在职教师
许醒
职称:教授
办公室:
邮箱:
电话:
个人简介
研究方向
高级氧化技术及其装备化研究
教育经历
科研项目
代表性论文
详细信息

许醒,男,1984年3月生,博士/教授,博士生导师,山东省优青。

Email: xuxing@sdu.edu.cn
地址:山东省青岛市即墨区滨海路72
山东大学环境科学与工程学院(K5


主要学术业绩:

入选全球前2%顶尖科学家榜单2021-2025年度榜单和终身影响力榜单),入选山东省优青、山东大学未来青年学者计划,担任国内SCI期刊Chinese Chemical Letters(入选中国最具国际影响力学术期刊)编委。

近5年,以通讯作者在Pro. Nat. Ac. Sci. USA., Nat. Commun., Sci. Bull., Angew. Chem. Int. Ed., Chem. Soc. Rev., Adv. Mater., Environ. Sci. Technol., Water Res., 等环境与化学、综合类顶级期刊发表SCI收录论文100余篇;他引20500余次,H指数75;35篇论文入选ESI高被引论文(1%, Highly Cited Paper),8篇论文入选ESI热点论文(1‰, Hot Paper)。

荣获教育部自然科学奖二等奖2项,山东省科技进步一等奖1项,山东省自然科学奖二等奖2项;指导本科生获得“挑战杯”全国大学生课外学术科技作品竞赛、“国家级大学生创新创业训练计划”等国家级赛事奖项6项,其中包括金奖(一等奖)2项、银奖(二等奖)2项、铜奖2项。


主要研究方向:
绿色催化材料的结构设计、装置构建,实现水处理领域的碳污协同控制;

芬顿催化技术耦合其它高级氧化技术的基础与应用研究;

高级催化氧化技术及反应器集成系统的开发与应用。


学习和工作经历:
2002.9-2006.7,山东大学环境科学与工程学院,环境工程专业,本科;
2006.9-2009.7,山东大学环境科学与工程学院,环境工程专业,硕士;
2009.7-2010.9,山东大学环境科学与工程学院, 研究助理;
2011.12-2012.12Australia, University of Adelaide, School of Chemical Engineering, 联合培养。

2010.9-2014.7,山东大学环境科学与工程学院,环境工程专业,博士;

2014.9-2017.7,山东大学环境科学与工程学院,环境工程专业,助理研究员;

2017.9-2024.09,山东大学环境科学与工程学院,环境工程专业,副教授;

2024.9-,山东大学环境科学与工程学院,环境工程专业,教授;


学术兼职:

Journal Material Chemistry A 专刊编辑、国产卓越期刊 Chinese Chemical Letters 编委Nat. Water. Nat. Commun., Pro. Nat. Ac. Sci. USA., Angew, Adv. Mater., Environ. Sci. Technol., Appl. Catal. B: Environ.等国际著名期刊的审稿人


科研及资助项目:

主持国家自然科学基金项目、山东省优青项目、科技部国际合作项目、山东省重点研发项目山东省自然科学基金面上项目山东大学未来青年学者基金中石化开放基金胜利油田横向课题等项目20余项

作为主要研究人员参与了国家自然科学基金项目5项、国家科技支撑重点项目1、山东省杰青项目1、山东省自然科学基金项目2、山东省重大创新项目1


代表性文章(通讯作者):

1. J.R. Guo, Y.J. Wang, Y.N. Shang*, B.Y. Gao, Q. Li, X.G. Duan, X. Xu*, Fenton-like activity and pathway modulation via single-atom sites and pollutants comediates the electron transfer process. Pro. Nat. Ac. Sci. USA., 2024, 121 (3), e2313387121. 


2. D.Z. Zhang, Q.B. Tian, Y.F. Wang, Y.B. Liu,B.R. Li, Y. Zhang, M.L. Zhang, C. Lyu, X. Xu*. Triple-Reaction-Center Catalysis Drives Simultaneous Oxidation-Reduction towards Diverse Emerging Contaminants under Oxidant-Free Conditions. Nat. Commun. 2026, https://doi.org/10.1038/s41467-026-76717-8.


3. Y.N. Shang, X. Xu*, B.Y. Gao, S.B. Wang, X.G. Duan*. Single-Atom Catalysis in Advanced Oxidation Processes for Environmental Remediation. Chem. Soc. Rev. 2021, 50, 5281-5322.


4. Q.B. Tian, J.L. Chang, X.M. Peng, L. Geng, B.Y. Gao, Q. Li, Y. Gao, X. Xu*. Iron Single-Atom Based Double-Reaction-Center Catalysis Triggers Internal-Driven and External-Driven Pathways for Green Fenton-Like Chemistry. Angew. Chem. Int. Ed. 2025, 64 (19) e202503995.


5. J.R. Guo, Z.K Gao, T.R. Zhang, L. Geng, X. Xu*. Synergistic Dual-Single-Atom Catalysis Driving Auto-Catalytic Process Toward Oxidant-Free Fenton-Like Chemistry for Water Purification. Angew. Chem. Int. Ed. 2026, 65 (3) e23480.


6. Q.Y. Bai, J.Y. Wang, X. Xu*, X.N. Li, X. Quan, Y.B. Liu*. Coordination-Engineered Fe Single Atoms Enable Synergistic PVC Upcycling into Fuel-RangeHydrocarbons via Fenton-Like Pathway. Environ. Sci. Technol. 2026. https://doi.org/10.1021/acs.est.6c07414.


7. Q.B. Tian, X. Xu*, X.G. Duan*. Application-Oriented Advanced Oxidation Processes: Research Priorities for Upscaling and Deployment. Environ. Sci. Technol. 2025, 59, 32, 16823–16826.


8. M.X. Yang, Z.X. Hou, X. Zhang, B.Y. Gao, Y.W. Li, Y.N. Shang, Q.Y. Yue, X.G. Duan*, X. Xu*. Unveiling the Origins of Selective Oxidation in Single-Atom Catalysis via Co–N4–C Intensified Radical and Nonradical Pathways. Environ. Sci. Technol., 2022. 56, 16, 11635-11645.


9. Q.B. Tian, Y.B. Liu, Q. Li, X.M. Zhao, Y.W. Li, N. Li, Y.S. Wang, Y. Shi, X. Xu*. Atomic coordination engineering and pollutants synergy co-modulate self-motivated single-atom catalysis with zero-oxidant addition for sustainable water purification.Sci. Bull. 2026, 71, 2552-2563.


10. F.T. Geng, Z.J. Xu, X.G. Duan, S.Q. Ni, X. Xu*, From impurities to Co-catalysts: rethinking nanophase coexistence in single-atom Fenton-like catalysis. Sci. Bull. 2026, https://doi.org/10.1016/j.scib.2026.07.048.


11. Q.B. Tian, Q. Li, T.R. Zhang, W.H. Huang, C.L. Zhao, B. Hu*, X. Xu*. Molecular Orbital Level Micro-Electric Field in Green Fenton-Like Chemistry for Water Treatment: From Mechanism Understanding to Scale-Up Applications. Adv. Mater., 2025, 37, e09280.


12. H.H. Zhao, X. Xu*, W.Q. Cui, L. Geng, X.M. Peng, J.R. Yang, X.Z. Shao*, Y.B. Liu*. Synchronization Strategy for Activity and Stability in Fenton-Like Single-Atom Catalysis. Adv. Mater., 2025, 37, 2503217.


13. J.R. Guo, X.G. Duan*, Y.N. Shang, B.Y. Gao, Q. Li, X. Xu*, Size-Dependent Catalysis in Fenton-like Chemistry: From Nanoparticles to Single Atoms. Adv. Mater., 2024, 36, 2403965.


14. Z.S. Zhu, X. Xu*, X.G. Duan*, S.B. Wang, Atomic‐level Engineered Cobalt Catalysts for Fenton-Like Reactions: Synergy of Single Atom Metal Sites and Nonmetal-bonded Functionalities. Adv. Mater., 2024, 36, 2401454.


15. H.Y Lu, L.F. Hou, Y. Zhang*, X.Q. Cao, X. Xu*, Y.N. Shang*. Pilot-scale and large-scale Fenton-like applications with nano-metal catalysts: From catalytic modules to scale-up applications. Water Res., 2024, 266, 122425.


16. Q.B. Tian, Y. Jiang*, X.G. Duan*, Q. Li, Y. Gao, X. Xu*. Low-peroxide-consumption fenton-like systems: The future of advanced oxidation processes. Water Res., 2025, 268, 122261.


17. Q.B. Tian, J.L. Chang, B.L. Yu, Y. Jiang, B.Y. Gao, J.R. Yang, Q. Li, Y. Gao, X. Xu*. Co-catalysis strategy for low-oxidant-consumption Fenton-like chemistry: From theoretical understandings to practical applications and future guiding strategies. Water Res., 2024, 267, 122488.


18. Q.B. Tian, X. Zhang, J.L. Chang, D.D. Chen, S.Y. You, X.M. Peng, B.Y. Gao, Y.N. Shang, Bo Wei, Qi. Li, Z. Hu, Y. Gao, X. Xu*. Silico-oxygen bonding integrated with nano-size pore enrichment enables sustainable low-oxidant-consumption Fenton-like chemistry. Water Res., 2025, 281, 123550.


19. M.Y. Fan, Y.W. Li, T.R. Zhang, Z.K. Gao, Y. Wu, Y.N. Shang, Z.C. Huo, X.M. Zhao, Y. Gao, L. Geng. X. Xu*. Synergy of nanoclusters/single atoms regulates sustainable oxidation pathways for self-motivated Fenton-like processes. Water Res., 2025, 287, 124421.


20. D.Z. Zhang, Z.H. Xu, X. Xu*. B.R. Li, Y.L. Guo*, H.H. Zhao*. From Algal Threat to Fe/N-Rich Single-Atom Catalyst: Engineering Iron-Accumulating Algae for High-Performance Fenton-Like Chemistry and Lifecycle Sustainability. Adv. Funct. Mater., 2026, e29134.



本人将为硕士、博士和博士后等营造自由、平等的学术氛围,提供多元化的国内、国际合作平台。

欢迎对环境功能材料、水处理等研究感兴趣的同学加入!