许醒,男,1984年3月生,博士/副教授,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号
云顶国际(K5)
主要学术业绩:
入选全球前2%顶尖科学家榜单,入选全球顶尖前10万科学家-全球学者库,入选山东省优青、云顶国际集团“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。
近五年,以通讯作者在Chemical Society Reviews、Environmental Science & Technology; Applied Catalysis B: Environmental等环境与化学领域顶级期刊发表SCI收录论文40余篇;他引8200余次,H指数52;16篇论文入选ESI高被引论文(1%, Highly Cited Paper),5篇论文入选ESI热点论文(1‰, Hot Paper)。
获教育部自然科学奖二等奖2项,山东省自然科学奖二等奖2项。作为指导教师,指导本科生在2019年第十六届“挑战杯”全国老员工课外学术科技作品竞赛中荣获国家级二等奖。指导本科生发表一作SCI论文7篇,指导本科生单列保研5名。目前指导的所有研究生入学期间均获得1-2次国家奖学金。
主要研究方向:
①新型金属/碳基催化剂的研制及在类芬顿催化体系的机制研究;
②类芬顿催化技术耦合其它高级氧化技术的基础与应用研究;
③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,云顶国际,环境工程专业,本科;
2006.9-2009.7,云顶国际,环境工程专业,硕士;
2009.7-2010.9,云顶国际, 研究助理;
2011.12-2012.12,Australia, University of Adelaide, School of Chemical Engineering, 联合培养。
2010.9-2014.7,云顶国际,环境工程专业,博士;
2014.9-2017.7,云顶国际,环境工程专业,助理研究员;
2017.9-,云顶国际,环境工程专业,副教授;
学术兼职:
国产卓越期刊 Chinese Chemical Letters 编委, Advanced Materials, Environmental Science & Technology, Applied Catalysis B: Environmental, Water Research, Chemical Engineering Journal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、区域创新发展联合基金子任务、山东省重点研发项目、山东省自然科学基金面上项目、云顶国际集团未来青年学者基金、中石化开放基金、胜利油田横向课题等项目10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“十二五”科技支撑重点项目1项、山东省杰青项目1项、山东省自然科学基金项目2项、山东省重大创新项目1项。
近3年发表的十篇代表性文章(通讯作者):
1. K.X. Yin, Y.N. Shang, D.D. Chen, B.Y. Gao, Q.Y. Yue, X. Xu*, Redox potentials of pollutants determining the dominate oxidation pathways in single-atom based Fenton-like system: selective catalytic mechanisms for versatile pollutants. Applied Catalysis B: Environmental. 2023, 123029.
2. K.X. Yin, L.J. Peng, D.D. Chen, S.Y. Liu, Y.J. Zhang, B.Y. Gao, K.F. Fu, Y.N. Shang, X. Xu*, High-loading of well dispersed single-atom catalysts derived from Fe-rich marine algae for boosting Fenton-like reaction: role identification of iron center and catalytic mechanisms. Applied Catalysis B: Environmental. 336, 2023, 122591.
3. K.X. Yin, R.X. Wu, Y.N. Shang, D.D. Chen, Z.L. Wu, X.H. Wang, B.Y. Gao, X. Xu*, Microenvironment Modulation of Cobalt Single-atom Catalysts for boosting both radical oxidation and electron-transfer process in Fenton-like system. Applied Catalysis B: Environmental. 2023, 122558.
4. 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. Environmental Science & Technology. 2022. 56, 16, 11635-11645.
5. Y.N. Shang, X. Xu*, B.Y. Gao, S.B. Wang, X.G. Duan*. Single-Atom Catalysis in Advanced Oxidation Processes for Environmental Remediation. Chemical Society Reviews. 2021,50, 5281-5322.
6. P.J. Duan, X.N. Liu, Y.W. Li, J.W. Pan, Q.Y. Yue, B.Y. Gao, X. Xu*. Effect of phosphate on peroxymonosulfate activation: Accelerating generation of sulfate radical and underlying mechanism. Applied Catalysis B: Environmental. 298, 2021, 120532.
7. P.J. Duan, J.W. Pan, W.Y. Du, Q.Y. Yue, B.Y. Gao*, X, Xu*. Activation of peroxymonosulfate via mediated electron transfer mechanism on single-atom Fe catalyst for effective organic pollutants removal. Applied Catalysis B: Environmental. 299, 2021, 120714.
8. L.J. Peng, X.G. Duan*, Y.N. Shang, B.Y. Gao, X. Xu*. Engineered carbon supported single iron atom sites and iron clusters from Fe-rich Enteromorpha for Fenton-like reactions via nonradical pathways. Applied Catalysis B: Environmental. 287, 2021, 119963.
9. Y.F. Qi, J. Li, W. Cao, Y.Q. Zhang, Z.R. Wu, M. Akram, X. Xu*. Novel Lignin-based Single Atom Catalysts as Peroxymonosulfate Activator for Pollutants Degradation: Role of Single Cobalt and electron transfer pathway. Applied Catalysis B: Environmental. 286, 2021, 119910.
10. L.J. Peng, Y.N. Shang, B.Y. Gao, X. Xu*. Co3O4 anchored in N, S heteroatom co-doped porous carbons for degradation of organic contaminant: role of pyridinic N-Co binding and high tolerance of chloride. Applied Catalysis B: Environmental. 282, 2021, 119484.
11. W.Y. Du (本科生), Q.Z. Zhang, Y.N. Shang, W. Wang, Q. Li, Q.Y. Yue, B.Y. Gao, X. Xu*. Sulfate saturated biosorbent-derived Co-S@NC nanoarchitecture as an efficient catalyst for peroxymonosulfate activation. Applied Catalysis B: Environmental. 262, 2020, 118302.
12. P.J. Duan, Y.F. Qi, Q.Y. Yue, Y.N. Shang, B.Y. Gao*, X, Xu*. Enhanced degradation of clothianidin in peroxymonosulfate/catalyst system via core-shell FeMn@N-C and phosphate surrounding. Applied Catalysis B: Environmental. 267, 2020, 118717.
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。
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