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用于有机光电晶体管中宽带光响应和高效电荷传输的不对称小分子

Unsymmetrical Small Molecules for Broad-Band Photoresponse and Efficient Charge Transport in Organic Phototransistors.

作者信息

Lim Dae-Hee, Kang Minji, Jang Soo-Young, Hwang Kyoungtae, Kim In-Bok, Jung Eunhwan, Jo Yong-Ryun, Kim Yeon-Ju, Kim Jihong, Choi Heechae, Kim Tae-Wook, Mathur Sanjay, Kim Bong-Joong, Kim Dong-Yu

机构信息

School of Materials Science and Engineering (SMSE), Gwangju Institute of Science and Technology (GIST), 123 Cheomdangwagi-ro, Buk-gu, Gwangju 61002, Republic of Korea.

Energy Materials Research Center, Korea Research Institute of Chemical Technology (KRICT), 141 Gajeong-ro, Yuseong-gu, Daejeon 34114, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2020 Jun 3;12(22):25066-25074. doi: 10.1021/acsami.0c02229. Epub 2020 May 20.

Abstract

Organic photosensitizers have been investigated as effective light-sensing elements that can promote strong absorption with high field-effect mobility in organic phototransistors (OPTs). In this study, a novel organic photosensitizer is synthesized to demonstrate broad-band photoresponse with enhanced electrical performance. An unsymmetrical small molecule of a solubilizing donor (D)-acceptor (A)-dye donor (D) type connected with a twisted conjugation system is designed for broad-band detection (ranging from 250 to 700 nm). This molecule has high solubility, thereby facilitating the formation of uniformly dispersed nanoparticles in an insulating polymer matrix, which is deposited on top of OPT semiconductors by a simple solution process. The broad-band photodetection shown by the organic photosensitizer is realized with improved mobility close to an order of magnitude and high on/off current ratio (∼10) of the organic semiconductor. Furthermore, p-type charge transport behavior in the channel of the OPT is enhanced through the intrinsic electron-accepting ability of the organic photosensitizer caused by the unique molecular configuration. These structural properties of organic photosensitizers contribute to an improvement in broad-band photosensing systems with new optoelectronic properties and functionalities.

摘要

有机光敏剂已被作为有效的光传感元件进行研究,其在有机光电晶体管(OPT)中能够促进强吸收并具有高场效应迁移率。在本研究中,合成了一种新型有机光敏剂,以展示具有增强电性能的宽带光响应。设计了一种不对称的小分子,其为具有扭曲共轭体系的增溶供体(D)-受体(A)-染料供体(D)型,用于宽带检测(范围为250至700 nm)。该分子具有高溶解度,从而便于在绝缘聚合物基质中形成均匀分散的纳米颗粒,通过简单的溶液工艺将其沉积在OPT半导体顶部。有机光敏剂所展示的宽带光检测是通过将有机半导体的迁移率提高近一个数量级以及实现高的开/关电流比(约10)来实现的。此外,由于独特的分子构型导致有机光敏剂具有固有的电子接受能力,从而增强了OPT沟道中的p型电荷传输行为。有机光敏剂的这些结构特性有助于改善具有新光电特性和功能的宽带光传感系统。

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