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北京石油化工学院2026年研究生招生接收调剂公告
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long_1102008

木虫 (著名写手)

小木虫驻华代表之觉悟者

★ ★ ★ ★ ★ ★ ★ ★ ★ ★
memser(金币+10,VIP+0):感谢提供信息,并按照格式编写,欢迎常来微纳版~~~ 3-11 15:00
[LABORATORY/RESEARCH GROUP/DEPARTMENT]:
soft chemistry group, Nanoscale Materials Center, National Institute for Materials Science, and Graduate School of Pure and Applied Sciences, University of Tsukuba
http://www.nims.go.jp/softchem/index-e.html
[LEADER/RESEARCHER]:
Takayoshi Sasaki
[RESEARCH INTERESTS/CURRENT PROJECTS]:
The Group conducts on the synthesis of functional nanosheets via the delamination of various layered materials. Furthermore, the nanosheets are assembled or organized into nanostructured systems to develop functional materials with a sophisticated electronic, magnetic or photochemical performance.
不应问生处,宜问其所行,微木能生火,卑贱生贤达
51楼2009-03-11 12:39:41
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belldone

木虫 (著名写手)

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memser(金币+8,VIP+0):感谢提供信息,并按照格式整理出来~~~ 3-11 21:49
[LABORATORY/RESEARCH GROUP/DEPARTMENT]:
Hongjie Dai's research lab at Department of Chemistry ,Stanford University
http://www.stanford.edu/dept/chemistry/faculty/dai/group/

[LEADER/RESEARCHER]:
Hongjie Dai(戴宏杰)

[RESEARCH INTERESTS/CURRENT PROJECTS]:
The research of Dai group interfaces with chemistry, physics, materials science and biophysics. We are interested in solid state and soft condensed materials that have well-defined atomic structures. Ongoing projects include developing new synthetic routes to ordered nanomaterial architectures; electrical, mechanical, electromechanical and electrochemical characterizations at the nanoscale; and probing the real-space structures and functions of biological molecules. Our work are in the areas of material chemistry, inorganic synthesis, solid state physics, electron transport and scanning probe microscopy.

A specific research program involves the development of new synthesis methods to obtain ordered carbon nanotube architectures on surfaces. These novel nanowire architectures are ideal model systems for addressing fundamental physics problems in low dimensions, and for future device applications. Our overall approach involves the combination of inorganic synthesis of mesoporous catalytic materials and chemical vapor deposition with microfabrication techniques. With the synthesized nanowire architectures, we are carrying out electrical and electromechanical measurements of individual nanotube molecular wires, aimed to understand the properties of quasi-one-dimensional solids, elucidating quantum mechanical effects in small systems, and explore their applications in future miniaturized devices.

Another project involves using scanning probe microscopy techniques to probe the structural properties of biological macromolecules, and elucidate the interactions between individual molecular pairs. Our approach involves the development of atomic force microscopy probes that are tipped by individual nanotubes that are as small as ten angstroms in diameter. Such a molecular tip should allow structural imaging of biological systems with unprecedented resolution and sensitivity. We are also interested in electrochemical studies of biological systems using chemically functionalized nanotube electrodes.
52楼2009-03-11 20:23:09
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belldone

木虫 (著名写手)

★ ★ ★ ★ ★ ★ ★ ★
memser(金币+8,VIP+0):感谢提供信息,并按照格式整理出来~~~ 3-11 21:49
[LABORATORY/RESEARCH GROUP/DEPARTMENT]:
Ya-Ping Sun·s research group
Department of Chemistry
469 Howard L. Hunter Laboratory
Clemson University

[LEADER/RESEARCHER]:
Ya-Ping Sun, Ph.D.
Frank Henry Leslie Chair Professor of Natural and Physical Sciences

[RESEARCH INTERESTS/CURRENT PROJECTS]:
Our group research is on the development of nanostructures and nanomaterials for optical, electronic, and biomedically significant applications. The emphases are:

polymeric nanocomposite materials based on carbon nanotubes and semiconductor and metal nanoparticles;
bioactive and biocompatible nanoparticles and their interactions with biological systems; and
dendritic nanostructures.
The group is organized into three subsections:

The first subsection focuses on the synthesis and fabrication of organic and polymeric nanomaterials. Recent and ongoing projects include (1) functionalization and solubilization of carbon nanotubes via various reactions of nanotubes with oligomeric, dendritic, and polymeric species; (2) preparation of bioactive and biocompatible nanoparticles; and (3) development of nanoscale optical probes for biomedical applications.
The second subsection focuses on the preparation and processing of nanoparticles and related materials using supercritical fluid technology. Recent and ongoing projects include (1) preparation of nanoscale semiconductor, metal and other particles using the supercritical fluid processing method RESOLV (Rapid Expansion of Supercritical Solution into Liquid SOLVent); and (2) development of nanocomposites based on nanoscale cavities and templates.
The third subsection focuses on investigations of properties and potential technological applications of nanomaterials. Recent and ongoing projects include (1) development of potent optical limiters for protection against pulsed laser irradiation; (2) development of photocatalysts based on nanoscale semiconductors; (3) optical and electronic properties of functionalized carbon nanotubes in solution; and (4) evaluation and application of nanoscale luminescence probes for bioimaging and other biomedical applications.
53楼2009-03-11 20:29:09
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weihuili1984

银虫 (小有名气)

★ ★ ★ ★ ★ ★ ★ ★
memser(金币+8,VIP+0):第二个发错了吧,把那层楼给弄坏了,没关系,到时候我补一个进去,呵呵。感谢提供信息 3-13 11:43
[LABORATORY/RESEARCH GROUP/DEPARTMENT]:
zheng w.·s research group
Department of Chemistry and energy sources
NingXia university
[LEADER/RESEARCHER]:
zheng w.
[RESEARCH INTERESTS/CURRENT PROJECTS]:
1 Synthesis and Self-Assembly
2 Nanoparticles for Catalytic Applications
3Nanocomposites for Magnetic Energy Storage Applications

[ Last edited by memser on 2009-3-13 at 11:42 ]
54楼2009-03-13 08:42:21
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weihuili1984

银虫 (小有名气)

[RESEARCH INTERESTS/CURRENT PROJECTS]:
1 Synthesis and Self-Assembly
2 Nanoparticles for Catalytic Applications
3Nanocomposites for Magnetic Energy Storage Applications
55楼2009-03-13 08:45:16
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pengczhang

木虫 (小有名气)

1

★ ★ ★ ★ ★ ★
memser(金币+6,VIP+0):感谢提供信息,最好能按照格式书写,已经修改 3-15 11:38
[LABORATORY/RESEARCH GROUP/DEPARTMENT]:
材料复合新技术国家重点实验室(武汉理工大学)

[LEADER/RESEARCHER]:
陈文

[RESEARCH INTERESTS/CURRENT PROJECTS]:
新型无几非金属纳米材料,较多低维的

[ Last edited by memser on 2009-3-15 at 11:37 ]
科研人生
56楼2009-03-14 20:23:16
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long_1102008

木虫 (著名写手)

小木虫驻华代表之觉悟者

★ ★ ★ ★ ★ ★ ★ ★
wdwsnnu(金币+5,VIP+0):3x,欢迎常来 3-16 22:17
memser(金币+3,VIP+0):按照格式填写的,再加几个 3-16 23:58
[LABORATORY/RESEARCH GROUP/DEPARTMENT]:
huachun zeng's group Department of Chemical and Biomolecular Engineering, Faculty of Engineering, National UniVersity of Singapore
http://cheed.nus.edu.sg/~chezhc/000731zenghc.html
[LEADER/RESEARCHER]:
Hua Chun Zeng (曾华淳)
[RESEARCH INTERESTS/CURRENT PROJECTS]:
Current Research Areas synthetic architecture of nanomaterials self-assembly for complex nanostructures
不应问生处,宜问其所行,微木能生火,卑贱生贤达
57楼2009-03-16 21:55:21
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leon_chen

金虫 (小有名气)

[LABORATORY/RESEARCH GROUP/DEPARTMENT]:

maharbiz.group is a research group at UC Berkeley。
Their long-term vision is to engineer devices and materials directly from living precursors through microsystem control of the cellular microenvironment during development. we strive to exploit nature’s microfabrication processes to build new, complex living micromachines.

http://www.eecs.berkeley.edu/~maharbiz/

[LEADER/RESEARCHER]:

Professor Michel M. Maharbiz

[RESEARCH INTERESTS/CURRENT PROJECTS]:

synthetic.microbial.pattern.formation.modulated.by. a.chemical.micro-interface

synthetic.mems.implants.for.cyborg.insects

a.synthetic.leaf.for.energy.scavenging

musings
58楼2009-03-17 01:30:02
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leon_chen

金虫 (小有名气)

[LABORATORY/RESEARCH GROUP/DEPARTMENT]:

David A. Horsley

Assistant Professor
Department of Mechanical and Aeronautical Engineering
University of California, Davis
One Shields Ave.
Davis, CA 95616
email: dahorsley at ucdavis dot edu

http://mae.ucdavis.edu/dahorsley/

[LEADER/RESEARCHER]:

David A. Horsley/

[RESEARCH INTERESTS/CURRENT PROJECTS]:

Micro electro-mechanical systems (MEMS)
Optical MEMS
Sensors
Mechatronics and automatic control

[ Last edited by leon_chen on 2009-3-17 at 01:33 ]
59楼2009-03-17 01:32:07
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leon_chen

金虫 (小有名气)

[LABORATORY/RESEARCH GROUP/DEPARTMENT]:

Clark T.-C. Nguyen
Professor

Dept. of Electrical Engineering & Computer Sciences

University of California, Berkeley

574 Cory Hall

Berkeley, California 94720
Tel: (510) 642-6251

Fax: (510) 643-6637
E-mail: ctnguyen@eecs.berkeley.edu

http://www.eecs.berkeley.edu/~ctnguyen/

[LEADER/RESEARCHER]:

Clark T.-C. Nguyen

[RESEARCH INTERESTS/CURRENT PROJECTS]:

Prof. Nguyen's research focuses on the use of microelectromechanical systems (MEMS) technology to make available on-chip devices with Q's in the thousands that not only alleviate the above problem, but can potentially revolutionize the design of wireless circuits. In particular, Nguyen's Micromechanical Resonator Research Group, formerly at the University of Michigan and now at the University of California at Berkeley, has recently utilized MEMS technology to demonstrate on-chip vibrating micromechanical resonators operating past GHz frequencies with Q’s in excess of 10,000; 60-MHz micromechanical resonator self-sustained oscillators that satisfy the phase noise specifications for GSM communication reference oscillators with substantially lower power consumption; tunable on-chip micromechanical capacitors with Q's exceeding 300; RF MEMS switches with record low insertion loss and high linearity; and micromechanical mixer-filter devices that combine mixer and high-Q filtering functions all into one low-loss, passive device.
60楼2009-03-17 01:36:56
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