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【納米英才錄】王中林教授文獻、書籍和研究領域簡介
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結合本版國際和國內(nèi)納米界牛人及其group簡介活動,從本期開始對納米領域的這些outstanding專家進行更詳細的介紹,本期【納米英才錄】將首先介紹一下美國佐治亞理工的王中林教授。特別感謝本帖整理人tongxiangcai蟲友辛苦勞作,請感興趣的蟲子踴躍跟帖,介紹王教授的工作進展! 王中林課題組網(wǎng)站 http://www.nanoscience.gatech.edu/zlwang/ 王中林教授于1982年畢業(yè)于西安電子科技大學,并于同年考取中美聯(lián)合招收的物理研究生(CUSPEA),1987年獲亞利桑那州立大學物理學博士學位,現(xiàn)任美國佐治亞理工學院納米科學和技術中心主任,是國內(nèi)外著名的納米技術專家。王中林教授已在國際一流刊物上發(fā)表期刊論文400余篇,會議論文140余篇,擁有專利8項,出版4本專著和15本編輯書籍。王中林教授因其對“納米技術領域的材料科學以及基礎發(fā)展做出的杰出及持續(xù)的貢獻”,2002年當選為歐洲科學院院士,2004年當選為世界創(chuàng)新基金會院士,2005年當選為美國物理學會院士。王中林教授是從1992年到2002年10年中納米科技論文被引用次數(shù)世界個人排名前25位作者之一。 RESUME Zhong Lin (ZL) Wang Regents’ Professor COE Distinguished Professsor Director, Center for Nanostructure Characterization & Fabrication (CNCF), Georgia Tech School of Materials Science and Engineering Georgia Institute of Technology Atlanta, GA 30332-0245 Phone: (404) 894-8008 (office); Fax: (404) 894-9140, e-mail: zhong.wang@mse.gatech.edu, Personal Home Page: http://http://www.nanoscience.gatech.edu/zlwang/ http://www.mse.gatech.edu/people/faculty/wang/wang.html Education: Ph.D. in Physics, Arizona State University, 1987. B.S. in Applied Physics, Northwest Telecommunication Engineering Institute (now Xidian University), Xian, China, 1982. Employment History: Georgia Institute of Tech., School of Materials Science and Engineering 1995-present COE Distinguished Professor 2006-present Regents' Professor 2004-present Full Professor, 1999-2004 Director, Center for Nanoscience and Nanotechnology , 2000 - 2005 Director, Center for Nanostructure Characterization and Fabrication, 1998 – present Associate Professor, 1995-1999 National Institute of Standards and Technology 1993 – 1995 Oak Ridge National Laboratory and University of Tennessee 1990 – 1993 Research Associate Professor, Metals and Ceramics Div. Oak Ridge National Laboratory 1989 – 1990 Research Fellow, U.S. Dept. of Energy, Metals Y Ceramics Div. University of Cambridge - England, Cavendish Laboratory 1988 – 1989 Research Fellow State University of New York at Stony Brook, Materials Science & Eng. 1987 – 1988 Visiting Lecturer Honors, organizations and awards: • Lee Hsun Lecture Award, Institute of Metal Resarch, China, 2006. • Scientific Advisor, The Coke-Cola Co., 2006-2009. • Panelist for review the materials program of the Lawrence Berkeley National lab., Aug. 2006. • Panelist, Georgia life science sumit, Oct. 4, 2006. • Honorary Professor, University of Birmingham, UK, Oct. 2006 – Sept. 2009. • NanoTech Briefs, Top50 award, 2005. • Symposium entitled of “Workshop on Mesoscopic and Nanometric Materials” in honor of Prof. Z.L. Wang was organized by Universitaire Pierre & Marie Curier, Oct. 12, 2005. • Faculty Sustain Research award (Sigma Xi), 2004. • Georgia Tech faculty outstanding research author award, 2004. • Fellow, American Physical Society, 2005 - present. • Fellow, American Association for Advancment of Science (AAAS), 2007 - present. • Fellow, World Innovation Foundation (www.thewif.org.uk) 2004 - present. • Elected member of the European Academy of Science (http://www.easinus.us/) in 2002. • S.T. Li Prize for Distinguished Achievement in Science and Technology, 2001. • Outstanding Research Author Award, Georgia Tech, 2000. • Burton Medal, Microscopy Soc. of America, 1999. • Outstanding Oversea Young Scientists award from NSF China, 1998-2001. • NSF CAREER award, 1998-2002. • Best Materials Paper published in Microscopy and Microanalysis, 2002. • The Sigma Xi Society best paper award, 2004. • The Sigma Xi Society best paper award, 2002. • The Sigma Xi Society best paper award, 1998. • The paper on nanobelt was the top second most cited paper in chemistry 2001-2003 (ISI, Science Watch). • The discovery of nanobalance was selected as the breakthrough advance in nanotechnology by the America Physical Society in 1999. • Symposium in honor of Prof. Z.L. Wang was organized by L'Institut Universitaire de France (IUF), May 7, 2003. • The 4th academic most active person at Georgia Tech, 2001. • Scientific committee/board of governors for the European Academy of Science, 2003. • Scientific Advisor, Nanophotonic Semiconductors Co., Singapore, 2003. • Scientific Advisor, Springer, 2003-present. • Scientific Advisor, Center for Functional Nanomaterials, Brookhaven National Lab., 2004-2006. • Advisor, Hefei National Lab., China, 2005-2007. • Associate editor, the European Physical Journal – Applied Physics, Jan 1 2003 – Dec. 31, 2004. • Member of the Int. Advisory Board, the European Physical Journal – Applied Physics, Jan 1 2005 – Dec. 31, 2006. • Member of the Advisory Board for Nano Letters, 2004-present. • Member of the Editorial Board, Nanotechnology, 2006-present. • Member of the Editorial Board, J. Materials Science, 2004-present. • Member of the Editorial Board, Science Bulletin, 2003-2005. • Member of the Scientific Advisory Board for Kluwer Academic Publishers, 2003-present. • Member of the Editorial Board for Am. J. of Nanomedicine, 2005-present. • Member of the Advisory Board for Micron, 1997-present. • Member of the Advisory Board for J. Physical Chemistry, 2004-present. • Member of the Editorial Board for J. Nanoscience and Nanotechnology, 2001-2004. • Member of the Editorial Board for Progress in Natural Sciences, 2000-present. • Member of the Advisory Board for Advanced Functional Materials, 2000-present. • Member of the Editorial Board for Frontier of Mordern Sciences, Chinese High Education Press, 2000-present. • Member of the Advisory Board for Encyclopedia of Nanotechnology, Academic Press, 2000. • Scientific Advisory board member for the Nanotechnology Center, Brokkhaven National Lab., 2004-2006. • Editorial Advisory Panel, Nano Today, 2006-present. • Advisory board for the Nanocenter, Univ. of South Carolina, 2002-3. • Member of the Editor Board for Sensor Letters, 2003-2005. • Award from 1989 EMAG conference (London) for best scientific poster. • Regents Graduate Academic Scholarship, 1986-1987. • Named as outstanding scholar on Dean's list, 1985-1987, Arizona State University. • President of the Sigma Xi Society at Georgia Tech, 2002. • Vice President of the Sigma Xi Society at Georgia Tech, 2001. • Member of the America Chemical Society. • Member of the America Physical Society. • Member of the Materials Research Society. • Member of the American Association for the Advancement of Science • Member of IEEE. • Member of the Microscopy Society of America. • Member of the America Ceramic Soc. • Member of the ASM Structures Committee 1995-2002. Fellowships and visiting professorships: • Visiting Professor, University of Pierre&Marie Curie (France), May 1 - 30, 2005. • Honorable Professor, Institute of Chemistry, Chinese Academy of Science, China (2004). • Honorable Professor, Institute of Semiconductors, Chinese Academy of Science, China (2005). • Honorable Professor, University of Shanghai for Science and Technology, China (2005). • Honorable professor, Sun Yat-Sen University, China (2006). • Honorable professor, Central China Normal University (2005). • Visiting Changjiang Chair Professor, Tsinghua University, China (2001-2006). • Visiting professor in China: Institute of Physics (1999), Xidian University (1999), Harbin Institute of Technology (2002), University of Science and Technology Beijing (2001), Peking University (2000), Nanjing University (2005), Xiamen University (2004), Zhejiang University (2004), Southern China University of Science and Technology (2003), Southern China Normal University (2002). • Visiting Professor, University of Pierre&Marie Curie (France), Novermber 1-30, 2002. • DoE SHaRE summer faculty fellowship, 1997. • Visiting Professor, Swidish Federal Institute of Technology (EPFL), Lausanne, 1997. • K.C. Wong foundation fellowship (Hong Kong), 1992-1994. • Research Fellowship from US Department of Energy, 1989-1990. • Research Fellowship from University of Cambridge UK, 1988-1989. [search]王中林[/search] [ Last edited by gshsheng on 2009-6-20 at 13:14 ] |
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Students received PhD degrees from Dr. Wang: [1] Rusen Yang “Oxide Nanomaterials: Synthesis, Structure, Properties, and Novel Devices”, Aug. 2007 [2] Daniel Moore " Novel Zns Nanostructures: Synthesis, Growth Mechanism, And Application”, Dec., 2006. [Now CREE, co.] [3] Will Hughes “Synthesis and characterization of zinc oxide nanostructures for piezoelectric applications”, August, 2006. [Now faculty at California Polytechnique Univ.] [4] Xudong Wang "Large-scale patterned oxide nanostructures: fabrication, characterization and applicationis”, November 2005. [5] Puxian Gao "Piezoelectric Nanostructures of Zinc oxide: From synthesis to characterization and to devices”, PhD, November 2005. [Now faculty at Univ. of Conneticut] [6] Chris Ma "Synthesis of One-dimensional CdSe nanostructures”, August 2005. [Now System Planning co., Washington] [7] Yongqian Wang "Nanometer characterization of compound semiconductor quantum heterostructures grown by MBE”, PhD, March 2002. [Now at Intel]. [8] Jinsong Yin "Self-assembly of Ordered Nanostructures”, PhD, April 2000. [Now at AMD] [9] Kojo Appiah "Microstructural and Microanalytical Characterization of Laminated (C-SiC) Matrix Composites Fabricated by Forced-Flow Thermal_gradient Chemical Vapor Infiltration”, PhD, February 2000. [Now at AMD] [10] Yongdong Jiang "Synthesis and Properties of Powder Phosphor Materials for Field Emission Displays”, PhD, December 1999. [Now at nGimat] [11] Steve A. Harfenist "Structure and Characterization of Passivated Ag Nanocrystal Self-Assembed Superlattices”, PhD, December 1999. [Now faculty at California Polytechnique Univ.] Students received MS degrees from Dr. Wang: [1] Minghui Kuang "Catalytically assisted growth of carbon nanotubes”, MS, December 1999. PhD students currently supervised by Dr. Wang: [1] Sheng Xu, Jan. 2007- present [2] Yifan Gao "Nanogenerators”, May. 2006- present. [3] Melanie Kirkham (co-supervised with Dr. R. Snyder. ), May 2006 - present. [4] Changshi Lao "Nanofabrication”, Aug. 2003- present. [5] Wenjie Mai "Nano-scale manupilation”, Aug. 2004- present. [6] Jinhui Song "Nano-scale measurements” Aug. 2004- present. [7] Ben Weintraub, Jan 2006 – present. [8] Jenny Morber (co-supervised with Dr. R. Snyder. ), Jan. 2004- present. [9] Jin Liu "Nano-bio-sensors” (co-supervised with Dr. Rao Tummala), Aug. 2004- present. [10] Xiang Wu, Jan. 2006 – Present (Harbin Institute of Technology) [11] Zhou Li, Aug. 2006 – Present (Peking University) [12] Yudong Gu, Aug. 2006 - Present (Peking University) [13] Yue Shen, Aug. 2006 – Present (Peking University) [14] Hao Fang, Aug. 2006 – Present (Peking University) Serving as PhD co-supervisor for international institutions: [1] Jun Zhou “Synthesis, Characterization and field emission of Nanowires”, PhD, October 2006, Zhongshan University, China. [2] Jr-Hau He “Synthesis, Characterization and Properties of Semiconductor Nanowires”, PhD, October 2005, National Tsinghua Univ., Taiwan. {Now faculty, National Taiwan Univ., Taiwan} [3] Ruiping Gao “Properties of carbon nanotubes”, PhD, March 2002, University of Science and Technology Beijing. [Now, Dupity director, Materials Science and Engineering Division, NSF China] [4] Zurong Dai “Short-range ordering in ZrO2 ceramics”, PhD, March 1996, University of Science and Technology Beijing. [Now Research Scientist, Lawrence Livermore Nat. Lab] [5] Thomas Stockli “Quantative EELS of carbon nanotubes”, PhD, March 1999, EPFL, Lauzanne. Postdoctoral fellows, research scientists and visiting scientists supervised by Dr. Wang: [1] Dr. Chengyan Xu (Feb. 2007-Aug. 2007) [Harbin Institute of Technology] [2] Mr. Yu-Lun Hsin (Jan. 2007 – Dec. 2007) [Nationa Tsinghua Univ. Taiwan] [3] Mr. Yi-Feng Lin (Jan. 2007 – Dec. 2007) [Nationa Tsinghua Univ. Taiwan] [4] Dr. Yong Qin (Feb. 2007-Jan. 2009) {Lanzhou University} [5] Mr. Qin Kuang (Sept 2006 – Aug 2007) [Xiamen Univ., China]. [6] Dr. Puxian Gao (Jan. 2006 – Jan. 2007) [Now faculty, Univ. of Conneticut]. [7] Dr. Xudong Wang (Jan. 2006 – Aug. 2007). [8] Dr. Jilong Liao (Jan. 2006 – Aug. 2006) [Mianyang Univ. Of Sci. And Tech., China]. [9] Dr. Yu-Lun Chueh (February 2006 – Sept, 2007). [10] Dr. Liqiang Mai (March 2006 – Feb. 2008) [faculty at Wuhan Univ of Sci. and Tech., China]. [11] Dr. Jingyun Huang (Dec. 2005 – Nov. 2006) [faculty at Zhejiang Univ., China]. [12] Dr. Huibiao Liu (July 2006 – Feb. 2007) [faculty at Inst. Of Chemistry, CAS, China]. [13] Mr. Jun Zhou (February 2005 – June 2006) [Zhongsan Univ., China]. [14] Prof. Hong Liu (February 2005 – April 2006) [faculty, Shandong Univ]. [15] Dr. J.H. Ho (February 2005 – September 2005) {fauclty, National Taiwan Univ., Taiwan}. [16] Prof. Chenguo Hu (February 2005 – February 2006) [faculty, Chongqing Univ., China]. [17] Dr. Yong Ding (June 2003 – present). [18] Prof. Yue Zhang (Nov. 2002 – April 2003) [Vice President, Univ of Sci. and Tech. Beijing]. [19] Ms. Yolande Berta (March 1995 - present). [20] Dr. Xuedong Bai (Dec. 2001 – Dec. 2002) [fauclty, Inst. Of Physics, CAS, China]. [21] Dr. Xiangyang Kong (July. 2002 – Feb. 2004) [faculty, Shanghai Jiaoton Univ., China]. [22] Dr. Kanghua Chen (Feb. 2002 – Aug. 2002) [faculty, SouthCentral Univ of China]. [23] Dr. Jing Li (Nov. 2001 – Jan. 2005). [24] Dr. Zhenchuan Kang (July 1996 – Dec. 1997). [25] Dr. Zhengwei Pan (Jan. 2000 – Feb. 2002) [Faculty, Univ. of Georgia]. [26] Dr. Zurong Dai (Oct. 1999 – Feb. 2003) [Scientist, Lawrence Livermore Nat. Lab.]. [27] Dr. Ruiping Gao (August 1999 – August 2000) [Now, Dupity director, Materials Science and Engineering Division, NSF China]. [28] Dr. Jianbao Li (Dec 1998 – March 1999) [fauclty, Tsinghua Univ., China]. [29] Dr. Lijie Qiao (Dec. 2001 – March 2002) [faculty, Univ. of Sc. And Tech. Beijing]. [30] Dr. Gaiying Yang (Sept. 1999 – Dec. 2000) [Research Scientist, Penn State Univ]. [31] Ms. Yue Du (March 1997 – March 1999). |
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Publication list (Citation was acquired from ISI database on 06/30/06: Total citation >12,000; H factor = 54) I: Authored Scientific Reference and Text Books: [1] "Elastic and Inelastic Scattering in Electron Diffraction and Imaging”, by Z.L. Wang, Plenum Publishing Co. (New York, 1995). 7 Wang’s resume as 7/8/07 [2] "Reflected Electron Microscopy and Spectroscopy for Surface Analysis,”by Z.L. Wang, Cambridge University Press (England, May 1996). [3] "Functional and Smart Materials - Structural Evolution and Structure Analysis,” by Z.L. Wang and Z.C. Kang, Plenum Publishing Co. (New York, 1998). <<功能和智能材料 – 結構演化和結構分析>>(中譯本), 科學出版社, 中國 (2002)。 [4] "Self-assembled Nanostructures,” by J.Z. Zhang, Z.L. Wang, J. Liu, S.W. Chen and G.Y. Liu, Kluwer Academic Publisher (New York, 2002). II: Edited Scientific Reference Books and Conference Proceedings [1] "Characterization of Nanophase Materials,” edited by Z.L. Wang, Wiley-VCH (New York, 2000). [2] "Handbook of Nanophase and Nanostructured Materials - Synthesis,” edited by Z.L. Wang, Y. Liu and Z. Zhang, Tsinghua Univ. Press - Kluwer (2002). [3] "Handbook of Nanophase and Nanostructured Materials - Characterization,” edited by Z.L. Wang, Y. Liu and Z. Zhang, Tsinghua Univ. Press - Kluwer (2002). [4] "Handbook of Nanophase and Nanostructured Materials - Materials Systems and Applications I,” edited by Z.L. Wang, Y. Liu and Z. Zhang, Tsinghua Univ. Press - Kluwer Academic Publisher (2002). [5] "Handbook of Nanophase and Nanostructured Materials - Materials Systems and Applications II,” edited by Z.L. Wang, Y. Liu and Z. Zhang, Tsinghua Univ. Press – Kluwer Academic Publisher (2002). [6] "Electron Microscopy of Nanotubes,” edited by Z.L. Wang, C. Hui, Kluwer Academic Publisher (2003). [7] " Nanowires and Nanobelts – materials, properties and devices; Vol. I: Metal and Semiconductor Nanowires” edited by Z.L. Wang, Kluwer Academic Publisher (2003). [8] "Nanowires and Nanobelts – materials, properties and devices; Vol. II: Nanowires and Nanobelts of Functional Materials” edited by Z.L. Wang, Kluwer Academic Publisher (2003). [9] "Handbooks of Microscopy for Nanotechnology” (Vol. I & II) edited by Nan Yao and Z.L. Wang, co-published by Springer and Tsinghua University Press (2004). [10] “Microsystems and Nanotechnology 微系統(tǒng)和納米技術”, edited by Zhaoying Zhou, Rong Zhu and Z.L. Wang, Science Press, China (2006). [11] “Advanced Scanning Microscopy for Nanotechnology”, edited by Weilie Zhou and Z.L. Wang, co-published by Springer and High Education Press (China) (2006). [12] S.S. Fan and Z.L. Wang (ed.) Proc. For the Symposium on Nanomaterials and Structures in The 8 International Conference on Electronic Materials, IUMRSICEM2002, Xi’an, China from June 10–14, 2002, Microelectronic Engineering Vol. 66, Num. 1-4 (April, 2003). [13] “Nanoscience and nanotechnology in Perspective”, edited by G.K. Liu and Z.L. Wang, Tsinghua Univ. Press, (2002) [14] “Physical Chemistry of Interfaces and Nanomaterials”, eds. (Jin Z. Zhang and Z.L. Wang), Proc. Of SPIE annual conference, 7-9 July 2002 (Seattle), Vol. 4807. [15] “Quantum dots, nanoparticles and nanowires”, eds. P. Guyot-Sionnest, H. Mattoussi, U. Woggon and Z.L. Wang, MRS Proceeding, Vol. 789, Published by MRS, 2004. [16] “Nanoengineered Assemblies and Advanced Micro/Nanosystems”, eds. David P. Taylor, Jun Liu, David McLiroy, L. Merharri, J.P. Pendry, J.T. Borenstein, P. Grodzinski, Luke P. Lee and Z.L. Wang, MRS Proceeding, Vol. 820, Published by MRS, 2004. [17] “Assembly at the Nanoscale - Toward Functional Nanostructured Materials”, a special volume for Small Vol. 2 (11), 2006, eds. Cengiz S. Ozkan and Z.L. Wang . [18] “Assembly at the Nanoscale - Toward Functional Nanostructured Materials”, eds. Cengiz S. Ozkan , Federico Rosei , Gregory P. Lopinski , and Zhong L. Wang , Published electronically by MRS, 2006. [19] “Functional Nanowires”, eds. By C.M. Lieber and Z.L. Wang , MRS Bulletin, Feb. 2007. [20] “Nanostructured Materials – Processing, Structures, Properties and Applications”, a special issue for J. Materials Science, edited by Yuntian T. Zhu, Terence G. Langdon, Zhong Lin Wang. [21] Nanowires and Nanotubes, a special issue, J. Materials Res. 21 (11) (2006), edited by R. Tenne, P.M. Ajayan, Z.L. Wang, Y.D. Li, P.D. Yang. [22] “ Special issue: Nanostructured materials-processing, structures, properties and applications”, J. Materials Science, edited by Y.T. Zhu, Z.L. Wang and T.G. Langdon, Vol 42. No. 5 (2007) IV: Patents [1] Z.L. Wang, Zhengwei Pan and Zurong Dai "Semiconducting Oxide Nanostructures I", US Patent No. 6,586,095 [2] Z.L. Wang and X.Y. Kong "Semiconducting Oxide Nanostructures II", US Patent No. 6,863,943. [3] Z.L. Wang and P.X. Gao “Semiconducting Oxide Nanostructures III”, US patent No. 6918959. [4] J.L. Gole and Z.L. Wang “Tin oxide nanostructures”, US patent No. 6940086. [5] J.L. Gole and Z.L. Wang “Silicon based nanospheres and nanowires”, US patent No. 7186669. [6] Z.L. Wang and P.X. Gao “Nanoscale junction arrays and methods for making same”, US patent No. 7,220,310. [7] Z.L. Wang, W.L. Hughes and B. Buchine “probe sensor with multi-dimensional optical grating”, US patent pending. [8] Z.L. Wang, P.X. Gao and Y. Ding “Super Lattice Structured Nanostructures And Methods Of Fabrication”, US patent pending. [9] Z.L. Wang, J.H. Song and Xudong Wang “Nanowire Piezo-Electric Generators for Converting Mechanical Movement Energy, Vibration and/or Hydraulic Energy Into Electricity For Self-Powering of Wireless Nano-Bio-devices and Systems” , US patent pending (Dec. 2006). [10] Z.L. Wang, X.D. Wang “Nanopiezotronics”, US patent pending. [11] Z.L. Wang, X.D. Wang, J.H. Song “Low-cost technology for fabricating large-area, density-controlled and aligned ZnO nanowires on ceramic substrates with/without a conducting bottom electrode”, US provision patent (GTID 3618) (Sept. 2005). [12] Z.L. Wang and X.D. Wang “Nanobow based bio-chip technology for manupilation, characterization and identification of living cells and viruses” (GTID 3707) (Jan. 2006). [13] Z.L. Wang, Hong Liu and Chenguo Hu “A general approach for large-scale, high-yield, cost-effective, low temperature, and environmentally friendly synthesis of complex metal oxides and hydroxides of functional materials” (GTID 3750) (Feb., 2006). [14] Z.L. Wang, X.D. Wang and J. Zhou “Piezoelectric-Field Effect Transistor (P-FET) and Nano-Force Sensor based on ZnO Nanowires” (GTID 3897) (June 2006). [15] Z.L. Wang, P.X. Gao “Bio-nanogenerator for converting chemical/biological energy into electricity for powering nanodevices”, (June 2006). |
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V: book chapters [1] C.G. Hu, H. Liu and Z.L. Wang, “Synthesis of oxide nanostructures”, BioNanoFluidic MEMS, edited by Professor Peter J. Hesketh Springer, 2007. [2] Zhong Lin Wang “Nanostructures and nanomeasurements”, in Handbook of Microscopy, edited by Van Tendeloo, Van Dirk, S. Pennycook. [3] Z.L. Wang “Novel Nanostructures and Nanodevices of ZnO”, Chapter 10 in Zinc Oxide Bulk, Thin Films and Nanostructures, Edited by Chennupati Jagadish and Steve Pearton, Elsevier (2006), pp. 339-370. [4] Pu Xian Gao and Zhong Lin Wang* “One-dimensional Wurtzite Semiconducting Nanostructures”, a chapter in Advanced Scanning Electron Microsocpy – techniques and applications, eds. W.L. Zhou and Z.L. Wang, Springer 2006. [5] Mark Reed, Sheryl Ehman, Brent Segal, Zhong Lin Wang, Fiona Case, “Nanoscale Materials”, chapter 13, pp. 141-162, in Nanotechnology, Science Innovation and Opportunity, ed. Lynn Foster, Prentice Hall, 2005. [6] Xudong Wang and Zhong L. Wang “Photonic crystals and devices”, a ch.apter in Advanced Scanning Electron Microsocpy – techniques and applications, eds. W.L. Zhou and Z.L. Wang, Springer 2006. [7] Z.L. Wang, “From Nanotechnology to Nanomanufacturing and to Nanoindustry”, in Micro and Nano Systems, edited by Z.Y. Zhou, R. Zhu and Z.L. Wang, Science Press, Beijing (2006). [8] Z.L. Wang, X.D. Wang and R.P. Gao “Nanotubes, nanowires and nanobelts”, in Micro and Nano Systems, edited by Z.Y. Zhou, R. Zhu and Z.L. Wang, Science Press, Beijing (2006). [9] Weilie Zhou and Z.L. Wang, “Structure analysis of nanomaterials”, in Micro and Nano Systems, edited by Z.Y. Zhou, R. Zhu and Z.L. Wang, Science Press, Beijing (2006). [10] Zhong L. Wang, Yong Ding and Jing Li "Structures of magnetic nanoparticles and their self-assembly" in Nanocrystals forming mesoscopic structures, Chapter 2, pp. 49-74, edited by Marie-Paule Pileni, Wiley-VCH, 2005. [11] X.D. Wang and Z.L. Wang*, “Nanobelts and Nanowires of Functional Oxides:, Chapter 4 in Nanoengineering of Structural, Functional and Smart Materials, ed. Mark.J.Schulz, in press (2006) [12] Zhong Lin Wang* and Jean L. Lee "Electron Microscopy Techniques for Imaging and Analysis of Nanoparticles", in Surface Contamination and Precision Cleaning Handbook, edited by R. Kohli and K. L. Mittal, Noyes Publishing (2006). [13] Z.L. Wang "Nanotechnology and Nanomanufacturing", Chapter 22 in Semiconductor Manufacturing Handbook, ed. Hwaiyu. Geng, McGraw-Hill (2005). [14] Z.L. Wang "Cation Valence States of Transitional Metal Oxides Analyzed by Electron Energy-Loss Spectroscopy", pp. 87-110, Chapter 4 in Metals Oxides: Chemistry and Applications, ed. J.L.G. Fierro, Taylor & Francis Group (2006). [15] Z.L. Wang " In-Situ Electron Microscopy For Nanomeasurements", in Handbook on Microscopy for Nanotechnology, eds. Nan Yan and Z.L. Wang, Kluwer Academic Publisher - Tsinghua University Press (2004). [16] Z.L. Wang “What is Nanotechnology, And how will this small wonder make a big change in manufacturing”, Industrial Engineer, January (2004) 28-29; + online: http://www.iienet.org/magazine/jan04/wang. [17] Z.L. Wang “Mechanical Properties of Nanowires and Nanobelts by in-situ TEM”, Dekker Encyclopedia of Nanoscience andNanotechnology, Eds. J.A. Schwarz, C. Contescu and K. Putyera, Marcel Dekker, Inc, (2003) 1773-1786. [18] Z.L. Wang “In-Situ Electron Microscopy For Nanomeasurements”, in Microscopy for Nanotechnology, eds. N. Yao and Z.L. Wang, Tsinghua University Press and Kluwer Academic Publisher (2004). [19] A.C. Nunes, S. Tozer and Z.L. Wang, Magnetic and structural natuire of a ferrite nanoparticle“, in Recent Research Developments in Magnetism and Magnetic Materials, Transworld Research Network 1 (2003) 15-32. [20] Z.L. Wang “New developments in transmission electron microscopy for nanotechnology”, Adv. Mater., 15 (2003) 1497-1514. [21] Z.L. Wang “Nanodevice, Nanosensors and Nanocantilevers Based on Semiconducting Oxide Nanobelts”, in Nanowires and Nanobelts – materials, properties and devices; Vol. II: Nanowires and Nanobelts of Functional Materials, ed. Z.L. Wang, Kluwer Academic Publisher (2003). [22] Z.L. Wang “Nanobelts and Nanostructures of Transparent Conducting Oxides”, in Nanowires and Nanobelts – materials, properties and devices; Vol. II: Nanowires and Nanobelts of Functional Materials, ed. Z.L. Wang, Kluwer Academic Publisher (2003). [23] Z.L. Wang “In-situ Nanomeasurements in Transmission Electron Microscopy – Mechanical, field emission and electrical properties of individual nanotubes”, in Encyclopedia of Nanoscience and Nanotechnology, Ed. H. S. Nalwa, American Scientific Publishers (2003). [24] Z.L. Wang “In-situ Mechanical Properties of Nanotubes and Nanowires”, in Electron Microscopy of Nanotubes, ed. Z.L. Wang and C. Hui, Kluwer Academic Publisher (2003). [25] Z.L. Wang “In-situ Field Emission of Carbon Nanotubes”, in Electron Microscopy of Nanotubes, ed. Z.L. Wang and C. Hui, Kluwer Academic Publisher (2003). [26] Zhong L. Wang*, Philippe Poncharal, Walt A de Heer and C. Hui “In-Situ Electric Transport of Carbon Nanotubes”, in Electron Microscopy of Nanotubes, ed. Z.L. Wang and C. Hui, Kluwer Academic Publisher (2003). [27] Yonggang Huang, Z.L. Wang, “Mechanics of Nanotubes”, Comprehensive Structural Integrity, Elsevier Science, in press (2002). [28] Z.L. Wang* and R.P. Gao, “In-situ Nanomeasurements of One-dimensional Nanostructure”, in Advances in Transmission Electron Microscopy, Chapter D7, pp 495-522, Heqiang Ye and Yuanming Wang eds. Science Publisher, Beijing (2003). [29] Z.W. Pan, Z.R. Dai and Z.L. Wang*, “Synthesis, structure and growth mechanism of oxide nanowires, nanotubes and nanobelts”, Chapter 5 in Quantum Dots and Nanowires, edited by S. Bandyopadhyay and N.S. Nalwa, American Scientific Publishers (2002) pp. 193-218. [30] Zhong Lin Wang*, Zhengwei Pan and Zurong Dai “Nanowires and Nanobelts of Semiconductive Ceramics - Potential and prospects”, in the book “Advances in nanoscience and nanotechnology”, edited by G.K. Liu and Z.L. Wang, Tsinghua Univ. Press, (2002). [31] Z.L. Wang, “Nanomaterials and Nanotechnology” (in Chinese) Science and Technology Developing Directions in the Twenty First Century, edited by Hong Jin Yang, 2001. [32] Z.L. Wang, “Electron Energy-Loss Spectroscopy and Energy Filtered Electron Imaging”, chapter 21 Industrial Applications of Electron Microscopy, Edited by: Zhigang R. Li, Marcel Dekker, 2003. [33] Z.L. Wang*, Z. Zhang and Y. Liu "Transmission Electron Microscopy and Spectroscopy”, in Nanophase and Nanostructured Materials – Characterization, edited by Z.L. Wang, Z. Zhang and Y. Liu, Kluwer Academic/Plenum Publisher - Tsinghua University Press (2001), Vol. II, 29-97. [34] Jinsong Yin and Z.L. Wang*, "Self-assembled Ordered Nanostructures”, in Handbook of Nanophase and Nanostructured Materials – Materials Systems and Applications II, edited by Z.L. Wang, Z. Zhang and Y. Liu, Kluwer Academic/Plenum Publisher - Tsinghua University Press (2001), Vol. IV, 174-210. [35] Z.L. Wang, "Nanomaterials for Nanoscience And Nanotechnology,” a chapter in Characterization of Nanophase Materials, edited by Z.L. Wang, Wiley-VCH (2000). [36] Z.L. Wang, "Smart Perovskites,” in the Encyclopedia of Smart Materials, ed. by Mel Schwartz, John Wiley & Sons, Inc. Vol. 2, pp. 992-1014 (2002). [37] Z.L. Wang, "Transmission Electron Microscopy and Spectroscopy of Nanoparticles,” a chapter in Characterization of Nanophase Materials, edited by Z.L. Wang, Wiley-VCH (2000). [38] Z.L. Wang, "Microscopy for Polymer Research - An Overview,” chapter 1, in Microscopy of Industrial Polymers, Edited by S.K. Bhattacharya, Plenum Press (2001). [39] Z.L. Wang, "Inelastic Scattering in Electron Microscopy - Effects, Spectrometry And Imaging,” a chapter in Progress in Electron Microscopy, edited by X.F. Zhang and Z. Zhang, TsingHua University Press - Springer (1999). [40] Z.L. Wang, "Functional and Smart Materials,” Encyclopedia for Electric and Electronic Engineering, Vol. 8, ed. by J.G. Webster, John Wiley & Sons, Inc (1999), p. 11-25. [41] Z.L. Wang, "Microstructure and Analysis of High Temperature Superconductors" (invited), Chapter 4 in Fundamental Research in High Temperature Superconductivity, ed. By W. Zhou and W.Y. Liang, Shanghai Scientific Technical Publisher (Shanghai) (1999). |
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佐治亞理工學院王中林 來美國工作后,聽到最多印象最深的學者名字就屬王中林了。每每聽到的還滿是欽佩和驕傲,這等聲望真讓我著實吃了一驚。打開王中林的簡歷,單是看各種國內(nèi)學術頭銜,已經(jīng)讓人肅然起敬了:中國科學院海外評審專家、國家自然科學基金委海外評委、教育部“長江學者獎勵計劃”特聘講座教授、北京大學客座教授、北京科技大學客座教授等等,厚厚的一沓論文及書目清單更能讓人感覺到其厚重的科學涵養(yǎng)和科研實力。與王中林第一次見面是在2001年春寒料峭的亞特蘭大,高高的個子,眼鏡下目光炯炯,宏亮豪爽的笑聲,不僅年齡比 想象中年輕得多,而且舉手投足都能讓人感到蓬勃的朝氣。隨著日后工作交往增多,私交漸密,才發(fā)現(xiàn)王中林的魅力不只是他的科研成就,更有其常人少有的真誠、謙和與質樸。 王中林很忙,以他每年在世界各地做的學術報告超過40-50次,就可以想象時間對于他的意義。與他聯(lián)系的最佳方式是發(fā)EMAIL,電話永遠是錄音。雖說如此,我還是樂意去“打擾他”,打電話或者干脆到亞特蘭大出差時去他辦公室坐坐,畢竟很難找到這么一位良師益友,能讓你學習和領悟很多東西,無論是科學還是人生。 鳳凰 王中林是陜西蒲城飛出的一只“金鳳凰”,也是經(jīng)歷過重重劫獄的“火鳳凰”。20世紀70年代的蒲城,和中國大部分地區(qū)一樣,封閉落后。那時的學習不稱為學習,而是學工和學農(nóng),學物理是為了維修拖拉機,學化學是為了了解農(nóng)藥,學數(shù)學是為了丈量土地。王中林的初中和高中就是在這種大背景下度過的,三分之一的時間都在田里泡著。1977年的夏天,恢復高考的消息傳來,給從小就志懷高遠的他帶來了新的希望。9月份開始準備,從初中數(shù)、理、化開始,他憑著自己驚人的毅力和決心硬是啃了下去,終于如愿以償?shù)卦?978年的夏天收到了西北電訊工程學院的錄取通知書。 王中林最初的志愿是學習雷達、計算機,可陰差陽錯,因為物理成績好,學校把他分到了物理專業(yè)。進入大學校門的第一天,他就暗暗給自己定下一條標準,本科每門課程不能低于90分。對于一個初中和高中基礎并不好的青年來說,要達到如此的標準該付出多大的努力啊,王中林自己已經(jīng)記不清有多少個周末和夜晚是陪著書本度過的。在西安讀書的四年時間里,除了能找到書店外,其他的地方對他來說是陌生的。“機會是均等的,只留給有準備的人”,1982年,還在大學三年級的王中林迎來了人生又一個重要的轉折,1981年西北電訊工程學院得到了三個CUSPEA(中國物理學生赴美留學考試)的參加考試的名額,王中林參加了考試,但因為英語成績不夠,沒有通過。為了把英語學好,他買來錄音機補習英語,第二年一舉通過了考試,成為當年西北五省唯一被CUSPEA錄取的學生。 當時的內(nèi)地消息閉塞,對美國高校一無所知,選擇美國學校又成了一個難題。于是王中林便以字母順序選擇了以A開頭的亞利桑那州立大學(ARIZONA STATE UNIVERSITY),沒想到機緣巧合,歪打正著竟然投在國際知名的顯微分析學家,英國皇家學會會員,高分辨電子顯微學奠基人J.W.Cowley教授的門下。王中林的勤奮好學與刻苦努力很快得到了Cowley教授的賞識,每次教授早晨布置的任務,下午他就搶著做好給教授送過去。Cowley教授對他的評語是:不管做什么,都是做得最好的。Cowley教授嚴謹?shù)闹螌W精神和謙虛溫和的處事風格也深深影響了王中林日后的成長,對推動他在科學征途上的進步起到了非常重要的作用。1987年7月,王中林用了4年時間拿到了一般需要5至8年的物理學博士學位,是該系有史以來第一人。他用四年時間做了三個方面的研究:一是用顯微學和譜儀學結合的方法來分析納米顆粒的結構和表面反應;二是提出了反射電子能量損失譜表面分析的理論和方法,第三是研究電子和表面的相互作用。Cowley教授對他的評價是:這三個方面的任何一個課題都可以作為一篇合格的博士論文。 博士畢業(yè)后,王中林先后在紐約州立大學石溪分校、英國劍橋大學開文迪許實驗室、美國橡樹嶺國家實驗室和美國國家標準和技術定量局從事過研究工作。1992在石溪分校做博士后期間,31歲的王中林開始寫自己的第一本專著,他用了兩年多的時間完成了《電子衍射中的彈性和非彈性散射》,1995年紐約知名的Plenum Press出版后,被《American Scientists》雜志評論為“具有卓越成就和極其價值的經(jīng)典之作”。此后,他在英國劍橋大學繼續(xù)進行非彈性反射的研究,并發(fā)表了20多篇有影響的論文,對非彈性反射理論的發(fā)展作出了貢獻,并開始在此領域占領了一席之地。 明星 佐治亞理工學院是美國南部著名的理工學院,其工程學院在全美排名第四,享有盛名。1995年王中林被佐治亞理工學院材料科學與工程學系聘為副教授和電子顯微鏡實驗室主任,開始從事納米科學的研究,也開始了他在科學人生中一個碩果累累的季節(jié)。該?蒲兄鞴芨毙iLCharles Liotta稱王中林是教授里的“明星”,是對他自受聘該校以來毫不過分的評價。 1996年,王中林在納米領域的第一篇文章在《Adv. Materials》雜志上一經(jīng)發(fā)表,便引起了該領域的關注,至今該文章被引用次數(shù)超過210次。同年,他的第二本專著《Reflection Electron Microscopy and Spectroscopy for Surface Analysis》由劍橋大學出版社出版,被英國Analysis和美國材料學會會刊評論為“反射電子顯微學唯一的和必讀的教材”。1998年王中林和同事在《Science》上發(fā)表了關于發(fā)現(xiàn)納米碳管量子導電效應的文章,被12家專業(yè)學會會刊和報社作為重大科技發(fā)現(xiàn)轉載。1999年,王中林率領的科研小組研制出可稱單個病毒質量的“納米秤”,被稱為“世界上最小的秤”,這個秤利用單根納米碳管的彈性和電磁共振作用來稱重,可以稱質量為億億分之二百克的單個病毒,該成果在《Science》發(fā)表后,立即引起世界上一些主要媒體的極大關注,這一重大發(fā)明被稱為是對生物學和醫(yī)學研究的重要貢獻。1999年年底,王中林向學校提出成立納米科學和技術中心的建議,學校采納了這一建議并任命王中林擔任中心主任。 1999年3月,王中林被佐治亞理工學院提前晉升為正教授,成為該校有史以來第三位提前晉升的正教授。 2000年,王中林又提出用半導體氧化物合成納米材料,經(jīng)過一年多的努力,他與同事們利用高溫固體氣相法,在世界上首次成功地利用金屬氧化物合成了10-15納米厚、30-300納米寬的帶狀結構,俗稱“納米帶”。納米帶具有很好的導電性和敏感性,而且制作成本不高,在納米極傳感和敏感器以及光電器件的制作方面有很好的應用前景。其發(fā)現(xiàn)與合成是繼1991年發(fā)現(xiàn)多壁碳納米管和1993年合成單壁碳納米管以來納米材料合成領域的又一重大突破,引起了國際納米科技界的極大關注,被評為美國本周的重大科技新聞,美國的《Science News》、《USA Today》和其它幾家主要科技雜志搶先報道這一重大發(fā)現(xiàn)。美國著名的《Science》刊登了這一文章并評論說“該文章報道了振奮人心的納米材料,從來沒在科學文獻中看到過這種材料”。 王中林已經(jīng)成為佐治亞理工學院名符其實的明星,他不僅科研成就杰出,而且教授的課程非常受學生歡迎。在該校2001年十大杰出人物排名中,王中林排名第四。 近日從亞特蘭大又傳來好消息,王中林教授因其對“納米技術領域的材料科學以及基礎發(fā)展做出的杰出及持續(xù)的貢獻”,于不久前當選歐洲科學院院士。歐洲科學院已擁有350位院士,他們均在自己的科學領域做出了杰出貢獻,其中包括多位諾貝爾獎得主。 赤子 在王中林的人生辭典中,科學家的一生分三個階段,第一階段是學習期,第二階段是成就期,第三階段是貢獻期。而他認為自己正處在第二階段,正開始第三階段對社會對人類的回報。 王中林是位國際知名的科學家,在中美科技界都享有很高的聲譽。同時,他也是一位中美科技交流的友好使者,為促進兩國科技界的交往和合作做了大量工作。王中林深知,美國和中國都和自己有著不可割斷的聯(lián)系,美國為自己的成功提供了先進的教育和優(yōu)越的條件,中國是自己的祖國,培養(yǎng)了自己堅實的理論基礎和不屈不撓的品格。他希望中美兩個大國加強理解和合作,世代友好,促進世界和平。友好是建立在交流的基礎上,作為科學家,只有通過促進人類的科技交流,才能將自己的成就反饋給社會。 王中林每年都要回中國進行科技交流或應邀作學術報告,多次組織了中美高科技學術會議,被國內(nèi)多家部門聘為教授或顧問。至今,他被聘為中國科學院首批海外評審專家和國家自然基金委海外評委,還是教育部清華大學“長江學者獎勵計劃”特聘講座教授,北京大學、中國科技大學、中國科學院物理所、華南師范大學客座教授,華南理工大學、哈爾濱工業(yè)大學、西安電子科技大學、北京科技大學兼職教授,還擔任過國內(nèi)多家科技期刊,如國家自然科學基金委主辦期刊《自然科學進展》和中科院《科學通報》等的編委。曾多次作為教育部“春暉計劃”、“聘請世界著名學者項目”的邀請,回國講學訪問。 王中林是個很實在的人,每次回國講學他都希望能踏踏實實做些事情,不喜歡講排場、講形式,他很反感那些回國一路吃吃喝喝,熱衷領導接見類的回國學者。目前他又有兩項新的計劃,一是利用兩年時間專門為國內(nèi)寫一本介紹納米科技的英文本科教材,另外是在今年組織幾個著名海外學者到西部去為中小學生進行科普。他說,科技興國的策略不僅要抓住大學生,還要抓娃娃。除了讓國內(nèi)科技界能把握世界最新科技動態(tài)外,還要調動孩子們對科學的興趣。如果國外物理、化學、生物、自然等領域的知名學者能夠回國用最簡單的語言給孩子們講述最尖端的科技知識,將是最有意義的事情。 男人 生活中的王中林是位至情至性的男人,在他的辦公室里,除了滿屋子的書外,最顯眼的地方掛著的都是愛妻和愛女的照片。每當說起自己的家庭,王中林總無法掩飾滿面甜蜜的笑容。妻子為了支持他的工作,毫無怨言地在家照顧三個孩子,最小的才剛剛兩歲,正是累人的時候。想起這些,總讓王中林心里感到十分愧疚。每天從學;丶,他二話不說,捋起袖子便搶著干活,拖地洗碗、整理花園,他知道妻子十分不易,自己只有拼命利用在家的時候多替她分擔一些。 在孩子眼中,王中林是位很忙很忙,但是也很可愛的父親。雖然間暇時間很少,但是他總抽機會陪孩子們,一到假期,還帶著全家出去度假。王中林還是位讓孩子們驕傲的科學家。有一次,王中林的工作在亞特蘭大當?shù)氐膱蠹埳峡橇,女兒的老師拿著報紙夸她有個好爸爸。女兒自豪得不得了,從此以后,女兒便改名叫王中林“納米爸爸”,在父親節(jié)的時候,給爸爸寫張卡片說他是“納米宇宙中最偉大的納米爸爸”。讓王中林激動不已的是孩子不僅沒有責怪自己,還能十分理解他。 王中林非常懂得生活,他知道如何利用自己的最佳狀態(tài),每天起床后,跑步打球洗澡,清清爽爽地開車去學校,精神抖擻。累了就放下工作休息,等情緒好了,再進實驗室。 剛過不惑之年的王中林非常珍惜時間,但是也知道享受人生,科學是他的夢想,但并非他的全部,他認為一個真正的科學家應該知道如何把人生與科學更和諧地交融,也許這就是他科學人生中的人生科學吧 |
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王中林博士于2000年9月創(chuàng)建了佐治亞理工學院的納米科學和技術中心并擔任該中心主任。王教授已在國際一流刊物上發(fā)表了400篇論文﹐45篇綜述和書章節(jié)文章﹐140篇會議論文﹐8項專利,4本專著和10本編輯書籍。他已被邀請做過300多次學術講演和大會特邀報告。他的學術論文已被引用6000次以上。他成功地組織和擔任過7次學術會議的主席。王教授榮獲了美國顯微鏡學會1999年巴頓獎章﹐佐治亞理工學院2000年杰出研究獎﹐2001年S.T.Li獎金(美化學學會)﹐美國自然科學基金會CAREER基金﹐中國首批國家自然科學基金會海外優(yōu)秀青年科學家基金,中國科學院海外杰出學者基金獲得者,中國科學院海外專家顧問團成員和國家自然基金委海外評委,國家自然科學進步獎評委。他是國家納米科學中心海外主任,教育部清華大學“長江”特聘講座教授。他是科學院化學所名譽教授, 中山大學名譽教授,北京大學客座教授﹐北京大學籌建工學院專家小組成員,浙江大學客座教授﹐華南理工大學客座教授,哈爾儐工業(yè)大學客座教授,廈門大學客座教授,中國科學院國際量子中心海外中心成員﹐北京科技大學客座教授,以及10多種期刊和雜志的編委和編輯。王中林博士被多次邀請參加國內(nèi)科學和技術發(fā)展方向及領域研討和評審會。王教授因其對“納米技術領域的材料科學以及基礎發(fā)展做出的杰出及持續(xù)的貢獻”,2002年新當選為歐洲科學院院士(European Academy of Scienecs, www.eurasc.org ),2004年當選為世界創(chuàng)新基金會院士(World Innovation Foundation, www.thewif.org.uk)。法國居里夫人大學和法國聯(lián)合大學(L'Institut Universitaire de France (IUF))于2003年5月7日,以王教授個人的名譽舉行了專題納米科技研討會(a symposium in the honor of Prof. Wang)。王教授是從1992到2002十年中納米科技論文引用次數(shù)世界個人排名前25位作者之一. Institute of Scientific Information (ISI) 2003年發(fā)表的世界納米科技論進展總評中作為兩個重點報道之一報道了王教授納米帶的研究進展。2004年《科學》(Science 304 (2004) 1282)把王教授作為在美國任教的外國人成功的典型進行了專訪和報道。目前,王教授正在大力推行北京大學-佐治亞理工學院聯(lián)合工學院的辦學和組建,他是佐治亞理工學院和北京大學聯(lián)合辦學的美方在北京的執(zhí)行主任。王中林博士是國內(nèi)外知名學者。他的第一本專著《Elastic and Inelastic Scattering in Electron Diffraction and Imaging》(Plenum Press, New York, 1995)被American Scientists評論為“具有卓越成就和極其價值的經(jīng)典之作”。他1996年由劍橋大學出版社發(fā)行的《Reflection Electron Microscopy and Spectroscopy for Surface Analysis》被英國 Analysis雜志和美國材料學會會刊評論為“反射電子顯微學唯一的和必讀教材”。他1998年和康振川博士合著的《Functional and Smart Materials》被 Science 和 Physics Today 評論為“有關智能材料唯一的和最前沿的書籍”。他主編的《Handbook of Nanophase and Nanostructured Materials》已由清華大學出版社和美國Kluwer公司聯(lián)合出版。王中林博士和他的同事1998年在Science上關于發(fā)現(xiàn)納米碳管量子導電效應的文章被12 家專業(yè)學會會刊和報社作為重大科技發(fā)現(xiàn)轉載。他們1999年的Science文章報道了世界上最小的可以稱單個病毒 質量的“納米秤”﹐已引起國際媒體的極大關注。他帶領的小組在Science上報道了半導體氧化物納米帶結構的發(fā)現(xiàn)和合成﹐為納米級傳感和敏感器以及光電器件打下基礎。這一最新成果引起了納米界的巨大反響﹐被許多媒體 如USA Today, Science News, Nanotech Alert, Chemical and Engineering News等評論為納米材料領域一重大突破。該文章是2002-2003年全世界化學界引用次數(shù)最多的論文。這一重大發(fā)現(xiàn)被德國的法蘭富克報紙評論為可以和發(fā)現(xiàn)碳納米管的意義可以比擬。他們最近研制的利用納米帶做成的應用于掃描探針技術中的納米懸臂梁被《自 然》雜志以新聞登出(Nature, 423 (2003) 134)。 王教授領導的小組發(fā)明的低溫無催化制氫技術被《Business Week》周刊在2003年6月30日作為近期可投資項目而醒目刊出。2004年,王中林領導的研究小組在世界上首次得到具有壓電效應的半導體納米環(huán)結構。這種新型納米帶可以應用于微/納米機電系統(tǒng),納米級傳感器, 生物細胞探測, 是實現(xiàn)納米尺度上機電耦合的關鍵結構。這一重大研究成果發(fā)表在2月27日的美國《科學》周刊上。該研究成果是繼王中林2001年首次發(fā)現(xiàn)半導體納米帶結構后又一重大原創(chuàng)突破性成果。他目前的研究主要集中在納米材料﹐智能材料以及電子顯微學的基礎理論和新實驗方法上。 |








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