Statistical Analysis of Metal-Molecule Contacts in Alkyl Molecular Junctions: Sulfur versus Selenium End-Group

  • Yoo, Hana
  • Choi, Jungseok
  • Wang, Gunuk
  • Kim, Tae-Wook
  • Noh, Jaegeun
  • 외 1명
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초록

We fabricated a large number of microscale via-hole structure molecular devices (2240 devices) using octane-Se [CH3(CH2)(7)Se] self assembled monolayers (SAMs) and compared their charge transport properties with those of octane-S [CH3(CH2)(7)S] SAMs molecular devices in terms of current density, resistance, and tunneling decay coefficient. The device yield of the "working" octane-Se molecular devices was found to be similar to 1.7% (38/2240), which was similar to the yield of similar to 1.1% (50/4480) for octane-S devices. Our statistical analysis revealed that for octane-Se devices the tunneling current was slightly smaller and the low-bias resistance and decay coefficient were slightly larger than those for octane-S devices. The standard deviations of these transport parameters of octane-Se devices were found to be broader than those for octane-S devices due to irregularity of the binding sites of octane-Se on Au electrode surface.

키워드

A Molecular ElectronicsDevice YieldAlkanethiolsSELF-ASSEMBLED MONOLAYERSELECTRON-TRANSPORTCONDUCTANCE
제목
Statistical Analysis of Metal-Molecule Contacts in Alkyl Molecular Junctions: Sulfur versus Selenium End-Group
저자
Yoo, HanaChoi, JungseokWang, GunukKim, Tae-WookNoh, JaegeunLee, Takhee
DOI
10.1166/jnn.2009.1620
발행일
2009-12
유형
Article; Proceedings Paper
저널명
Journal of Nanoscience and Nanotechnology
9
12
페이지
7012 ~ 7015