from    
to    
search  

 


环境学术沙龙第632期:水环境界面原位可视化感知方法
环境学术沙龙第631期:重点流域水生态环境保护规划:方法与实践
世纪物理情系列讲座 第16讲:Quantum simulators of many-body phenomena with int...
世界地球日特邀报告——气候变化与人类健康
报告题目:
Exploring Carbon Nanostructures at the Single Molecule Level Using Scanning Tunneling Microscopy
 报告人:
王亚愚 博士
美国加州大学伯克利分校物理系
报告时间:
2006-06-29 16:00
报告地点:
理学院报告厅
主办单位:
清华大学物理系
  简介:
 Emerging fields involving molecular electronics require a detailed knowledge of the behavior of electrons in molecular nanostructures. We have used scanning tunneling microscopy (STM) to manipulate and investigate the electronic properties of carbon-based molecular systems down to the single molecule level. We have uncovered a rich variety of structural and electronic phases in potassium-doped C60 monolayers as doping (and hence electron density) is varied. In particular, we have directly visualized the molecular Jahn-Teller effect (the spontaneous distortion of single molecules to reduce electronic energy) in K4C60 which opens an energy gap at the Fermi level. This metal-insulator transition is accompanied by a complex pinwheel-like orientational ordering that has never been observed before. Recently discovered diamondoid molecules have drastically different properties from the fullerenes due to their sp3 chemical bonding and diamond-like cage structure. We have performed inelastic tunneling spectroscopy that reveals a strong coupling between tunneling electrons and molecular vibrations of the diamondoids. The electron-phonon coupling strength displays a characteristic spatial distribution with the dominant inelastic channel localized to a narrow slice of the molecule. These studies indicate the degree to which electrons within molecular nanostructures are affected by strong electron correlation, vibronic and screening properties, and orientational ordering.
今日相关信息
热能系学术沙龙--煤基多联产系统及其环境...
 
同类别相关信息
清华论坛第63讲:第四次工业革命与生物...
清华大学‘海外名师讲堂’: Electroni...
我国物理I学科基础研究冷热分布以及其意...
清华大学艺术博物馆系列学术讲座——“感...
LIGO: A Laser Strainmeter for the U...
学术活动