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基于同质结聚合物晶体管和逻辑电路的完全可折叠电子产品。

Completely foldable electronics based on homojunction polymer transistors and logics.

作者信息

Kim Min Je, Ryu Hwa Sook, Choi Yoon Young, Ho Dong Hae, Lee Yoonjoo, Tripathi Ayushi, Son Jae Hoon, Lee Yeran, Kim Seunghan, Kang Moon Sung, Woo Han Young, Cho Jeong Ho

机构信息

Department of Chemical and Biomolecular Engineering, Yonsei University, Seoul 03722, Republic of Korea.

Department of Chemistry, KU-KIST Graduate School of Converging Science and Technology, Korea University, Seoul 02841, Republic of Korea.

出版信息

Sci Adv. 2021 Aug 18;7(34). doi: 10.1126/sciadv.abg8169. Print 2021 Aug.

Abstract

An increase in the demand for completely foldable electronics has motivated efforts for the development of conducting polymer electrodes having extraordinary mechanical stability. However, weak physical adhesion at intrinsic heterojunctions has been a challenge in foldable electronics. This paper reports the completely foldable polymer thin-film transistors (PTFTs) and logic gate arrays. Homojunction-based PTFTs were fabricated by selectively doping -type diketopyrrolopyrrole-based semiconducting polymer films with FeCl to form source/drain electrodes. The doping process caused a gradual work function change with depth, which promoted charge injection to semiconducting regions and provided a low contact resistance. In addition, the interfacial adhesion in the PTFTs was improved by interfacial cross-linking between adjacent component layers. The electrical performance of the resulting PTFTs was maintained without noticeable degradation even after extreme folding, suggesting that the proposed fabrication strategy can further be applied to various semiconducting polymers for the realization of foldable electronics.

摘要

对完全可折叠电子产品需求的增加推动了人们努力开发具有非凡机械稳定性的导电聚合物电极。然而,本征异质结处较弱的物理粘附力一直是可折叠电子产品面临的挑战。本文报道了完全可折叠的聚合物薄膜晶体管(PTFT)和逻辑门阵列。通过用FeCl选择性地掺杂基于 - 型二酮吡咯并吡咯的半导体聚合物薄膜来制造源极/漏极电极,从而制备基于同质结的PTFT。掺杂过程导致功函数随深度逐渐变化,这促进了电荷注入到半导体区域并提供了低接触电阻。此外,通过相邻组件层之间的界面交联改善了PTFT中的界面粘附力。即使在极端折叠之后,所得PTFT的电性能仍能保持且无明显降解,这表明所提出的制造策略可进一步应用于各种半导体聚合物以实现可折叠电子产品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/665c/8373125/0572c172d0f4/abg8169-F1.jpg

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