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Achieving Ultralow, Zero, and Inverted Tunneling Attenuation Coefficients in Molecular Wires with Extended Conjugation
- Lee, Hyun Ju;
- Cho, Soo Jin;
- Kang, Hungu;
- He, Xin;
- Yoon, Hyo Jae
WEB OF SCIENCE
31SCOPUS
29초록
Molecular tunnel junctions are organic devices miniaturized to the molecular scale. They serve as a versatile toolbox that can systematically examine charge transport behaviors at the atomic level. The electrical conductance of the molecular wire that bridges the two electrodes in a junction is significantly influenced by its chemical structure, and an intrinsically poor conductance is a major barrier for practical applications toward integrating individual molecules into electronic circuitry. Therefore, highly conjugated molecular wires are attractive as active components for the next-generation electronic devices, owing to the narrow highest occupied molecular orbital-lowest occupied molecular orbital gaps provided by their extended pi-building blocks. This article aims to highlight the significance of highly conductive molecular wires in molecular electronics, the structures of which are inspired from conductive organic polymers, and presents a body of discussion on molecular wires exhibiting ultralow, zero, or inverted attenuation of tunneling probability at different lengths, along with future directions.
키워드
- 제목
- Achieving Ultralow, Zero, and Inverted Tunneling Attenuation Coefficients in Molecular Wires with Extended Conjugation
- 저자
- Lee, Hyun Ju; Cho, Soo Jin; Kang, Hungu; He, Xin; Yoon, Hyo Jae
- 발행일
- 2021-03
- 유형
- Review
- 저널명
- Small
- 권
- 17
- 호
- 12