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isoglucose

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Prof. Yoshio BANDO

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memser(½ð±Ò+2,VIP+0):¸ÐлÌṩÐÅÏ¢£¬×îºÃÄܱ༭һÏ£¬Õâ¸öÎұ༭ºÃÁË£¡ 2-17 20:19
memser(½ð±Ò+3,VIP+0):¸ÐлÌṩºóÐÅÏ¢£¬Ð»Ð»£º£© 2-18 16:38
[LABORATORY/RESEARCH GROUP/DEPARTMENT]:
National Institute for Materials Science (NIMS)
International Center for Young Scientists (ICYS), NIMS
Graduate School of Pure and Applied Science, Materials Science and¡¡Engineering,¡¡University of Tsukuba

[LEADER/RESEARCHER]:
Yoshio BANDO
Phone: +81-29-860-4426
Fax    : +81-29-860-4706
E-mail BANDO.Yoshio@nims.go.jp

[RESEARCH INTERESTS/CURRENT PROJECTS]:
Synthesis and Characterization of Novel Nanotubes, Micro-structural Analysis Using Analytical Electron Microscope

[ Last edited by memser on 2009-2-17 at 20:19 ]
31Â¥2009-02-17 13:24:07
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gujm018

Ìú¸Ëľ³æ (ÖøÃûдÊÖ)

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memser(½ð±Ò+0,VIP+0):Óµ»¤Ò²ÒªÄóöʵ¼ÊÐж¯Å¶£º£©»¶Ó­ÌṩÐÅÏ¢£¡Ð»Ð» 2-18 22:12
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32Â¥2009-02-18 09:03:18
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frankeying

½ð³æ (СÓÐÃûÆø)

memser(½ð±Ò+0,VIP+0):ºÃÌûÐèÒª´ó¼ÒµÄÖ§³Ö£¬Ï£ÍûÄܹ»ÌṩÐÅÏ¢£¬Ð»Ð»£¡ 2-18 22:12
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33Â¥2009-02-18 09:11:46
ÒÑÔÄ   »Ø¸´´ËÂ¥   ¹Ø×¢TA ¸øTA·¢ÏûÏ¢ ËÍTAºì»¨ TAµÄ»ØÌû

liunahan

ľ³æÖ®Íõ (ÎÄѧ̩¶·)

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memser(½ð±Ò+7,VIP+0):¸ÐлÌṩºóÐÅÏ¢£¬Ð»Ð»£º£© 2-18 16:37
Charles M. Lieber


[LABORATORY/RESEARCH GROUP/DEPARTMENT]:
Harvard University, 12 Oxford Street, Cambridge, MA 02138
Ph: 617-496-3169, Fx: 617-496-5442, Email: cmlATcmlirisDOTharvardDOTedu
http://cmliris.harvard.edu/

[LEADER/RESEARCHER]:
     Lieber½ÌÊÚÊǹú¼ÊÖøÃû»¯Ñ§¼Ò¡¢ÃÀ¹ú¹þ·ð´óѧǰ»¯Ñ§ÏµÖ÷ÈΡ¢ÃÀ¹úÒÕÊõ¿ÆÑ§ÔºÔºÊ¿£¬ÃÀ¹ú¹ú¼Ò¿ÆÑ§ÔºÔºÊ¿¡£Lieber½ÌÊÚÏȺ󹫿ª·¢±í¸ßˮƽÂÛÎÄ200ÓàÆª£¬ÆäÖнü10ÄêÀ´ÔÚNature¡¢ScienceÔÓÖ¾·¢±íÁË40ÓàÆªÄÉÃ×Ñо¿ÂÛÎÄ£¬±»¹ú¼ÊѧÕ߯ձ鹫ÈÏΪÊÇÄÉÃ׿Ƽ¼ÁìÓòµÄ¿ª´´ÕßÖ®Ò»¡£
¡¡¡¡Lieber½ÌÊÚÔø»ñ2004ÄêÃÀ¹ú»¯Ñ§»á²ÄÁÏ»¯Ñ§½±£¨ACS Award in the Chemistry of Materials£©¡¢2003ÄêÊÀ½ç¿Æ¼¼²ÄÁϽ±£¨World Technology Award in Materials£©¡¢ 2003ÄêÃÀ¹úÎïÀíѧ»áMcGroddy½±£¨APS McGroddy Prize for New Materials£©¡¢2001ÄêÄÉÃ×¼¼ÊõFeynman½±(Feynman Award in Nanotechnology)µÈÖڶཱÏî¡£
LieberÏÖÈιþ·ð´óѧ½ÌÊÚ£¬ÊôÃÀ¹ú»¯Ñ§Ñ§»á¡¢ÃÀ¹úÎïÀíѧ»á¡¢ÃÀ¹úÏȽø¿ÆÑ§Ð­»á¡¢²ÄÁÏÑо¿Ñ§»á»áÔ±£¬µ£Èζà¸ö¹ú¼ÊÖøÃû¿¯ÎïµÄÖ÷±à¡¢¸±Ö÷±à»òÕß±àί¡£

[RESEARCH INTERESTS/CURRENT PROJECTS]:

The Lieber group is focused broadly on science and technology at the nanoscale. Central to the vision underlying this work is the idea that by developing and following a common intellectual path ¨C a bottom-up paradigm for nanoscale science and technology ¨C it will be possible to assemble virtually any kind of device or functional system, ranging from ultra-sensitive medical sensors to powerful nanocomputers, and also to explore new areas of science that exist, for example, at the interface between biology and nanotechnology.
We are committed to realizing this intellectual vision through studies currently focused on five major areas: (1) synthesis and characterization of novel nanoscale building blocks or materials, (2) elucidation of fundamental physical properties of the nanoscale building blocks, (3) hierarchical organization and interconnection of nanoscale building blocks in two and three dimensions, (4) design and demonstration of functional nanoscale devices and integrated nanosystems, and (5) exploration of the interface/communication between biological systems and nanoscale devices. This research by definition is highly interdisciplinary. Group members utilize and develop concepts and techniques from biology, chemistry, physics and the engineering sciences to achieve our goals.
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[ Last edited by memser on 2009-2-18 at 17:40 ]
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34Â¥2009-02-18 16:33:57
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memser

[LABORATORY/RESEARCH GROUP/DEPARTMENT]:
MicroSystems and BioMEMS Lab at the University of Cincinnati

[LEADER/RESEARCHER]:
Chong H. Ahn

[RESEARCH INTERESTS/CURRENT PROJECTS]:
Point-of-Care Testing (POCT)
Environmental Monitoring
Nanotechnology  
Microfluidics Devices & Systems
Magnetic MEMS-Actuators/Sensors
Disposable BioChips / BioMEMS
Disposable Plastic Biochips for Clinical Diagnostics
Plastic Materials & Micromachining  
Optical MEMSIntegrated Microsystems
ÕæÊÇʲô·½Ïò¶¼¸ã°¡¡«¡«¡«
35Â¥2009-02-18 17:38:59
ÒÑÔÄ   »Ø¸´´ËÂ¥   ¹Ø×¢TA ¸øTA·¢ÏûÏ¢ ËÍTAºì»¨ TAµÄ»ØÌû

hubeiww

ľ³æ (ÖøÃûдÊÖ)

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memser(½ð±Ò+6,VIP+0):¸ÐлÌṩÐÅÏ¢£¬ÎÒÉÔ΢±à¼­ÁËһϣ¬Ð»Ð»£º£© 2-18 22:08
[LABORATORY/RESEARCH GROUP/DEPARTMENT]:
Max Planck Institute for Solid State Research
http://www.fkf.mpg.de/start.html

[LEADER/RESEARCHER]:
ÿ¸ö·½Ïò¶¼ÓÐ×Ô¼ºµÄleader£¬¾ø¶ÔµÄ´ó×é

[RESEARCH INTERESTS/CURRENT PROJECTS]:
Main Research

Chemistry


Abteilung Jansen:   preparative solid state chemistry; development of modern materials; optical, electrical and magnetic properties; optimizing the syntheses; sol-gel-process; electrochemical reactions; spectroscopy; fullerenes; non-metal oxides and nitrides; superconducting oxides; ionic conductors; structural oxide-ceramics
Abteilung Maier:   physical chemistry of the solid state and electrochemistry; chemical thermodynamics; kinetics; transport; defect chemistry; inhomogeneous systems; ionic distribution at grain boundaries; interfaces; sensors, fuel cells; semiconductors; high-temperature superconductors; ionic conductors
Abteilung Simon:   structure, chemical bonding and properties; metal-rich compounds; magnetism and superconductivity; transport; crystal structure; magnetic susceptibility; diffractometry with X-rays and neutrons; high-temperature superconductors; transition metal clusters; rare-earth compounds
  

     Physics



Abteilung Keimer:   structure and dynamics of highly correlated electronic materials, magnetic and electronic properties; spin dynamics; quantum systems; metal-insulator transition; X-ray; synchrotron; neutrons; Raman scattering; perovskite structures; high-temperature superconductors
Abteilung Kern:   nanoscience and nanotechnology; surfaces and interfaces; self-organisation phenomena and epitaxial growth; fabrication and characterization of metal, semiconductor and molecular nanostructures; molecular electronics; carbon nanotubes; clusters and nanocrystals; interactions and processes on the atomic and molecular scale; scanning probe microscopy and spectroscopy; nanooptics
Abteilung v. Klitzing:   magnetic and electronic effects in low dimensional systems; electronic properties of heterostructures; quantum phenomena; transport and optical measurements; electron-phonon-interaction; coupled two- and zero-dimensional electronic systems; interfaces; single electron effects; semiconductors, nanotubes, Fullerenes, Au-cluster, polymers

     Theory



Abteilung Andersen:   electronic and band structure calculations; density-functional calculations; Quantum Monte Carlo methods; single-electron theory; chemical bonding and spectroscopy; electron-phonon-interaction; semiconductors; transition metal oxides; Fullerenes; high-temperature superconductors
Abteilung Metzner:   electronic correlations in solids; many-body theory; dynamical mean-field theory; renormalization group; electron-phonon interaction; magnetism; superconductivity; transition metal oxides; high temperature superconductors; low dimensional and mesoscopic systems

[ Last edited by dgf2008 on 2009-4-5 at 23:09 ]
36Â¥2009-02-18 21:55:04
ÒÑÔÄ   »Ø¸´´ËÂ¥   ¹Ø×¢TA ¸øTA·¢ÏûÏ¢ ËÍTAºì»¨ TAµÄ»ØÌû

jackitaly

½ð³æ (ÕýʽдÊÖ)

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memser(½ð±Ò+6,VIP+0):¸ÐлÌṩÐÅÏ¢£¬»¶Ó­³£À´ÄÉÃ×°æÌÖÂÛ½»Á÷£¡ 2-19 00:05
[LABORATORY/RESEARCH GROUP/DEPARTMENT]:
biophysics & Micro/nanostructures laboratory

¸ü¶àÐÅÏ¢¿ÉÒÔä¯ÀÀ¸ÃgroupµÄÍøÕ¾£ºhttp://www.physics.nus.edu.sg/~interface/New/index.htm

[LEADER/RESEARCHER]:
Professor LIU XIANG-YANG

[RESEARCH INTERESTS/CURRENT PROJECTS]:
Biophysics Biomacro-molecule crystallization, self-assembly and aggregation in the bulk and at the surface; Antifreeze mechanism and antifreeze protein; Biomineralization mechanism and tissue engineering; Silk formation mechanism and engineering.

Micro/Nano Structure formation and engineering: Supramolecular self-assembly and micro/nano architecture; Microemulsion crystallization and nanomaterials preparation; Micro/nano particle self assembly; mesoscopic structures and properties of liquid crystals; Self assembly of colloidal spheres ( Mechanism of colloidal crystallization and self-assembly; Colloidal crystallization and self-assembly under the influence of field gradient; Fabrication of photonic crystals).

Crystallization/molecular assembly and hybrid materials: The surface roughening transition and the structure of crystal-liquid interfaces; the prediction of morphologies (shapes) of crystals, and the design of crystal habit modifiers and/or crystallization inhibitors by surface recognition; nucleation and crystals growth; spherulitic crystallization and crystal network (aggregation) formation.

[ Last edited by memser on 2009-2-20 at 11:23 ]
37Â¥2009-02-18 23:14:32
ÒÑÔÄ   »Ø¸´´ËÂ¥   ¹Ø×¢TA ¸øTA·¢ÏûÏ¢ ËÍTAºì»¨ TAµÄ»ØÌû

memser

[LABORATORY/RESEARCH GROUP/DEPARTMENT]:
SAMLAB, standing for the Sensors, Actuators and Microsystems Laboratory, is part of the Institute of Microtechnology (IMT) of EPFL

[LEADER/RESEARCHER]:
Prof. Nico F. de Rooij

[RESEARCH INTERESTS/CURRENT PROJECTS]:
Bio and chemical MEMS
Nanotools
MEMS for space
Optical MEMS
Micro and Nanofluidics
Energy and Power MEMS
Sensors and Actuators
Process development
38Â¥2009-02-19 17:41:57
ÒÑÔÄ   »Ø¸´´ËÂ¥   ¹Ø×¢TA ¸øTA·¢ÏûÏ¢ ËÍTAºì»¨ TAµÄ»ØÌû

1

39Â¥2009-02-19 20:29:05
ÒÑÔÄ   »Ø¸´´ËÂ¥   ¹Ø×¢TA ¸øTA·¢ÏûÏ¢ ËÍTAºì»¨ TAµÄ»ØÌû

Âíºþ

Ìú³æ (³õÈëÎÄ̳)

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memser(½ð±Ò+6,VIP+0):¸ÐлÌṩÐÅÏ¢£¡ 2-20 11:24
[LABORATORY/RESEARCH GROUP/DEPARTMENT]:
Î÷±±¹¤Òµ´óѧ
΢ÄÉÃ×ʵÑéÊÒ

[LEADER/RESEARCHER]:
ԷΰÕþ

[RESEARCH INTERESTS/CURRENT PROJECTS]:
MEMS CAD
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40Â¥2009-02-20 03:56:33
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