共形矩阵
数码产品
柔性电子器件
材料科学
纳米技术
晶体管
有机电子学
有机场效应晶体管
可穿戴技术
可穿戴计算机
灵活性(工程)
电子线路
可伸缩电子设备
平面的
场效应晶体管
计算机科学
电气工程
工程类
嵌入式系统
数学
复合材料
电压
计算机图形学(图像)
统计
作者
Ali Nawaz,Leandro Merces,Letícia M. M. Ferro,Prashant Sonar,Carlos César Bof Bufon
标识
DOI:10.1002/adma.202204804
摘要
Abstract The development of flexible and conformable devices, whose performance can be maintained while being continuously deformed, provides a significant step toward the realization of next‐generation wearable and e‐textile applications. Organic field‐effect transistors (OFETs) are particularly interesting for flexible and lightweight products, because of their low‐temperature solution processability, and the mechanical flexibility of organic materials that endows OFETs the natural compatibility with plastic and biodegradable substrates. Here, an in‐depth review of two competing flexible OFET technologies, planar and vertical OFETs (POFETs and VOFETs, respectively) is provided. The electrical, mechanical, and physical properties of POFETs and VOFETs are critically discussed, with a focus on four pivotal applications (integrated logic circuits, light‐emitting devices, memories, and sensors). It is pointed out that the flexible function of the relatively newer VOFET technology, along with its perspective on advancing the applicability of flexible POFETs, has not been reviewed so far, and the direct comparison regarding the performance of POFET‐ and VOFET‐based flexible applications is most likely absent. With discussions spanning printed and wearable electronics, materials science, biotechnology, and environmental monitoring, this contribution is a clear stimulus to researchers working in these fields to engage toward the plentiful possibilities that POFETs and VOFETs offer to flexible electronics.
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