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邹如强

基本信息
北京大学工学院特聘研究员、博士生导师,美国 Los Alamos 国家实验室客座研究员。曾任美国Los Alamos国家实验室Director’s Postdoc Fellow、日本学术振兴会(JSPS)特别研究员、日本产业技术总合研究所(AIST)助理研究员。现负责国家973重大项目子课题,曾主持美国Los Alamos国家实验室、日本学术振兴会的科研项目,参与过美国能源部、Los Alamos国家实验室、日本学术振兴会(JSPS)、日本新能源产业技术总合开发机构(NEDO)和日本学术振兴机构(JST)科研项目,涵盖新能源材料、环境材料、功能纳米材料、新型催化剂材料、中子衍射等高新技术领域。
 
研究方向
1. 新型纳米多孔材料在节能环保中的应用。2. 新能源材料:包括储氢材料、相变储能材料、锂离子电池及可燃冰水合物。3.纳米催化剂在能源转化中的应用。4. 中子散射技术的应用。
 
学术经历
2010 -,北京大学先进材料与纳米技术系 & 能源与资源工程系,特聘研究员
2010 -,美国 Los Alamos 国家实验室中子衍射中心,Guest Scientist
2008 - 2010,美国 Los Alamos 国家实验室,Director’s Postdoc Fellow
2006 - 2008,日本学术振兴会 JSPS 特别研究员
2004 - 2006,日本产业技术总合研究所,助理研究员
2005 - 2008,日本神户大学 & 产业技术总合研究所,获工学博士学位
2001 - 2004,南开大学化学学院,获理学硕士学位
 
荣誉奖励
1. 美国Los Alamos国家实验室Director’s Postdoc Fellow(2008/7)
2. The Top 50 articles contributing to the 2008 ChemComm Impact Factor (2009)
2. 日本学术振兴会JSPS Fellow(2006/4)
3. 日本财团法人丸文研究交流财团2006年度交流研究奖
4. 日本财团法人丸文研究交流财团2007年度交流研究奖
5. 日本文部省荣誉奖学金 (2005/4)
6. 南开大学优秀毕业论文一等奖 (2004/5)
 
近期发表的学术论文
已在J. Am. Chem. Soc.,Angew. Chem., Int. Ed.,Chem. Eur. J.,Chem. Asian J.,Chem. Commun.和Inorg. Chem.等国际期刊发表SCI收录论文50余篇,三篇文章被选作杂志封面。论文被引用总次数750余次,其中单篇论文最高引用次数达170余次。首次发现并应用多孔结晶材料作为气相反应催化剂,其研究成果被Chem. Rev., Acc. Chem. Rev., Chem. Soc. Rev.长篇评论。
1. “A porous metal-organic replica of α-PbO2 for capture of nerve agent surrogate”
Journal of the American Chemical society, in revision,
R.-Q. Zou,* Ruiqin Zhong, Songbai Han, H. Xu, A. K. Burrell, J. L. Cape, N. Henson, D. D. Hickmott, T. V. Timofeeva, T. E. Larson, Y. Zhao.
2. “Storage and separation Applications of nanoporous metal-organic frameworks”,
CrystEngComm (Invited Review & Cover), 2010, 12, 1337-1353,
R.-Q. Zou,* A. I. Addel-Fattah, H. Xu, Y. Zhao, D. Hickmatt.
3. “Porous metal-organic frameworks containing alkali-bridged two-fold interpenetration: Synthesis, gas Adsorption, and fluorescence Properties”,
Crystal Growth & Design, 2010, 10, 1301 – 1306, 
R.-Q. Zou,* A. I. Addel-Fattah, A. K. Burrell, T. E. Larson, T. M. McCleskey, Q. Wei, M. T. Janicke, D. D. Hickmott, T. V. Fimoreeva, Y. Zhao.
4. “Controllable congregating of homochiral and achiral coordination polymers: cadmium(II) pyridine-2,4,6-tricarboxylate species with double-helical-strand and molecular building block structures”,
Crystal Growth & Design, 2008, 8, 452-459,
R.-Q. Zou, R.-Q. Zhong, M. Du, D. S. Pandey, Q. Xu.
5. “Probing the lewis acid sites and CO catalytic oxidation activity of the porous metal-organic polymer [Cu(5-methylisophthalate)]”,
Journal of the American Chemical society, 2007, 129, 8402-8403,
R.-Q. Zou, H. Sakurai, S. Han, R.-Q. Zhong, Q. Xu.
6. “Highly-thermostable metal-organic frameworks (MOFs) of zinc and cadmium 4,4’-(hexafluoroisopropylidene)diphthalates with a unique fluorite topology”,
Chemical Communications, 2007, 2467-2469, (Cover)
R.-Q. Zou, R.-Q. Zhong, M. Du, T. Kiyobayashi, Q. Xu.
7. “Preparation, adsorption properties, and catalytic activity of 3D porous metal-organic frameworks composed of cubic building blocks and alkali-metal ions”,
Angewandte Chemie-International Edition, 2006, 45, 2542-2546,
R.-Q. Zou, H. Sakurai, Q. Xu.
8. “Tuning the formation of cadmium(II) urocanate frameworks by control of reaction conditions: Crystal structure, properties, and theoretical investigation”,
Chemistry-An Asian Journal, 2006, 1, 536-543, (Cover)
R.-Q. Zou, R.-Q. Zhong, L. Jiang , Y. Yamada, N. Kuriyama, Q. Xu.
9. “Strong fluorescent emission of a new fourfold-interpenetrated diamondoid metal-organic framework of zinc(II) urocanate with one-dimensional open channels”,
Microporous and Mesoporous Materials, 2006, 91, 233-237,
R.-Q. Zou, Y. Yamada, Q. Xu.
10. “Syntheses, structure, and properties of the metal complexes with 3-(2-pyridyl)pyrazole-based ligands: Tuning the complex structures by ligand modifications”,
Crystal Growth & Design, 2006, 6, 99-108,
R.-Q. Zou, C.-S. Liu, Z. Huang, T.-L. Hu, X.-H. Bu.
11. “Rational assembly of a 3D metal-organic framework for gas adsorption with predesigned cubic building blocks and 1D open channels”,
Chemical Communications, 2005, 3526-3528,
R.-Q. Zou, L. Jiang, H. Senoh, N. Takeichi, Q. Xu.
12. “Tuning the topologies of MnII complexes with 3-(2-pyridyl)pyrazole and carboxylate ligands by intramolecular hydrogen bonds and the geometries of pendant ligands: crystal structures and magnetic properties”,
CrystEngComm, 2005, 7, 722-727,
R.-Q. Zou, C.-S. Liu, X.-S. Shi, X.-H. Bu, J. Ribas
13. “Novel eclipsed 2D cadmium(II) coordination polymers with open-channel structure constructed from terephthalate and 3-(2-pyridyl)pyrazole: Crystal structures, emission properties, and inclusion of guest molecules”,
Inorganic Chemistry, 2004, 43, 5382-5386,
R.-Q. Zou, X.-H. Bu, R.-H. Zhang.
14. “Tuning the framework formation of silver(I) complexes with flexible bis(benzothiazol-2-ylsulfanyl)alkanes by varying the ligand spacers and counteranions”,
Crystal Growth & Design, 2004, 4, 79-84,
R.-Q. Zou, J.-R. Li, Y.-B. Xie, R.-H. Zhang, X.-H. Bu.
 
会议发表
1. 2009 MRS Fall Meeting, (1-3, Dec., 2009, Boston, USA).
“Environmental Applications of Metal-Organic Framework Materials”.
2. LANL-AIST Hydrogen Storage Workshop (3-4, Dec, 2009, Boston, USA).
3. 238th ACS National Meeting, (16-20, Aug., 2009, Washington DC, USA).
“Synthesis and characterization of novel metal-organic frameworks for storage and separation application”.
4. Energy for the 21st Century Conference, (18-22, May, 2009, Sata Fe, USA)
5. LANL-AIST Fuel Cell & Hydrogen Storage Workshop (8-11, Sept., 2008, San Diego, USA).
6. 88th Spring Meeting of the Chemical society of Japan (26-30, March, 2008, Tokyo, Japan).
“Synthesis, Structures and Properties of multifunctional Metal Coordination Polymers.”
7. 41st IUPAC World Chemistry Congress (5-11, Aug., 2007, Turin, Italy),
“Syntheses, Crystal Structures and Gas Sorption Properties of Microporous Metal Coordination Polymers”.
8. The 1st Asian Conference on Coordination Chemistry (ACCC) (29, July,-2, Aug., 2007, Okazaki, Japan),
“Microporous Metal Coordination Polymers as Hydrogen Storage and Separation Materials
9. The Oxford-Kobe Energy Seminar (22-24, Apr., 2007, Kobe, Japan)”.
“Syntheses, Structures and Hydrogen Sorption Properties of Micorporous Metal Coordination Polymers”.
10. 87th Spring Meeting of the Chemical Society of Japan (25-28, Mar., 2007, Osaka, Japan),
“Study on Microporous Metal Coordination Polymers (MMCPs) as Hydrogen Storage Materials”.
11. 1st European Chemistry Congress(27-31, Aug., 2006, Budapest, Hungary),
“Microporous Metal-Organic Frameworks with Controllable Molecular Building Blocks: Crystal Structures and Properties”.
12. International Symposium on Zeolites and Microporous Crystals (ZMPC2006) (30, July - 2, Aug., 2006, Tottori, Japan)
“Tuning the Framework Formation of Cadmium(II) Urocanate from Discrete Entity to 3D Alpha-Polonium and Diamondoid Nets by Reaction Conditions: Crystal Structures and Properties”.
13. 86th Spring Meeting of the Chemical Society of Japan (27-30, Apr., 2006, Tokyo, Japan),
“Design and Construction of Novel Metal-Organic Frameworks with Cubic Building Block: Crystal Structures and Properties”.
 
联系方式
北京大学工学院,先进材料与纳米技术系 & 能源与资源工程系
电话:15001282076,电子邮件:rzoupku.edu.cn