Chemical principles of single-molecule electronics

被引:0
作者
Timothy A. Su
Madhav Neupane
Michael L. Steigerwald
Latha Venkataraman
Colin Nuckolls
机构
[1] Columbia University,Department of Chemistry
[2] Columbia University,Department of Physics and Applied Math
来源
Nature Reviews Materials | / 1卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
The field of single-molecule electronics harnesses expertise from engineering, physics and chemistry to realize circuit elements at the limit of miniaturization; it is a subfield of nanoelectronics in which the electronic components are single molecules. In this Review, we survey the field from a chemical perspective and discuss the structure–property relationships of the three components that form a single-molecule junction: the anchor, the electrode and the molecular bridge. The spatial orientation and electronic coupling between each component profoundly affect the conductance properties and functions of the single-molecule device. We describe the design principles of the anchor group, the influence of the electronic configuration of the electrode and the effect of manipulating the structure of the molecular backbone and of its substituent groups. We discuss single-molecule conductance switches as well as the phenomenon of quantum interference and then trace their fundamental roots back to chemical principles.
引用
收藏
相关论文
共 284 条
[1]  
Aviram A(1974)Molecular rectifiers Chem. Phys. Lett. 29 277-283
[2]  
Ratner MA(2009)The long history of molecular electronics: microelectronics origins of nanotechnology Soc. Stud. Sci. 39 11-50
[3]  
Choi H(2006)Electron transport in molecular junctions Nat. Nanotechnol. 1 173-181
[4]  
Mody CCM(2009)Molecular electronics with single molecules in solid-state devices Nat. Nanotechnol. 4 551-556
[5]  
Tao NJ(2013)Single-molecule junctions beyond electronic transport Nat. Nanotechnol. 8 399-410
[6]  
Moth-Poulsen K(2008)Electronic and optical properties of electromigrated molecular junctions J. Phys. Condens. Matter 20 374118-1707
[7]  
Bjørnholm T(1996)Are single molecular wires conducting? Science 271 1705-3895
[8]  
Aradhya SV(1985)Electron tunneling experiments using Nb–Sn ‘break’ junctions J. Appl. Phys. 58 3888-504
[9]  
Venkataraman L(1992)Experimental observation of the transition from weak link to tunnel junction Phys. C Supercond. 191 485-909
[10]  
Ward DR(2002)Measurement of the conductance of a hydrogen molecule Nature 419 906-254