原子铁催化剂及其制备方法与应用
浙江工业大学; 中国科学院宁波材料技术与工程研究所
伊理; 陆之毅; 陈徐; 钟兴
公开日期: 2024-01-30 申请日期: 2023-10-25 公开号: CN117463387A

18. 一种基于球磨法制备的碳负载钯-锌双金属氧化物电催化剂、其制备方法和应用
浙江工业大学
赵芷琪; 王建国; 应惠娟; 钟兴; 丁磊
公开日期: 2024-01-30 申请日期: 2022-05-10 公开号: CN114774979B

19. 一种八角状电催化剂及其制备方法和应用
浙江工业大学; 杭州热威洁净技术有限公司
钟兴; 时怀杰; 王建国
公开日期: 2024-01-19 申请日期: 2023-09-07 公开号: CN117414816A

20. 一种通过控制不同煅烧条件来形成含有不同价态钒氧化物催化剂及其合成方法和应用
浙江工业大学
赵芷琪; 王建国; 钟兴; 应惠娟; 邵一贞
公开日期: 2023-11-21 申请日期: 2022-05-10 公开号: CN114774980B
科研项目:
国家优秀青年科学基金项目, 2024.01-2026.12,在研,主持;
浙江省杰出青年基金项目,2022.01-2024.12,结题,主持;
国家重点研发计划课题,2022.12-2027.11,在研,主持;
重大专利成果转让,2022.04,结题,主持;
国家自然科学基金面上项目,2021.01-2024.12,结题,主持;
国家自然科学基金面上项目,2018.01-2021.12,结题,主持;
国家自然科学基金青年项目,2014.01-2016.12,结题,主持;
企业单位委托项目,2024.04-2025.03,在研,主持;
企业单位委托项目,2024.03-2024.12,结题,主持;
企业单位委托项目,2023.10-2024.10,结题,主持;
企业单位委托项目,2022.09-2025.12,在研,主持;
企业单位委托项目,2020.06-2021.12,结题,主持;
企业单位委托项目,2020.05-2020.12,结题,主持;
企业单位委托项目,2021.01-2021.12,结题,主持;
企业单位委托项目,2021.01-2021.12,结题,主持;
企业单位委托项目,2021.01-2021.11,结题,主持;
企业单位委托项目,2019.11-2020.11,结题,主持;
企业单位委托项目,2018.10-2021.12,结题,主持;
企业单位委托项目,2016.09-2017.09,结题,主持。

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