Interfacial control and design of conductive nanomaterials for transparent nanocomposite electrodes

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초록

A few critical issues in preparing transparent conductive electrodes (TCEs) based on solution-processable conductive nanomaterials are their low electrical conductivity and the unfavorable trade-off between electrical conductivity and optical transparency, which are closely related to the organic ligands bound to the nanomaterial surface. In particular, bulky/insulating organic ligands bound to the surface of conductive nanomaterials unavoidably act as high contact resistance sites at the interfaces between neighboring nanomaterials, which adversely affects the charge transfer kinetics of the resultant TCEs. This article reviews the latest research status of various interfacial control approaches for solution-processable TCEs. We describe how these approaches can be effectively applied to conductive nanomaterials and how interface-controlled conductive nanomaterials can be employed to improve the electrical and/or electrochemical performance of various transparent nanocomposite electrodes, including TCEs, energy storage electrodes, and electrochromic electrodes. Last, we provide perspectives on the development direction for next-generation transparent nanocomposite electrodes and breakthroughs for significantly mitigating the complex trade-off between their electrical/electrochemical performance and optical transparency.

키워드

INDIUM-TIN OXIDESITU LIGAND-EXCHANGENANOWIRE THIN-FILMSSILVER NANOWIRESCOPPER NANOWIRESCARBON NANOTUBEQUANTUM-DOTINORGANIC NANOPARTICLESELECTROCHROMIC DEVICESCOMPOSITE ELECTRODE
제목
Interfacial control and design of conductive nanomaterials for transparent nanocomposite electrodes
저자
Song, YongkwonCho, Jinhan
DOI
10.1039/d0nr05961g
발행일
2020-10-21
유형
Review
저널명
Nanoscale
12
39
페이지
20141 ~ 20157