<div class> <p> <br/> 钟 新 华<br/> 上海市特聘教授“东方学者”,博士生导师。<br/> 1971年2月出生于湖南省永州市。<br/> Email:zhongxh@ecust.edu.cn</a><br/> 招生专业:应化,先进材料及无机化学<br/> <br/> 教育背景:</strong><br/> 1999,1– 2002,2 博士学位(金属有机化学),新加坡国立大学(National University of Singapore)化学系<br/> 1992,9 – 1995,6 硕士学位(无机化学),南开大学化学系<br/> 1988,9 – 1992,7 学士学位(分析化学),中南工业大学化学系<br/> <br/> 工作简历:</strong><br/> 2006, 5 – 现在 校特聘教授,华东理工大学化学与分子工程学院<br/> 2004, 5 – 2006, 5 洪堡学者 (Alexander von Humboldt Fellow), 德国马普高分子研究所<br/> (Max Planck Institute for Polymer Research, Mainz, Germany),<br/> 2002, 2 – 2004, 5 博士后,新加坡材料研究院(Institute of Materials Research and Engineering)<br/> 2003,10 – 1004, 5 博士后, 新加坡国立大学材料系<br/> 1995, 6 – 1998, 12 研发室主任,天津三环乐喜新材料有限公司<br/> <br/> 研究领域:</strong><br/> l 荧光半导体纳米晶能带工程<br/> Ø 合金半导体纳米晶;<br/> Ø Type-II 核/壳结构纳米晶;<br/> Ø 反转的Type-I 核/壳结构纳米晶。<br/> l 各种功能性纳米晶的形貌控制合成<br/> Ø 晶相控制合成四脚棒结构纳米晶;<br/> Ø 一维纳米棒,纳米线材料的合成;<br/> Ø 各种特异形貌纳米材料的制备。<br/> l 荧光量子点在生物、医学标识中的应用<br/> Ø 高效、稳定的生物荧光探针的建立;<br/> Ø 用荧光探针对细胞内生物过程的检测和示踪。<br/> <br/> 承担的科研项目:</strong><br/> 1.国家自然科学基金面上项目(2项)<br/> 2.新世纪优秀人才项目<br/> 3.曙光学者计划项目<br/> 4.浦江人才计划项目<br/> 5.博士点基金<br/> 6.校特聘教授启动基金<br/> <br/> 近年代表性论文: </strong><br/> 迄今已在包括J. Am. Chem. Soc., Angew. Chem. Int. Ed., Adv. Mater., Chem. Commun. Chem. Mater., J. Phys. Chem., Inorg. Chem., Dalton 等著名集刊在内的化学及材料专业期刊上发表学术论文40余篇,被SCI收录引用500余次,其中最高单篇为105次。<br/> 1. L. Zou, Z. Gu, N. Zhang, Y. Zhang, Z. Fang, W. Zhu, X. H. Zhong*, J. Mater. Chem. 18, 2807-2815 (2008).<br/> “Ultrafast synthesis of highly luminescent green- to near infrared-emitting CdTe nanocrystals in aqueous phase”<br/> 2. Y. Zhang, J. Zhu, X. Song, X. H. Zhong*, J. Phys. Chem. C 112, 5322-5327 (2008)<br/> “Controlling the Synthesis of CoO Nanocrystals with Various Morphologies”<br/> 3. Z. Fang, L. Liu, L. Xu, X. Yin, X. H. Zhong*, Nanotechnology, 19,235603 (2008)<br/> “Synthesis of highly stable dihydrolipoic acid capped water-soluble CdTe nanocrystals”<br/> 4. Z. Fang, Y. Zhang, F. Du, X. H. Zhong*, Nano Res. 1, 249-257 (2008)<br/> “Growth of anisotropic platinum nanostructures catalyzed by gold seed nanoparticles”<br/> 5. Z. Gu, L. Zou, Z. Fang,W. Zhu and X. Zhong*, Nanotechnology, 19, 135604 (2008)<br/> “One-pot synthesis of highly luminescent CdTe/CdS core/shell nanocrystals in aqueous phase”<br/> 6. C. L. Feng, X. H. Zhong, M. Steinhart, A. M. Caminade, J. P. Majoral, W. Knoll W, Small 4, 566-571 (2008)<br/> “Functional quantum-dot/dendrimer nanotubes for sensitive detection of DNA hybridization”<br/> 7. X. H. Zhong*, Y. Feng, L. Ingo, W. Knoll, Small 3, 1194-1199 (2007).<br/> “Non-Hydrolytic Alcoholysis Route to Morphology-Controlled ZnO Nanocrystals”<br/> 8. X. H. Zhong*, Y. Feng, Y. Zhang, J. Phys. Chem. C 111, 526-531 (2007)<br/> “Facile and Reproducible Synthesis of Red-Emitting CdSe Nanocrystals in Amine with Long-Term Fixation of Particle Size and Size Distribution”<br/> 9. Y. Zhang, X. H. Zhong*, X. Song, J. Zhu, Nanotechnology, 18, 195605 (2007)<br/> “Alcoholysis route to monodisperse CoO nanotetrapods with tunable size”<br/> 10. X. H. Zhong*, Y. Feng, Y. Zhang, Z. Gu, L. Zou, Nanotechnology, 18, 385606 (2007)<br/> “A facile route to violet- to orange-emitting CdxZn1−xSe alloy nanocrystals via cation exchange reaction”<br/> 11. C. Feng, X. H. Zhong, M. Steinhart, J.-P. Majoral, W. Knoll, Adv. Mater. 19, 1933 (2007)<br/> “Nanotube with Graded Gap Assembly of Quantum Dots as Sensitive Biosensor for Enhanced Detection of DNA Hybridization”<br/> 12. P. J. Cameron, X. H. Zhong, W. Knoll, J. Phys. Chem. C 111, 10313 (2007)<br/> “Monitoring the Covalent Binding of Quantum Dots to Functionalized Gold Surfaces by Surface Plasmon Resonance Spectroscopy”<br/> 13. X. H. Zhong, R. Xie, L. Sun, I. Linberwirth, W. Knoll, J. Phys. Chem. B 110, 2-5 (2006).<br/> “Synthesis of Dumbbell-Shaped Manganese Oxide Nanocrystals”<br/> 14. X. H. Zhong*, Y. Y. Feng, I. Lieberwirth, W. Knoll, Chem. Mater. 18, 2468-2471 (2006).<br/> “Facile synthesis of morphology-controlled platinum nanocrystals”<br/> 15. X. H. Zhong, W. Knoll, Chem. Commun. 1158-1160 (2005)<br/> “Morphology-controlled large-scale synthesis of ZnO nanocrystals from bulk ZnO”<br/> 16. Z. Zhang, X. H. Zhong, S. Liu, D. Li, M. Han, Angew. Chem. Int. Ed. 44, 3466-3470 (2005)<br/> “Aminolysis route to monodisperse titania nanorods with tunable aspect ratio”<br/> 17. R. Xie, X. H. Zhong, T. Basche, Adv. Mater. 17, 2741-2745 (2005).<br/> “Synthesis and characterization of semiconductor core/shell nanocrystals with ZnTe cores”<br/> 18. X. H. Zhong, Y. Feng, S.-L. Ong, J. Hu, W.-J. Ng, Z. Wang, Chem. Commun. 1882-1883 (2003)<br/> “Strong optical limiting capability of a triosmium cluster bonded indium porphyrin complex [(TPP)InOs3(µ-H)2(CO)9(µ-η2-C5H4N)]”<br/> 19. X. H. Zhong, M. Han, Z. Dong, T. White, W. Knoll, J. Am. Chem. Soc. 125, 8589-8594 (2003) “Composition-tunable ZnxCd1-xSe alloy nanocrystals with high luminescence and stability”<br/> 20. X. H. Zhong, Y. Feng, W. Knoll, M. Han, J. Am. Chem. Soc. 125, 13559-13563 (2003).<br/> “Alloyed ZnxCd1-xS nanocrystals with highly narrow luminescence spectral width”<br/> </p> </div>