From Tunneling to Hopping: A Comprehensive Investigation of Charge Transport Mechanism in Molecular Junctions Based on Oligo(p-phenylene ethynylene)s


Autoria(s): Lu Q; Liu K; Zhang HM; Du ZB; Wang XH; Wang FS
Data(s)

2009

Resumo

The charge transport mechanism of oligo(p-phenylene ethynylene)s with lengths ranging from 0.98 to 5.11 nm was investigated using modified scanning tunneling microscopy break junction and conducting probe atomic force microscopy methods. The methods were based on observing the length dependence of molecular resistance at single molecule level and the current-voltage characteristics in a wide length distribution. An intrinsic transition from tunneling to hopping charge transport mechanism was observed near 2.75 nm. A new transitional zone was observed in the long length molecular wires compared to short ones. This was not a simple transition between direct tunneling and field emission, which may provide new insights into transport mechanism investigations. Theoretical calculations provided an essential explanation for these phenomena in terms of molecular electronic structures.

Identificador

http://202.98.16.49/handle/322003/12391

http://www.irgrid.ac.cn/handle/1471x/148608

Idioma(s)

英语

Fonte

Lu Q;Liu K;Zhang HM;Du ZB;Wang XH;Wang FS.From Tunneling to Hopping: A Comprehensive Investigation of Charge Transport Mechanism in Molecular Junctions Based on Oligo(p-phenylene ethynylene)s,ACS NANO,2009,3(12):3861-3868

Palavras-Chave #SELF-ASSEMBLED MONOLAYERS #ATOMIC-FORCE MICROSCOPY #LENGTH DEPENDENCE #ORGANIC-MOLECULES #CONDUCTANCE #WIRES #RESISTANCE #ENERGY #ENVIRONMENTS #TEMPERATURE
Tipo

期刊论文