钟新华,湖南永州人,男,1971年2月生。上海市特聘教授“东方学者”。华东理工大学特聘教授,博士生导师,洪堡学者。主要从事无机功能纳米材料的合成、性能及其应用研究,曾承担:国家自然科学基金面上项目,上海市基础研究重点项目,新世纪优秀人才项目,曙光学者计划项目,浦江人才计划项目,博士点基金课题。
人物介绍
上海市特聘教授“东方学者”,博士生导师。1971年2月出生于湖南省永州市。 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 1992,9 – 1995,6 硕士学位(无机化学),南开大学化学系 1988,9 – 1992,7 学士学位(分析化学),中南工业大学化学系 006, 5 – 现在 校特聘教授,华东理工大学化学与分子工程学院2004, 5 – 2006, 5 洪堡学者 (Alexander von Humboldt Fellow),德国马普高分子研究所(Max Planck Institute for Polymer Research, Mainz, Germany),2002, 2 – 2004, 5 博士后,新加坡材料研究院(Institute of Materials Research and Engineering)2003,10 – 1004, 5 博士后,新加坡国立大学材料系1995, 6 – 1998, 12 研发室主任,天津三环乐喜新材料有限公司
研究领域
主要经历
2006, 5 – 现在 校特聘教授,华东理工大学 化学与分子工程学院
2004, 5 – 2006, 5 洪堡学者,德国马普高分子研究所
2003, 10 – 2004, 5 博士后,新加坡材料研究院
2002, 2 – 2003, 10 博士后,新加坡国立大学材料系
1999, 1 – 2002, 2 博士学位,新加坡国立大学 (导师: Prof. Ang Siau Gek)
1992, 9 – 1995, 6 硕士学位,南开大学化学系 (导师:申泮文院士)
1988, 9 – 1992, 7 学士学位,中南大学(原中南工业大学)化学系
主要成就
2006年5月至今,华东理工大学 化学与分子工程学院。校特聘教授,教育部“新世纪优秀人才” ,市教委“曙光学者”,及上海市“浦江人才”计划,2008年被聘为首届上海市高校“东方学者”特聘教授。一直从事功能性纳米材料的合成及应用方面的研究,尤其是在量子点的合成与光电应用方面开展了一系列开创性的研究工作。迄今已在包括J. Am. Chem. Soc., Angew. Chem. Int. Ed., Adv. Mater., Chem. Commun., ACS Nano, Chem. Mater., Inorg. Chem., J. Phys. Chem. 等在内的化学及材料期刊上发表SCI论文80余篇,被引用1700余次,H因子26,最高单篇引用382次。申请国际专利4项。
出版著作
代表性学术论文(更新统计至2014年7月):
2014年:
1.Z. Pan,I. Mora-Seró,Q. Shen,H. Zhang,Y. Li,K. Zhao,J. Wang,X. Zhong*, andJ. Bisquert[1],J. Am. Chem. Soc.2014,136, 9203–9210. (IF: 10.67 )
2.K. Zhao, H. Yu, H. Zhang,X. Zhong*, ,J. Phys. Chem. C2014,118, 5683–5690 (IF: 4.81 )
3. H. Yu, H. Bao, K. Zhao, Z. Du, H. Zhang*,X. Zhong*,[2],J. Phys. Chem. C2014, DOI: 10.1021/jp4125217 (IF: 4.81 )
4.Z. Du, H. Zhang,H. Bao,X. Zhong*,[3]J. Mater.Chem. A2014, DOI: 10.1039/C4TA02291B
5.Y. Ma, S. Ma,Y.Li,X. Zhong*,[4]J. Mater.Chem. B2014,DOI: 10.1039/C4TB00458B
6. W. Zhang, Q. Lou, W. Ji, J. Zhao,X. Zhong*,[5]Chem. Mater. 2014,26, 1204–1212. (IF: 8.24 )
7.X. Liu,Y. Xu*,S. Ma,Y. Ma,A. Ahmad,Y. Tian,X .Zhong*, andX. Guo*,Ind. Eng.Chem. Res. 2014, DOI:10.1021/ie501035s(IF: 2.206 )
8. Q. Mu, Y. Li*, Y. Ma,X. Zhong*,[6]Analyst2014,139, 996–999.(IF: 3.96 )
9.Q. Mu, H. Xu, Y. Li*, S. Ma,X. Zhong*,[7]Analyst2014,139, 93–98. (IF: 3.96 )
10.Q. Mu, Y. Li, H. Xu*, Y. Ma, W. Zhu,X. Zhong*,[8],Talanta2014,119, 564–571. (IF: 3.49 )
2013年:
1. J. Wang, I. Mora-Seró, Z. Pan, K. Zhao, H. Zhang, Y. Feng, G. Yang,X. Zhong*, J. Bisquert, ,J. Am. Chem. Soc.2013,135, 15913–15922. (IF: 10.67 )
2. Z. Pan, K. Zhao, J. Wang, H. Zhang, Y. Feng,X. Zhong*,[9],ACS Nano2013,7, 5215–5222. (IF: 12.06 )
3. H. Xu, Z. Wang, Y. Li, S. Ma, P. Hu,X. Zhong*,Analyst2013,138, 2181–2191. (IF: 3.96)
2012年:
1. Z. Pan, H. Zhang, K. Cheng, Y. Hou, J. Hua,X. Zhong*,[10]ACS Nano2012,6, 3982–3991. (IF: 12.06 )
2. W. Zhang, H. Zhang, Y. Feng,X. Zhong*,[11],ACS Nano2012,6, 11066–11073. (IF: 12.06)
3. H. Zhang, K. Cheng, Y. Hou, Z. Fang, Z. Pan, W. Wu, J. Hua,X. Zhong*,[12],Chem. Commun.2012, 48, 11235–11237. (IF: 6.37 )
4. L. Liu,X. Zhong*,[13],Chem.Commun.2012,48, 5718–5720. (IF: 6.37 )
5.W. Zhang, C. Jin, Y. Yang,X. Zhong*,[14]Inorg. Chem.2012,51, 531–535. (IF: 4.59 )
6.W. Zhang, X. Zhou,X. Zhong*,[15],Inorg. Chem.2012,51, 3579–3587. (IF: 4.59 )
7.H. Xu, Y. Wang, X. Huang, Y. Li, H. Zhang,X. Zhong*, Hg-mediated aggregation of gold nanoparticles for colorimetric screening of biothiols,Analyst2012,137, 924–931. (IF: 3.96 )
8. Z. Luo, H. Zhang*, J. Huang,X. Zhong,One-step synthesis of water-soluble AgInSand ZnS-AgInScomposite nanocrystals and their photocatalytic activities,J. Coll. Interf. Sci.2012, 377, 27–33.(IF: 3.17 )
9. X. Yuan, J. Zhao,* P. Jing, W. Zhang, H. Li, L. Zhang,X. Zhong, Y. Masumoto*, Size- and Composition-Dependent Energy Transfer from Charge Transporting Materials to ZnCuInS Quantum Dots,J. Phys. Chem. C2012,116, 11973−11979.(IF: 4.81)
2011年:
1. H. Zhang, J. Huang, X. Zhou,X. Zhong*, Single-Crystal BiSNanosheets Growing via Attachment-Recrystallization of Nanorods,Inorg. Chem.2011,50, 7729–7734. (IF: 4.59 )
2. W. Zhang,X. Zhong*, Facile Synthesis of ZnS-CuInSalloyed Nanocrystals for a Color-Tunable Fluorchrome and Photocatalyst,Inorg. Chem.2011,50, 4065–4072. (IF: 4.59 )
3. W. Zhang, Y. Li, H. Zhang, X. Zhou,X. Zhong*, Facile Synthesis of Highly luminescent Mn-Doped ZnS Nanocrystals,Inorg.Chem.2011,50, 10432–10438. (IF: 4.59)
4. H. Xu, R. Miao, Z. Fang,X. Zhong*, Quantum dot-based “turn-on” fluorescent probe for detection of zinc and cadmium ions in aqueous media,Ana. Chi. Acta2011,687, 82–88. (IF: 4.38)
5.Y.Li, P. Wu, H. Xua, Z. Zhang,X. Zhong*,Highly selective and sensitive visualizable detection of Hg based on anti-aggregation of gold nanoparticles,Talanta2011,84, 508–512. (IF: 3.49 )
6. Y. Li, F. Du, H, Zhang*, X. Du, J. Zhu,X. Zhong*, Controllable growth of silver-seeded PbS nanostructures,J. Mater. Sci.2011,46, 670–674. (IF: 2.16 )
7. Z. Liu, Q. Lin, Q, Huang, H. Liu, C. Bao*, W. Zhang,X. Zhong, L. Zhu*, Semiconductor quantum dots photosensitizing release of anticancer drug,Chem. Commun.2011,47, 1482–1484.(IF: 6.37 )
8. Y. Li, P. Wu, H. Xu, H. Zhang,X. Zhong*, Anti-aggregation of gold nanoparticle-based colorimetric sensor for glutathione with excellent selectivity and sensitivity,Analyst2011,136, 196–200. (IF: 3.96)
9. T. Wu, X. Zhou, H. Zhang*,X. Zhong*, BiSNanostructures: A New Photocatalyst,Nano Res.2010, 3, 379–386. (IF: 7.39 ; )
2010年:
1. H. Zhang, P. Wu, Y. Li, L. Liao, Z. Fang,X. Zhong*, Preparation of Bismuth Oxide Quantum Dots and their Photocatalytic Activity in a Homogeneous System,ChemCatChem2010,2, 1115–1121. (IF: 5.18 )
2. L. Liu, X. Guo, Y. Li*,X. Zhong*, Bifunctional multidentate ligand modified highly stable water-soluble quantum dots,Inorg. Chem.2010,49, 3768–3775. (IF: 4.59 )
3. Z. Fang, P. Wu,X. Zhong*, Y. Yang*, Synthesis of highly luminescent Mn:ZnSe/ZnS nanocrystals in aqueous media,Nanotechnology2010,21, 305604. (IF: 3.84)
4.Y. Zhang*, H. Zhang, X. Li,X. Zhong*, Mn-doped ZnO nanonails and their magnetic properties,Nanotechnology2010,21, 095606. (IF: 3.84 )
5. H. Xu, X. Huang, W. Zhang, G. Chen, W. Zhu,X. Zhong*, Quantum Dots Acting as Energy Acceptors with Organic Dyes as Donors in Solution,ChemPhysChem2010,11, 3167–3171. (IF: 3.34 )
6. J. Liu, C. Bao*,X. Zhong, L. Zhu*, Highly Selective Detection of Glutathione Using Quantum-Dots-Based OFF-ON Fluorescent Probes,Chem. Commun.2010,46, 2971–2973.(IF: 6.37 )
7. X. Wang, X. Lou, Y. Wang, Q. Guo, Z. Fang,X. Zhong, H. Mao*, Q. Jin, L. Wu, H. Zhao, J. Zhao*, QDs-DNA nanosensor for detections of hepatitis B virus DNA and the single-base mutants,Biosensors & Bioelectronics2010,25, 1934–1940.(IF: 5.43)
参考资料 15
- High-Efficiency “Green” Quantum Dot Solar Cells — 美国化学会
- Topotactically Grown Bismuth Sulfide Network Film on Substrate as Low-Cost Counter Electrodes for Quantum Dot-Sensitized Solar Cells — 美国化学会
- Optimization of TiO2 photoanode films for highly efficient quantum dot-sensitized solar cells — 英国皇家化学会
- Highly bright water-soluble silica coated quantum dots with excellent stability — 英国皇家化学会
- Color-Tunable Highly Bright Photoluminescence of Cadmium-Free Cu-Doped Zn-In-S Nanocrystals and Electroluminescence — 美国化学会
- Visual detection of biological thiols based on lightening quantum dot–TiO2 composites — 英国皇家化学会
- Adenosine capped QDs based fluorescent sensor for detection of dopamine with high selectivity and sensitivity — 英国皇家化学会
- Quantum dots-based ratio metric fluorescence probe from mercuric ions in biological fluids — Elsevier
- Near Infrared Absorption CdSexTe1-x Alloyed Quantum Dot Sensitized Solar Cells with over 6% Efficiency and High Stability — 美国化学会
- Highly Efficient Inverted Type-I CdS/CdSe Core/Shell Structure QD-Sensitized Solar Cells — 美国化学会
- Scalable Single-Step Noninjection Synthesis of High-Quality Core/Shell Quantum Dots with Emission Tunable from Violet to Near Infrared — 美国化学会
- Efficient CdSe quantum dot-sensitized solar cells prepared by a postsynthesis assembly approach — 英国皇家化学会
- A General and Reversible Phase Transfer Strategy Enabling Nucleotides Modified High-Quality Water-Soluble Nanocrystals — 英国皇家化学会
- Non-Injection Facile Synthesis of Gram-Scale Highly Luminescent CdSe Multi-pod Nanocrystals, — 美国化学会
- One-Pot Noninjection Synthesis of Cu-Doped ZnxCd1-xS Nanocrystals with Emission Color Tunable over Entire Visible Spectrum — 美国化学会