材料科学
聚合物
共轭体系
无定形固体
分子间力
半导体
结晶度
结晶
光电子学
有机半导体
化学工程
纳米技术
高分子化学
复合材料
结晶学
有机化学
分子
化学
工程类
作者
Jie Xu,Hung‐Chin Wu,Jaewan Mun,Rui Ning,Weichen Wang,Ging‐Ji Nathan Wang,Shayla Nikzad,Hongping Yan,Xiaodan Gu,Shaochuan Luo,Dongshan Zhou,Jeffrey B.‐H. Tok,Zhenan Bao
标识
DOI:10.1002/adma.202104747
摘要
In order to apply polymer semiconductors to stretchable electronics, they need to be easily deformed under strain without being damaged. A small number of conjugated polymers, typically with semicrystalline packing structures, have been reported to exhibit mechanical stretchability. Herein, a method is reported to modify polymer semiconductor packing-structure using a molecular additive, dioctyl phthalate (DOP), which is found to act as a molecular spacer, to be inserted between the amorphous chain networks and disrupt the crystalline packing. As a result, large-crystal growth is suppressed while short-range aggregations of conjugated polymers are promoted, which leads to an improved mechanical stretchability without affecting charge-carrier transport. Due to the reduced conjugated polymer intermolecular interactions, strain-induced chain alignment and crystallization are observed. By adding DOP to a well-known conjugated polymer, poly[2,5-bis(4-decyltetradecyl)pyrrolo[3,4-c]pyrrole-1,4-(2H,5H)-dione-(E)-1,2-di(2,2'-bithiophen-5-yl)ethene] (DPPTVT), stretchable transistors are obtained with anisotropic charge-carrier mobilities under strain, and stable current output under strain up to 100%.
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