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[课题组] 清华大学化学系无机化学曹化强

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发表于 2018-2-24 09:37:34 | 只看该作者 回帖奖励 |倒序浏览 |阅读模式
曹化强清华大学化学系;理学博士,1965年7月出生于安徽省合肥市。1984.9-1988.7安徽师范大学化学系(获理学学士学位);1988.9-1994.7中国科学院合肥分院工作;1994.9-1997.7中国科学技术大学材料科学与工程系(获理学硕士学位),从事无机陶瓷膜及超细粉研究;1997.9-1999.1中国科学院大连化学物理研究所工作,从事固体氧化物燃料电池研究;1999.3-2001.6南京大学化学系(获理学博士学位),从事一维纳米材料及磁学性质研究;2001.9-2003.8清华大学化学系(博士后),从事一维纳米材料及光学性质研究;2003.8 -至今 清华大学化学系(副研究员),从事低维纳米材料合成及纳米器件研究。2002年获“南京大学优秀博士学位论文”奖,2003年获“全国优秀博士学位论文”奖,2004年获“新世纪优秀人才支持计划”资助及“2004年度教育部提名国家科学技术奖-自然科学一等奖”(第三完成人)。

曹化强教授,博士生导师
联系方式
地点:清华大学化学系
邮编:100084
Tel/Fax:010-62794233
教育背景
1999-2001  南京大学化学系  理学博士学位
工作履历
2001 -2003          清华大学化学系 博士后
2003-                   清华大学化学系  副研究员、博士生导师、教授
2007.9 - 2008.8    英国牛津大学材料系(WolfsonCollege, Department of Materials, University of Oxford)  访问学者
2014.10 - 2015.4  英国剑桥大学材料科学与冶金系(Department of Materials Science and Metallurgy, University ofCambridge)高级研究学者
学术兼职
2009-2012    中国能源学会副理事长
2012-        中国能源学会副会长
2014-       中国能源学会专家委员会新能源专家组委员
研究领域
无机功能纳米材料
奖励与荣誉
2003  获“全国优秀博士学位论文”
2004  获“教育部新世纪优秀人才支持计划”
2004  获“教育部提名国家科学技术奖——自然科学一等奖”(第三完成人)
2012   2篇论文获“2011年中国百篇最具影响的国际学术论文”奖
2014   获清华大学2014年度“纪念梅贻琦学术论文奖”(二等奖)
2015   入选英国皇家化学会会士(Fellowof the Royal Society of Chemistry, FRSC, UK)
2015   入选英国材料、矿物和采矿学会会士(Fellow of the Institute of Materials, Minerals and Mining, FIMMM, UK)
学术成果
著作
7. Huaqiang Cao*, Recent Development ofGraphene-based Nanostructures, in Electrochemical Nanofabrication: Principalsand Applications, 2nd edition (Editor: Di Wei), Pan Stanford Publishing,Singapore, accepted on 12 Dec. 2014, (ISBN: 978-981-4613-86-6 (Hardcover),978-981-4613-87-3 (eBook) Due Pub. Date: 2016) (Chapter)
6. Huaqiang Cao*, Superhydrophobic Inorganic Nanostructures, In Advances inNanotechnology. Volume 10 (Editors: Zacharie Bartul and Jérome Trenor), NovaScience Publishers, Inc., New York, USA, 2011. (ISBN: 978-1-62100-203-1, Pub.Date: 2011) (第8章)
5. Huaqiang Cao*, Template-Based Nanotube Arrays, In Advances inNanotechnology. Volume 5 (Editors: Zacharie Bartul and Jérome Trenor), NovaScience Publishers, Inc., New York, USA (ISBN: 978-1-61761-322-7, Pub. Date:2011) (第9章)
4. Huaqiang Cao*, Optical and Magnetic Properties of Metal OxideNanostructures, In Metal Oxide Nanostructures and Their Applications (Editors:Ahmad Umar and Yoon Bong Hahn), American Scientific Publishers, California,USA, (ISBN: 1-58883-170-1, Pub. Date: 2009) (第10章)
3. Huaqiang Cao*, Sulfide Semiconductor Nanostructures and PhotoluminescenceProperties, In Progress of Photoluminescence Research (Editors: Harry K. Wrightand Grace V. Edwards), Nova Science Publishers, Inc., New York, USA (ISBN:978-1-60456-538-6, Pub. Date: 2008) (第9章)
2. Huaqiang Cao*, Constructing Advanced Nanostructures: A Key Step towardsNanodevices, In Leading Edge Nanotechnology Research Developments (Editors: Donald M. Sabatini): Nova Science Publishers, Inc., New York, USA (ISBN:1-60021-900-4, Pub. Date: 2008) (评论)
1. Huaqiang Cao*, Synthesis, Characterization and Properties of Low-DimensionalNanostructures, In Progress of Nanotechnology Research (Editors: Alan T.Larimar): Nova Science Publishers, Inc., New York, USA (ISBN: 1-60021-731-1,Pub. Date: 2008) (第10章)
论文
65. Hang Du,   ZhenWang,   Yinghao Chen,   YanyanLiu,  Yushan Liu,   BaojunLi,*   Xiangyu Wang* and   Huaqiang Cao,“Anchoring superparamagnetic core–shells onto reduced graphene oxide:fabrication of Ni–carbon–rGO nanocomposite for effective adsorption andseparation”, RSC Advance 2015, 5, 10033-10039.
64. Liankai Zhou, Xianghua Kong*, Min Gao,Fang Lian, Baojun Li, Zhongfu Zhou, Huaqiang Cao*, “Hydrothermalfabrication of MnCO3@rGO composite as an anode material for high performancelithium ion batteries”, Inorg. Chem. 2014, 53,9228-9234.
63. Yanyan Zhao, Hongyu Sun, Li-MinLiu,* Ruilong Zong, Huaqiang Cao, Zhicheng Zhang, Xun Wang,Jun Luo,* Jing Zhu, “Space-Confined Creation of Nanoframes In Situ onReduced Graphene Oxide”, Small 2014, 11, 1512-1518.
62. Jingxian Zhang, Huaqiang Cao,Xiaolin Tang, Weifeng Fan, Gongchang Peng, Meizhen Qu*, “Graphite/grapheneoxide composite as high capacity ad binder-free anode material for lithium ionbatteries”, J. Power Sources 2013, 241, 619-626.
61. Jiefu Yin, Huaqiang Cao*,Jingxian Zhang, Meizhen Qu, Zhongfu Zhou, “Synthesis and applications of g-tungstenoxide hierarchical nanostructures”, Cryst. Growth & Des. 2013,13, 759-769.
60. Fan Zhang, Huaqiang Cao*,Dongmei Yue, Zhongfu Zhou, “Graphene covalently modified by DNA G-base”, J.Phys. Chem. C 2013, 117, 3513-3519.
59. Huaqiang Cao*, Xiaoming Wu,Guohua Wang, Jiefu Yin, Gui Yin, Fan Zhang, Junkun Liu, “Biomineralizationstrategy to alpha-Mn2O3 hierarchicalnanostructures”, J. Phys. Chem. C 2012, 116,21109-21115.
58. Fan Zhang, Huaqiang Cao*,Dongmei Yue*, Jingxian Zhang, Meizhen Qu, “Enhanced anode performancesof polyaniline-TiO2-reduced graphene oxide nanocomposites forlithium ion batteries”, Inorg. Chem. 2012, 51,9544-9551.
57. Jiefu Yin, Huaqiang Cao*,“Synthesis and photocatalytic activity of single-crystalline hollow rh-In2O3 nanocrystals”, Inorg.Chem. 2012, 51, 6529-6536.
56. Huaqiang Cao*, Xiaoming Wu,Gui Yin, Jamie H. Warner, “Synthesis of adenine-modified reduced graphene oxide nanosheets”, Inorg.Chem. 2012, 51, 2954-2960.
55. Junkun Liu, Huaqiang Cao*,Jinping Xiong*, Ziyang Cheng, “Ferromagnetic hematite@graphenenanocomposites for removal of rhodamine B dye molecules from water”, CrystEngComm 2012,14, 5140-5144.
54. Jiefu Yin, Huaqiang Cao*,Zhongfu Zhou, Jingxian Zhang, Meizhen Qu, “SnS2@reduced grapheneoxide nanocomposites as anode materials with high capacity for rechargeablelithium ion batteries”, J. Mater. Chem. 2012, 22,23963-23970.
53. Jiefu Yin, Huaqiang Cao*,Yuexiang Lu, “Self-assembly into magnetic Co3O4 complexnanostructures as peroxidase”, J. Mater. Chem. 2012,22, 527-534.
52. Huaqiang Cao*, Baojun Li,Jingxian Zhang, Fang Lian, Xianghua Kong, Meizhen Qu, “Synthesis and superioranode performance of TiO2@reduced graphene oxide nanocomposites forlithium ion batteries”, J. Mater. Chem. 2012, 22,9759-9766.
51. Baojun Li, Huaqiang Cao*,Jingxian Zhang, Meizhen Qu, Fang Lian, Xianghua Kong, “SnO2-Carbon-RGOheterogeneous electrode materials with enhanced anode performances in lithiumion batteries”, J. Mater. Chem.2012, 22,2851-2854.
50. Baojun Li, Huaqiang Cao*, JiefuYin, Yiming A. Wu, Jamie H. Warner, “Synthesis and separation of dyes viaNi@reduced graphene oxide nanostructures”, J. Mater. Chem. 2012,22, 1876-1883.
49. Renlong Liang, HuaqiangCao*, Dong Qian*, Jingxian Zhang, Meizhen Qu, “Designedsynthesis of SnO2-polyaniline-reduced graphene oxide nanocompositesas an andoe material for lithium-ion batteries”, J. Mater. Chem. 2011,21, 17654-17657.
48. Baojun Li, Huaqiang Cao*,Gui Yin, “Mg(OH)2@reduced graphene oxide composite for removalof dyes from water”, J. Mater. Chem. 2011,21, 13765-13768.
47. Baojun Li, Huaqiang Cao*,Gui Yin, Yuexiang Lu, Jiefu Yin, “Cu2O@reduced graphene oxide composite for removal ofcontaminants from water and supercapacitors”, J. Mater. Chem. 2011,21, 10645-10648.
46. Shuisheng Wu, Shuangfeng Yin*, HuaqiangCao*, Yuexiang Lu, Jiefu Yin, Baojun Li, “Glucosan controlled biomineralization of SrCO3 complexnanostructures with superhydrophobicity and adsorption properties”, J.Mater. Chem.2011, 21, 8734-8741.
45. Yuexiang Lu, Huaqiang Cao*,Sichun Zhang, Xinrong Zhang*, “Shape controlled synthesis of superhydrophobic zinccoordination polymers particles and their calcination to superhydrophobic ZnO”, J.Mater. Chem. 2011, 21, 8633-8639.
44. Baojun Li, Huaqiang Cao*,Jin Shao, Meizhen Qu, Jamie H. Warner,“Superparamagnetic Fe3O4nanocrystals@graphenecomposites for energy storage devices”, J. Mater. Chem. 2011,21, 5069-5075.
43. Baojun Li, Huaqiang Cao*, “ZnO@graphene composite with enhanced performance for theremoval of dye from water”, J. Mater. Chem. 2011,21, 3346-3349.
42. Baojun Li, Huaqiang Cao*,Jin Shao, Meizhen Qu, “Enhanced anode performances of the Fe3O4-carbon-rGOthree dimensional composite in lithium ion batteries”, Chem. Commum. 2011,47, 10374-10376.
41. Renlong Liang, Huaqiang Cao*,Dong Qian, “MoO3 nanowires as electrochemicalpseudocapacitor materials”, Chem. Commum. 2011, 47, 10305-10307.
40. Baojun Li, Huaqiang Cao*,Jin Shao, He Zheng, Yuexiang Lu, Jiefu Yin, Meizhen Qu, “Improved performances of beta-Ni(OH)2@reduced-graphene-oxidein Ni-MH and Li-ion batteries”, Chem. Commum. 2011,47, 3159-3161.
39. Huaqiang Cao*, YujiangXiao, Renlong Liang, “Generation and superhydrophobicity of complex PbSe crystallinenanodendrites”, CrsystEngComm2011,13, 5688-5691.
38. Huaqiang Cao*, RenlongLiang, Dong Qian, Jin Shao, Meizhen Qu, “L-serine-assisted synthesis ofsuperparamagnetic Fe3O4 nanocubes for lithuium ionbatteries”, J. Phys. Chem. C 2011, 115, 24688-24695.
37. Baojun Li, Huaqiang Cao*,Jin Shao, Guoqiang Li, Meizhen Qu*, Gui Yin, “Co3O4@graphene composites as anodematerials for high-performance lithium ion batteries”, Inorg.Chem. 2011, 50, 1628-1632.
36. Xiaoming Wu, Huaqiang Cao*,Gui Yin*, Jiefu Yin, Yuexiang Lu, Baojun Li, “MgCO3·3H2O and MgO complexnanostructures: controllable biomimetic fabrication and physical chemicalproperties”, Phys. Chem. Chem. Phys. 2011,13, 5047-5052.
35. Xiaoming, Wu, Huaqiang Cao*,Baojun Li, Gui Yin*, “The synthesis and fluorescence quenching properties of wellsoluble hybrid graphene material covalently functionalized with indolizine”, Nanotechnology 2011,22, 075202 (1-8).
34. Huaqiang Cao*, YujiangXiao, Sichun Zhang, “The synthesis and photocatalytic activity of ZnSe microspheres”, Nanotechnology 2011,22, 015604 (1-8).
33. Xiangwen Liu, Huaqiang Cao*,Jiefu Yin, “Generation and photocatalytic activities of Bi@Bi2O3 microspheres”, NanoRes.2011, 4, 470-482.
32. Huaqiang Cao*, YujiangXiao, Yuexiang Lu, Jiefu Yin, Baojun Li, Shuisheng Wu, Xiaoming Wu, “Ag2Se complex nanostructures with photocatalyticactivity and superhydrophobicity”, Nano Res. 2010,3, 863-873.
31. Huaqiang Cao*, He Zheng,Kaiyu Liu*, Ruiping Fu, “Single-crystalline semiconductor In(OH)3 nanocubeswith bifunctions: superhydrophobicity and photocatalytic activity”, Cryst.Growth & Des.  2010, 10, 597-601.
30. Huaqiang Cao*, He Zheng,Kaiyu Liu*, Jamie H. Warner, “Bioinspired peony-like beta-Ni(OH)2 nanostructureswith enhanced electrochemical activity and superhydrophobicity”, ChemPhysChem 2010,11, 489-494.
29. Yujiang Xiao, Huaqiang Cao*,Kaiyu Liu*, Sichun Zhang, Victroia Chernow, “The synthesis of superhydrophobic Bi2S3complexnanostructures”, Nanotechnology 2010, 21, 145601(1-8).
28. Huaqiang Cao*, Lu Zhang, HeZheng, Zhao Wang*, “Hydroxyapatite nanocrystals for biomedical applications”, J.Phys. Chem. C 2010, 114, 18352-18357.
27. Huaqiang Cao*, He Zheng,Jiefu Yin, Yuexiang Lu, Shuisheng Wu, Xiaoming Wu, Baojun Li, “Mg(OH)2 complex nanostruetures withsuperhydrophobicity and flame retardant effects”, J. Phys.Chem. C 2010, 2010, 114, 17362-17368.
26. He Zheng, Kaiyu Liu*, HuaqiangCao*, Xinrong Zhang, “L-lysine-assisted synthesis of ZrO2 nanocrystalsand their application in photocatalysis”, J. Phys. Chem. C 2009,113, 18259-18263.
25. Shuisheng Wu, Huaqiang Cao*,Shuangfeng Yin*, Xiangwen Liu, Xinrong Zhang, “Amino acid-assisted hydrothermal synthesis and photocatalysisof SnO2 nanocrystals”, J. Phys. Chem. C 2009,113, 17893-17898.
24. Shuisheng Wu, Huaqiang Cao*,Shuangfeng Yin*, Xinrong Zhang, Victoria Chernow, “Biomineralization and superhydrophobicity of BaCO3 complexnanostructures”, Inorg. Chem. 2009, 48, 10326-10329.
23. Qingzhi Wu, Huaqiang Cao*,Qiuying Luan, Jiyong Zhang, Zhao Wang*, Jamie H. Warner, Andrew A. R. Watt, “Biomolecule-assisted synthesis of water-soluble silvernanoparticles and their biomedical applications”, Inorg.Chem. 2008, 47, 5882-5888.
22. Junhua Xiang, HuaqiangCao*, Qingzhi Wu, Sichun Zhang, Xinrong Zhang*, Andrew A. R. Watt,“L-cysteine-assisted synthesis and optical properties of Ag2Snanospheres”, J. Phys. Chem. C 2008, 112, 3580-3884.
21. Junhua Xiang, Huaqiang Cao*,Jamie H. Warner, Andrew A. R. Watt, “Crystallization and self-assembly of calcium carbonatearchitectures”, Cryst. Growth & Des. 2008,8, 4583-4588.
20. Junhua Xiang, Huaqiang Cao*,Qingzhi Wu, Sichun Zhang, Xinrong Zhang*, “L-cysteine-assisted self-Assembly of complex PbS structures”, Cryst.Growth & Des.2008, 8, 3935-3940.
19. Jamie H Warner*, Huaqiang Cao,“Shape control of PbS nanocrystals using multiple surfactants”, Nanotechnology 2008,19, 305605 (1-5).
18. Huaqiang Cao*, Guozhi Wang,Jamie H. Warner, Andrew A. R. Watt, “Amino-acid-assisted synthesis and size-dependent magneticbehaviors of hematite nanocubes”, Appl. Phys. Lett. 2008,92, 013110 (1-3).
17. Huaqiang Cao*, Lei Zhang,Xiangwen Liu, Sichun Zhang, Yu Liang, Xinrong Zhang*, “Catalytic chemiluminescence properties of boehmite"nanococoons"”, Appl. Phys. Lett. 2007,90, 193105 (1-3).
16. Huaqiang Cao*, XianqingQiu*, Yu Liang, Meijuan Zhao, Qiming Zhu, “Sol-gel synthesis and photoluminescence of p-type semiconductorCr2O3 nanowires”, Appl. Phys. Lett. 2006,88, 241112 (1-3).
15. Qingzhi Wu, Huaqiang Cao*,Sichun Zhang, Xinrong Zhang*, Daniel Rabinovich, “Generation and optical properties of monodisperse wurtzite-typeZnS microspheres”, Inorg. Chem. 2006,45, 7316-7322.
14. Huaqiang Cao*, Guozhi Wang,Sichun Zhang, Xinrong Zhang*, Daniel Rabinovich, “Growth and optical properties of wurtzite-type CdS nanocrystals”, Inorg.Chem. 2006, 45, 5103-5108.
13. Qingzhi Wu, Huaqiang Cao*,Sichun Zhang, Xinrong Zhang*, “Poly(ethylene glycol)-assisted two-dimensional self-assembly ofzinc sulfide microspheres”, Inorg. Chem. 2006,45, 4586-4588.
12. Huaqiang Cao*, Guozhi Wang,Lei Zhang, Yu Liang, Sichun Zhang, Xinrong Zhang*, “Shape and magnetic properties of single-crystalline hematite(alpha-Fe2O3) nanocrystals”, ChemPhysChem 2006,7, 1897-1901.
11. Huaqiang Cao*, Liduo Wang,Yong Qiu*, Qingzhi Wu, Guozhi Wang, Lei Zhang, Xiangwen Liu, “Generation and growth mechanism of metal (Fe, Co, Ni) nanotubearrays”, ChemPhysChem 2006, 7, 1500-1504.
10. Huaqiang Cao*, XianqingQiu*, Yu Liang, Lei Zhang, Meijuan Zhao, Qiming Zhu, “Sol-gel template synthesis and photoluminescence of n- andp-type semiconductor oxide nanowires”, ChemPhysChem 2006,7, 497-501.
9. Huaqiang Cao*, Guozhi Wang,Sichun Zhang, Xinrong Zhang*, “Growth and photoluminescence properties of PbSnanocubes”, Nanotechnology 2006, 17, 3280-3287.
8. Huaqiang Cao*, Liduo Wang,Yong Qiu*, Lei Zhang, “Synthesis and I-V properties of aligned coppernanowires”, Nanotechnology 2006, 17, 1736-1739.
7. Huaqiang Cao*, XianqingQiu*, Bin Luo, Yu Liang, Yuhui Zhang, Ruiqin Tan, Meijuan Zhao, Qiming Zhu*,“Synthesis and room-temperature photoluminescence properties of zirconiananowires”, Adv. Funct. Mater. 2004, 14, 243-246.
6. Huaqiang Cao*, XianqingQiu*, Yu Liang, Qiming Zhu*, Meijuan Zhao, “Room-temperatureultraviolet-emitting In2O3nanowires”, Appl.Phys. Lett. 2003, 83, 761-763.
5. Huaqiang Cao, Chenyang Tie,Zheng Xu*, Jianming Hong, Hai Sang, “Array of nickel nanowires enveloped inpolyaniline nanotubules and its magnetic behavior”, Appl. Phys.Lett. 2001, 78, 1592-1594.
4. Huaqiang Cao, Zheng Xu*,Dong Sheng, Jianming Hong, Hai Sang, Youwei Du, “An array of iron nanowiresencapsulated in polyaniline nanotubules and its magnetic behavior”, J.Mater. Chem. 2001, 11, 958-960.
3. Huaqiang Cao, Zheng Xu*,Xianwen Wei, Xiang Ma, Ziling Xue, “Sol-gel synthesis of an array of C70 singlecrystal nanowires in a porous alumina template”, Chem. Commun. 2001,541-542.
2. Huaqiang Cao, Yan Xu,Jianming Hong, Huibiao Liu, Gui Yin, Baolong Li, Chenyang Tie, Zheng Xu*,“Sol-gel template synthesis of an array of single crystal CdS nanowires on aporous alumina”, Adv. Mater.2001, 13,1393-1394.
1. Huaqiang Cao, Zheng Xu*, HaiSang, Dong Sheng, Chenyang Tie, “Template synthesis and magnetic behavior of anarray of cobalt nanowires encapsulated in polyaniline nanotubules”, Adv.Mater. 2001, 13, 121-123.





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