有机半导体
材料科学
共轭体系
有机电子学
纳米技术
数码产品
晶体管
有机太阳能电池
载流子
有机场效应晶体管
光电子学
场效应晶体管
聚合物
化学
电气工程
电压
工程类
物理化学
复合材料
作者
Waqar Ali Memon,Yajie Zhang,Jianqi Zhang,Yangjun Yan,Yuheng Wang,Zhixiang Wei
标识
DOI:10.1002/marc.202100931
摘要
Abstract High‐performance organic semiconductor materials as the electroactive components of optoelectronic devices have attracted much attention and made them ideal candidates for solution‐processable, large‐area, and low‐cost flexible electronics. Especially, organic field‐effect transistors (OFETs) based on conjugated semiconductor materials have experienced stunning progress in device performance. To make these materials economically viable, comprehensive knowledge of charge transport mechanisms is required. The alignment of organic conjugated molecules in the active layer is vital to charge transport properties of devices. The present review highlights the recent progress of processing‐structure‐transport correlations that allow the precise and uniform alignment of organic conjugated molecules over large areas for multiple electronic applications, including OFETs, organic thermoelectric devices (OTEs), and organic phototransistors (OPTs). Different strategies for regulating crystallinity and macroscopic orientation of conjugated molecules are introduced to correlate the molecular packing, the device performance, and charge transport anisotropy in multiple organic electronic devices.
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