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个人简介

郑彦臻现为西安交通大学教授、前沿科学技术研究院副院长、“分子自旋与电子结构研究室”主任、《中国化学快报》青年编委。2007博士毕业于中山大学,师从陈小明院士,无机化学专业;之后获德国洪堡奖学金(Humboldt Fellowship)资助,在德国卡尔斯鲁厄大学、亚琛工业大学从事博士后研究;2009年起获欧盟居里夫人奖学金(Marie Curie Fellowship)资助,在英国曼彻斯特大学从事较独立的研究工作;2011年入选日本国立物质研究所的ICYS Fellowship;2013年获广东省科学技术(自然类)一等奖(第三完成人);2017年获日本化学会颁与的“亚洲国际学术论坛杰出授课奖”(Distinguish Lectureship Awards in Asian International Symposium)。其主要研究兴趣包括:1)以配位化学/金属有机合成化学及磁性物理为交叉的分子基磁性材料;2)基于无机框架且含有机成分的无机-有机杂化半导体材料。迄今以第一或通讯作者共发表SCI论文60余篇,其中JACS(2篇)、Angew Chem(6篇)、Adv Mater(2篇)、Chem Soc Rev(1篇)、Coord Chem Rev(1篇),论文总引用超过4500次,11篇入选近十年ESI高被引论文、包括1篇ESI热点论文,H指数为38。 教育背景 2002-2007 博士,无机化学专业(中山大学) 1998-2002 学士,应用化学专业(中山大学) 工作经历 2014九月至今 前沿科学技术研究院副院长(西安交通大学) 2011九月至今 前沿科学技术研究院教授(西安交通大学) 2009-2011 欧盟居里夫人研究员(英国曼彻斯特大学) 2009-2009 博士后研究助理(德国亚琛工业大学) 2007-2009 洪堡学者(德国卡尔斯鲁厄大学) 获奖情况 2017 亚洲国际学术论坛杰出授课奖(Distinguish Lectureship Awards in Asian International Symposium) 2013 广东省科学技术(自然类)一等奖(第三完成人) 2009 欧盟居里夫人奖学金(Marie Curie Fellowship) 2009 全国百篇优秀博士论文提名 2007 德国洪堡奖学金(Alexander von Humboldt Fellowship)

研究领域

配位化学、金属有机、功能团簇、分子磁体、分子导体、磁电耦合、光电效应

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

Quantum Monte Carlo Simulations and High-Field Magnetization Studies of Antiferromagnetic Interactions in a Giant Hetero-Spin Ring; L. Qin, J. Singleton, W.-P. Chen, H. Nojiri, L. Engelhardt,*R. E. P. Winpenny,* and Y.-Z. Zheng*, Angew. Chem. Int. Ed., 2017, 56, 16571-16574. (IF = 12.0) Topological Self-Assembly of Highly-Symmetric Lanthanide Clusters: A Magnetic Study of Exchange-Coupling “Fingerprints” in Giant Gadolinium(III) Cages; L. Qin, G.-J. Zhou, Y.-Z. Yu, H. Nojiri, C. Schröder*, R. E. P. Winpenny* and Y.-Z. Zheng*, J. Am. Chem. Soc., 2017, 139, 16405–16411. (IF = 13.9) On Approaching the Limit of Molecular Magnetic Anisotropy:A Near-Perfect Pentagonal Bipyrami-dal Dysprosium(III) Single-Molecule Magnet; Y.-S. Ding, N. F. Chilton,* R. E. P. Winpenny,* and Y.-Z. Zheng*, Angew. Chem. Int. Ed.2016, 55, 16071–16074. (IF = 12.0) A “Molecular Water Pipe”: A Giant Tubular Cluster {Dy72} Exhibits Fast Proton Transport and Slow Magnetic Relaxation; L. Qin, Y.-Z. Yu, P.-Q. Liao, W. Xue, Z. Zheng, X.-M. Chen and Y.-Z. Zheng*, Adv. Mater., 2016, 28, 10772–10779. (IF = 19.8) A Mixed-Ligand Approach for a Gigantic and Hollow Heterometallic Cage {Ni64RE96} for Gas Separation and Magnetic Cooling Applications; W.-P. Chen, P.-Q. Liao, Y. Yu, Z. Zheng, X.-M. Chen and Y.-Z. Zheng*, Angew. Chem. Int. Ed., 2016, 55, 9375-9379. (IF = 12.0) Molecule-based magnetic coolers; Y.-Z. Zheng*, G.-J. Zhou, Z. Zheng, R. E. P. Winpenny, Chem. Soc. Rev., 2014, 43, 1462-1475. (入选ESI高被引, IF = 38.6) A symbol approach for classification of molecule-based magnetic materials exemplified by coordination polymers of metal carboxylates; Y.-Z. Zheng*, Z. Zheng, X.-M. Chen, Coord. Chem. Rev., 2014, 258-259, 1-15. (入选ESI高被引, IF = 13.3) Co-Ln Mixed-Metal Phosphonate Grids and Cages as Molecular Magnetic Refri-gerants; Y.-Z. Zheng, M. Evangelisti, F. Tuna, R. E. P. Winpenny, J. Am. Chem. Soc., 2012, 134, 1057-1065. (入选ESI高被引, IF = 13.9) Large Magnetocaloric Effect in a Wells-Dawson Type {Ni6Gd6P6} Cage; Y.-Z. Zheng, M. Evangelisti, R. E. P. Winpenny, Angew. Chem. Int. Ed., 2011, 50, 3692-3695. (入选ESI高被引, IF = 12.0) Néel Temperature Enhancement by Increasing the In-plane Magnetic Correlation in Layered Inor-ganic–Organic Hybrid Materials; Y.-Z. Zheng, W. Xue, S.-L. Zheng, M.-L. Tong and X.-M. Chen, Adv. Mater., 2008, 20, 1534-1538. (IF = 19.8) A “Star” Antiferromagnet: A Polymeric Iron(III) Acetate That Exhibits Both Spin-Frustration and Long-Range Magnetic Ordering; Y.-Z. Zheng, M.-L. Tong, W. Xue, W.-X. Zhang, X.-M. Chen, F. Grandjean, G. J. Long, Angew. Chem. Int. Ed., 2007, 46, 6076-6080. (入选ESI高被引, IF = 12.0) Assembling Magnetic Nanowires into Network: A Layered Co(II)-Carboxylate Coordination Polymer Exhibiting Single-Chain-Magnet Behavior; Y.-Z. Zheng, M.-L. Tong, W.-X. Zhang, X.-M. Chen, Angew. Chem. Int. Ed., 2006, 45, 6310-6314. (入选ESI高被引, IF = 12.0)

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