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kqy920至尊木虫 (著名写手)
小木虫驻伟人故里办主任
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[交流]
【有奖调查】纳米名人堂--说出你心目中的纳米名人!
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写在前面的话: 在纳米这个领域学习了几年,觉得自己对这个方面了解得太少,太肤浅。老早就有一个想法,想在自己房间的墙壁上贴上世界纳米界名人简介,以此激励自己朝更高的方向努力。一直没有实现,在这里,希望大家看到帖子后,能坐下来,静下心仔细的回味一下,曾经经常出现在你脑海中的,你熟悉的纳米名人,把他们的名字和在纳米领域里的贡献写在这里。不管是国内的,还是国外的;不管你是从书本论文上看到的,还是有亲身接触的,说出你熟悉了解的,并且你认为是鼎鼎大名的纳米名人吧。 慢慢的,我们也许可以拼凑出一份《世界纳米名人堂》来,用以励志。也可以为新人们长点见识吧! 最后让我们来投票,选出我们所认可的五十位纳米界最受欢迎的名人吧! 欢迎各位踊跃参与,介绍越详细越好,奖励当然也越多了! PS:本人版主还在试用期,所以请各位多多给点人气哈! 声明:请大家整理编辑后再贴上,不要太罗索,不要直接从网上copy! 格式,请参考如下: —————————————————————————————————————————————————————— 【姓 名】:王中林 【研究方向】:半导体纳米材料、纳米生物技术 【个人简历】:王中林﹐男﹐1961年出生﹐1982毕业于西北电讯工程学院(现名西安电子科技大学)﹐并于同一年考取中美联合招收的物理研究生(CUSPEA)。 1987 年获亚利桑那州立大学物理学博士。从 1987 到 1994﹐他曾在纽约州立大学石溪分校﹐英国剑桥大学开文迪许实验室﹐美国橡树岭国家实验室﹐和美国国家标准和技术定量局从事过研究工作。王博士 1995 年被佐治亚理工学院(Georgia Institute of Technology)聘为副教授和电子显微镜实验室主任﹐于1999年提前晋升为该校终身制正教授, 并于2004年晋升为佐治亚理工学院最年轻的终身校董事教授 (Regents’ Professor), 2006年晋升为佐治亚理工学院工学院第一位杰出讲席教授(College of Engineering Distinguished Professor)。他于2000年九月创建了佐治亚理工学院的纳米科学和技术中心并担任该中心主任。自从1992年来,他积极开展和中国科学院和高校的科研合作。近两年来,他主要竭力推动佐治亚理工学院和北京大学的联合办学,以及国家纳米科学中心的建设工作,并为此做出不懈的努力。 王教授是国内外知名学者。他的第一本专着《Elastic and Inelastic Scattering in Electron Diffraction and Imaging》(Plenum Press, New York, 1995) 被American Scientists评论为“具有卓越成就和极其价值的经典之作”。他 1996 年由剑桥大学出版社发行的《Reflection Electron Microscopy and Spectroscopy for Surface Analysis》被英国 Analysis杂志和美国材料学会会刊评论为“反射电子显微学唯一的和必读教材”。他 1998 年和康振川博士合着的《Functional and Smart Materials》被 Science 和 Physics Today 评论为“有关智能材料唯一的和最前沿的书籍”。王博士和他的同事 1998 年在Science上关于发现纳米碳管量子导电效应的文章被12家专业学会会刊和报社作为重大科技发现转载。他们1999年的Science文章报道了世界上最小的可以称单个病毒质量的“纳米秤”。他带领的小组在Science上报道了半导体氧化物纳米带结构的发现和合成﹐为纳米级传感和敏感器以及光电器件打下基础。这一最新成果引起了纳米界的巨大反响﹐被许多媒体如USA Today, Science News, Nanotech Alert, Chemical and Engineering News等评论为纳米材料领域一重大突破。该文章是2002-2003年全世界化学界引用次数最多的论文,目前已被引用1100次。这一重大发现被德国的法兰富克报纸评论为可以和发现碳纳米管的意义可以比拟。他们研制的利用纳米带做成的应用于扫描探针技术中的纳米悬臂梁被《自然》杂志以新闻登出(Nature, 423 (2003) 134). 王教授领导的小组发明的低温无催化制氢技术被《Business Week》周刊在2003年六月三十日作为近期可投资项目而醒目刊出。2004和2005年,王中林领导的研究小组在世界上首次得到具有压电效应的半导体纳米环和纳米螺旋结构. 这种新型纳米带可以应用于微/纳米机电系统,纳米级传感器, 生物细胞探测, 是实现纳米尺度上机电耦合的关键结构。2006年,他首次发明了纳米发电机,该研究不但开辟了一纳米科技的暂新领域,同时为利用人体内的机戒能,流体能和振动能来发电,从而带动微型系统和器件来进行无线和自驱动的生物探测。该技术也在携带式民用和军用设备上有重要的应用前景。这些重大研究成果都发表在美国《科学》周刊上。该研究成果是继王中林2001年首次发现半导体纳米带结构后又几重大原创突破性成果。他个人也被亚特兰大最权威的报纸《Atlanta Journal of Constitution》和《Atlanta Business Chronical》,《R&D Magazine》, CNN 有线电视台等进行过个人专题报道. 他目前的研究主要集中在纳米技术和纳米生物技术。 【联系方式】:Dr. Zhong Lin (ZL) Wang Georgia Institute of Technology Materials Science and Engineering 771 Ferst Drive, N.W. Atlanta, GA 30332-0245 Office: Room 163, Love Manufacturing Building Phone: 404-894-8008, Fax: 404-894-9140 Email: zhong.wang@mse.gatech.edu ———————————————————————————————————————————————— [ Last edited by memser on 2009-1-13 at 20:57 ] |
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yulinpu
木虫 (小有名气)
老二
- 应助: 0 (幼儿园)
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- 性别: GG
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kqy920(金币+5):谢谢你的参与!
kqy920(金币+5):谢谢你的参与!
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【姓名】彭笑刚博士 【研究领域】半导体 量子点 【个人简介】彭笑刚博士简介:1992年获吉林大学博士学位;1994年-1996年在美国加州大学伯克利分校从事博士后研究;1996-1999年在加州大学伯克利Lawrence国家实验室工作;1999年进入美国阿肯色大学,2005年被提升为教授。他的研究小组主要从事胶状纳米晶体的化学特性与应用、新一代太阳能电池研究、无机纳米晶体材料的成长机制、应用胶状纳米晶体的生物传感器等方面的研究。2000年以来,彭博士在Nature,Physical Review等顶级刊物上发表高水平论文50多篇,是纳米研究领域的杰出科学家。 【联系方式】CHEM 245 Phone: 479-575-4612 FAX: 479-575-4049 xpeng@uark.edu Publications/Presentations: Publications after 2000 【论文】 1. “Efficient and Color-Tunable Mn-Doped ZnSe Nanocrystal Emitters: Control of Optical Performance via Greener Synthetic Chemistry”, Pradhan, Narayan; Peng, Xiaogang, J. Am. Chem. Soc. 2007, ASAP. 2. “Interparticle Influence on Size/Size Distribution Evolution of Nanocrystals” Thessing, Jason; Qian, Jianghong; Chen, Haiyan; Pradhan, Narayan; Peng, Xiaogang, J. Am. Chem. Soc. , 2007, ASAP. 3. “Efficient, Stable, Small, and Water-Soluble Doped ZnSe Nanocrystal Emitters as Non-Cadmium Biomedical Labels”, Nano Letter, 2007, vol 7, 312-317. 4. “University spin-offs: Opportunity or challenge?”, Peng, Xiaogang, Nature Materials (2006), 5(12), 923-925 5. "Initialization and read-out of spins in coupled core-shell quantum dots”, Berezovsky, J.; Gywat, O.; Meier, F.; Battaglia, D.; Peng, X.; Awschalom, D. D. Nature Physics (2006), 2(12), 831-834 6. “Crystalline nanoflowers with different chemical compositions and physical properties grown by limited ligand protection”, Narayanaswamy, Arun; Xu, Huifang; Pradhan, Narayan; Peng, Xiaogang, Angewandte Chemie, International Edition (2006), 45(32), 5361-5364. (Cover and VIP paper) 7. “Formation of Nearly Monodisperse In2O3 Nanodots and Oriented-Attached Nanoflowers: Hydrolysis and Alcoholysis vs Pyrolysis”, Narayanaswamy, Arun; Xu, Huifang; Pradhan, Narayan; Kim, Myeongseob; Peng, Xiaogang, J. Am. Chem. Soc. (2006), 128(31), 10310-10319. 8. "Colloidal CdSe Quantum Wires by Oriented Attachment”, Pradhan, Narayan; Xu, Huifang; Peng, Xiaogang, Nano Letters, 2006, 6, 720-724. 9. “Modelling the formation of high aspect CdSe quantum wires: axial-growth versus oriented-attachment mechanisms”, Barnard, Amanda S.; Xu, Huifang; Li, Xiaochun; Pradhan, Narayan; Peng, Xiaogang; Nanotechnology, 2006, vol 17, 5707-5714 10. “An Alternative of CdSe Nanocrystal Emitters: Pure and Tunable Impurity Emissions in ZnSe Nanocrystals”, Pradhan, N.; Goorskey, D.; Thessing, J.; Peng, X., Am. Chem. Soc., 2005, 127, 17586-17587 (highlighted in Science as “Editor’s Choice”) 11. “Side Reactions in Controlling the Quality, Yield, and Stability of High Quality Colloidal Nanocrystals”, Chen. Y.; Kim, M.; Lian, G.; Johnson, M. B.; Peng, X. J. Am. Chem. Soc., 2005, 127(38), 13331-13337. 12. “Coupled and Decoupled Dual Quantum Systems in a Semiconductor Nanocrystal”, D. Battaglia, N. Mallette, X. Peng, J. Am. Chem. Soc., 2005, vol 127, p 10889-10897. 13. “Size Dependent Dissociation pH of Thiol-coated Cadmium Chalcogenides Nanocrystals”, J. Aldana, N. Mallette, X. Peng, J. Am. Chem. Soc., 2005, 127(8), 2496-2504. 14. “Bioreactive Surfaces Prepared via the Self-Assembly of Dendron Thiols and Subsequent Dendrimer Bridging Reactions,” Yang M., Tsang E.M.W., Wang Y.A., Peng X., Langmuir, (2005), 21(5), 1858-1865 15. “Spin Dynamics and Level Structure of Quantum-dot Quantum Wells,”Berezovsky, Jesse; Ouyang, Min; Meier, Florian; Awschalom, David D.; Battaglia, David; Peng, Xiaogang. Physical Review B: (2005), 71(8), 081309/1-081309/4 16. “Exciton radiative recombination in spherical CdS/CdSe/CdS Quantum-well Nanostructures,” Xu, J., Xioa, M., Battaglia, D., Peng, X., Appl. Phys. Lett., (2005), 87(4), 043107/1-043107/3. 8. “Super-stable, High-quality Fe3O4 Dendron-nanocrystals Dispersible in Both Organic and Aqueous Solutions,” Kim, M., Chen, Y., Liu, Y., Peng, X., Adv. Mater., (2005), 17(11), 1429-1432. 17. “Photoluminescence from Colloidal CdS-CdSe-CdS Quantum Wells,” Xu, J., Battaglia, D., Peng, X., Xiao, M., J. of the Opticla Soc. Of Am. B: Optical Physics, (2005), 22(5), 1112-1116. 18. “High Quality ZnSe and ZnS Nanocrystals Formed by Activating Zinc Carboxylate Precursors”, L. Li, N. Pradhan, Y. Wang, X. Peng, Nano Lett., vol 4, 2261-2264 19. “Size- and Shape-Controlled Magnetic (Cr, Mn, Fe, Co, Ni) Oxide Nanocrystals via a Simple and General Approach”, N. Jana, Y. Chen, X. Peng, Chem. Mater. 2004, vol 20, p. 3931-3935 20. “Environmental Effects on Photoluminescence of Highly Luminescent CdSe and CdSe/ZnS Core/Shell Nanocrystals in Polymer Thin Films” A. Nazzal, X. Wang, L. Qu, W. Yu, Y. Wang, X. Peng, M. Xiao, J. Phys. Chem., 2004, vol 108, p 5507 21. “In Situ Observation of the Nucleation and Growth of CdSe Nanocrystals”, L. Qu, W. Yu, X. Peng, Nano Lett., 2004, vol 4, p5507 22. "Photocatalytic activity of gold nanocrystals and its role in determining the stability of surface thiol monolayers”, J. J. Li, X. Peng, J. Nanoscience & Nanotechnology, 2004, vol 6, p. 565-568. (invited) 23. “Single-Phase and Gram-Scale Synthesis of Au and Other Noble Metal Nanocrystals”, N. R. Jana, X. Peng, J. Am. Chem. Soc., 2003, vol 125, p 14280. 24. “Colloidal Two-Dimensional Systems, CdSe Quantum Shells and Wells”, D. Battaglia, J. J. Li, Y. Wang, X. Peng, Angew. Chem. Int. Ed., 2003, vol 43, p 5035. 25. “Large-Scale Synthesis of Nearly Monodisperse CdSe/CdS Core/Shell Nanocrystals Using Air-Stable Reagents via Successive Ion Layer Adsorption and Reaction.” J. Li, Y. A. Wang, W. Guo, J. C. Keay, T. D. Mishima, M. B. Johnson, X. Peng. J. Am. Chem. Soc., 2003, vol 125, p 12567. 26. “Luminescent CdSe/CdS Core/Shell Nanocrystals in Dendron Boxes: Superior Chemical, Photochemical and Thermal Stability”, W. Guo, J. Li, Y. A. Wang, X. Peng, J. Am. Chem. Soc., 2003, vol 125, p 3901 (highlighted as a “heart cut item” in the ACS website) 27. “Photoluminescence upconversion in colloidal CdTe quantum dots”, X. Wang, W. Yu, J. Zhang, J. Aldana, X. Peng, M. Xiao, Phys. Rev. B: 2003, vol 68, p 125318. 28. 1 “Formation and Stability of Size-, Shape-, and Structure-Controlled CdTe Nanocrystals: Ligand Effects on Monomers and Nanocrystals”, W. W. Yu, Y. A. Wang, X. Peng, Chem. Mater. 2003, p 4300. 29. “Photon-Activated CdSe Nanocrystal Nanosensors for Gases”, A. Nazzal, L. Qu, M. Xiao, X. Peng, Nano letters, 2003, vol 3, p 819 30. “Nanocrystal in dendron-box: a versatile solution to the chemical, photochemical, and thermal instability of colloidal nanocrystals” Comptes Rendus Chimie, 2003, p 989. (invited) 31. “Mechanisms of Shape Control and Shape Evolution of Colloidal Nanocrystals”, Peng, x., Adv. Mater., 2003, vol 15, p 459. (invited) 32. “Evaluation of nonlinear optical properties of cadmium chalcogenide nanomaterials”, Ceo, J. T.; Yang, Q.; Creekmore, S.; Temple, D.; Qu, L.; Yu, W.; Wang, A.; Peng, X.; Mott, A.; Namkung, M.; Jung, S. S.; Kim, J. H. Physica E: 2003, vol 17, p 101. 33. “Experimental determination of the size Dependent Extinction Coefficients of High Quality CdTe, CdSe and CdS nanocrystals”, W. Yu, L. Qu, W. Guo, X. Peng, Chem. Mater., 2003, vol 15, p 2845. 34. “Conjugation Chemistry and Bio-Applications of Semiconductor Box-Nanocrystals Prepared via Dendrimer-Bridging” W. Guo, J. Li, Y. A. Wang, X. Peng, Chem. Mater., 2003, vol 15, p 3125. 35. "Surface-related emission in highly-luminescent CdSe quantum dots”, Wang, X.; Qu, L.; Zhang, J.; Peng, X.; and Xiao, M., Nano Letters, 2003, vol 3, p 1103. 36. “Formation of High Quality CdS and Other II-VI Semiconductor Nanocrystals in Non-Coordinating Solvent, Tunable Reactivity of Monomers”, Yu W., Peng X., Angew. Chem. Int. Ed., 2002, vol 41, p 2368 (Announced as a “hot paper” by the journal) 39. “Green Chemical Approaches toward High Quality Semiconductor Nanocrystals”, Peng X., Chem. Eu. J., 2002, vol 8, p 334 (invited concept article). 38. "Control of Photoluminescence Properties of CdSe Nanocrystals in Growth", Qu L., Peng, X., J. Am. Chem. Soc., 2002, vol 124, p 2049. 39. “Stabilize Inorganic Nanocrystals by Organic Dendrons”, Wang, Y. A., Li, J. J., Chen, H., Peng, X., J. Am. Chem. Soc., 2002, vol 124, p 2293. 40. “Nearly Monodisperse and Shape-Controlled CdSe Nanocrystals via Alternative Routes: Nucleation and Growth” Peng, Z.; Peng, X., J. Am. Chem. Soc., 2002, vol 124, p 3343. 41. “Formation of High Quality InP and InAs Nanocrystals in a Non-Coordinating Solvent”, D. Battaglia, Peng, X., Nanolett., 2002, vol 2, p1027 42. “Lattice contraction in free-standing CdSe nanocrystals”, J. Zhang, X. Wang, Min Xiao, L. Qu and X. Peng, Appl. Phys. Lett., 2002 vol 81, p 2076 43. “Future directions in solid state chemistry: report of the NSF-sponsored workshop”, Cava, Robert J.; et al., Progress in Solid State Chem., 2002, vol 30, p 1. 44. “Photoluminescence from single CdSe quantum rods”, Chen, X.; Nazzal, Amjad Y.; Xiao, Min; Peng, Z. Adam; Peng, Xiaogang, J. Luminescence 2002, vol 97, p 205 45. “Synthesis of High Quality Cadmium Chalcogenides Semiconductor Nanocrystals Using CdO as precursor”, Peng Z. A., Peng X., J. Am. Chem. Soc., 2001, vol 123, p 168. (highlighted in C&En News) 46. “Mechanisms of the Shape Evolution of CdSe Nanocrystals”, Peng Z. A., Peng X., J. Am. Chem. Soc., 2001, vol 123, p 1389. 47. " Photochemical Instability of CdSe Nanocrystals Coated by Hydrophilic Thiols”, Aldana J., Wang, Y. A., Peng, X., J. Am. Chem. Soc., 2001, 123, p 8844. 48. “Alternative Routes toward High Quality CdSe Nanocrystals”, Qu, L., Peng Z. A., Peng X., Nano Lett., 2001, vol 1, p 333. 49.“Polarization Spectroscopy of Single CdSe Quantum Rods”, X. Chen, A. Nazzal, D. Goorskey and M. Xiao, Z. A. Peng and X. Peng, Phys. Rev. B., 2001, vol 64, p 245304. 50. “Spin spectroscopy of dark excitons in CdSe quantum dots to 60 T”, Johnston-Halperin, E.; Awschalom, D. D.; Crooker, S. A.; Efros, Al. L.; Rosen, M.; Peng, X.; Alivisatos, A. P., Phys. Rev. B, 2001, vol 63, p 205309/1 51. "Shape control of CdSe nanocrystals: from dots to rods and back”, Peng X., Mann L., Wickham J., Kadvanish A., Alivisatos A. P., Nature, 2000, vol 404, p 59 |

8楼2008-12-15 15:36:57
lssabc.hap
铜虫 (著名写手)
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- 性别: MM
- 专业: 材料物理化学
2楼2008-12-15 12:25:31
★ ★ ★ ★ ★
kqy920(金币+5):谢谢W兄参与,请按参考格式规范一下吧!
kqy920(金币+5):谢谢W兄参与,请按参考格式规范一下吧!
| 齐利民,北京大学化学与分子工程学院教授,博士生导师。1969年生,1990、1993、1998年分别在北京大学获得学士、硕士和博士学位;1998-2000 在德国马普胶体与界面研究所从事博士后研究;2000.9 回北京大学任教至今。现任北京大学化学学院物理化学研究所副所长,中国化学会胶体与界面化学专业委员会委员,《科学通报》特邀编辑,《中国化学》编委,《Advanced Functional Materials》顾问编委(Advisory Board Member)。2000年获全国优秀博士学位论文奖,2003年获得国家杰出青年科学基金,同年获中国化学会青年化学奖,2004年获第九届霍英东基金会高校青年教师奖(研究类)一等奖,2006年获北京市“五四”奖章。主要从事有关胶体与界面化学、仿生材料化学、纳米材料合成与组装等方面的研究工作。近年来的研究工作主要集中在形貌可控的无机微纳结构的溶液法合成与组装等方面。迄今共发表学术论文90余篇,其中在J. Am. Chem. Soc.、Angew. Chem.、Adv. Mater.等影响因子3.0以上的学术刊物发表论文50余篇,所发表文章累计被他人引用逾2400次。 |

3楼2008-12-15 14:26:29
xiaolu9898
木虫 (正式写手)
资深泡菜
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★ ★ ★ ★
kqy920(金币+4):谢谢你的参与!
kqy920(金币+4):谢谢你的参与!
|
【姓 名】:Charles M. Lieber教授 【研究方向】 Imaging and Spectroscopy: Carbon Nanotube Probes Nanotribology Force Spectroscopy Structural Biology and Biophysics 【简介】 Chemistry and physics of materials with an emphasis on low-dimensional and nanoscale materials. Rational synthesis of new nanoscale materials, nanostructured solids;development of methodologies for hierarchical assembly of nanoscale materials into complex and functional systems; investigation of fundamental electronic, optical and optoelectronic properties of nanoscale materials; design and development of nanoelectronics and nanophotonic systems, with emphasis on electrically-based biological detection, digital and quantum computing, and photonic systems. Charles M. Lieber Professor Department of Chemistry and Chemical Biology Harvard University 12 Oxford Street, Cambridge, MA 02138 E-mail: liebersec@cmliris.harvard.edu Nanoscale and Low-Dimensional Materials Synthesis of one-dimetional structures Nanofabrication Electrical Transport |
4楼2008-12-15 14:38:06







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