Polyimides and Their Diverse Applications in Multiple Optoelectronic Devices

Solution-processable polyimide (PI) materials are attractive for applications in future flexible optoelectronics, owing to their excellent thermal and chemical resistance, inherent flexibility, and superior dielectric properties. They are widely integrated and investigated in various semiconductor d...

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Main Authors: Yuan Dong, Jiaxin Ma, Shiyong Yang, Haixia Yang
Format: Article
Language:English
Published: American Association for the Advancement of Science (AAAS) 2023-01-01
Series:Advanced Devices & Instrumentation
Online Access:https://spj.science.org/doi/10.34133/adi.0011
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author Yuan Dong
Jiaxin Ma
Shiyong Yang
Haixia Yang
author_facet Yuan Dong
Jiaxin Ma
Shiyong Yang
Haixia Yang
author_sort Yuan Dong
collection DOAJ
description Solution-processable polyimide (PI) materials are attractive for applications in future flexible optoelectronics, owing to their excellent thermal and chemical resistance, inherent flexibility, and superior dielectric properties. They are widely integrated and investigated in various semiconductor devices. Here, the unique characteristics of PIs and their applications in optoelectronics are analyzed and summarized. A general introduction from the material aspect is given, followed by detailing the PI applications in multiple devices, including field-effect transistors, capacitors, photodetectors, and memory devices. In this review, the uniqueness and potential of PIs for next-generation optoelectronics are fully demonstrated, and the underlying challenges are proposed.
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spelling doaj.art-ee5ac8d9912c46c9bd304626254396482023-09-13T21:12:57ZengAmerican Association for the Advancement of Science (AAAS)Advanced Devices & Instrumentation2767-97132023-01-01410.34133/adi.0011Polyimides and Their Diverse Applications in Multiple Optoelectronic DevicesYuan Dong0Jiaxin Ma1Shiyong Yang2Haixia Yang3Key Laboratory of Science and Technology on High-Tech Polymer Materials, Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.Key Laboratory of Science and Technology on High-Tech Polymer Materials, Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.Key Laboratory of Science and Technology on High-Tech Polymer Materials, Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.Key Laboratory of Science and Technology on High-Tech Polymer Materials, Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.Solution-processable polyimide (PI) materials are attractive for applications in future flexible optoelectronics, owing to their excellent thermal and chemical resistance, inherent flexibility, and superior dielectric properties. They are widely integrated and investigated in various semiconductor devices. Here, the unique characteristics of PIs and their applications in optoelectronics are analyzed and summarized. A general introduction from the material aspect is given, followed by detailing the PI applications in multiple devices, including field-effect transistors, capacitors, photodetectors, and memory devices. In this review, the uniqueness and potential of PIs for next-generation optoelectronics are fully demonstrated, and the underlying challenges are proposed.https://spj.science.org/doi/10.34133/adi.0011
spellingShingle Yuan Dong
Jiaxin Ma
Shiyong Yang
Haixia Yang
Polyimides and Their Diverse Applications in Multiple Optoelectronic Devices
Advanced Devices & Instrumentation
title Polyimides and Their Diverse Applications in Multiple Optoelectronic Devices
title_full Polyimides and Their Diverse Applications in Multiple Optoelectronic Devices
title_fullStr Polyimides and Their Diverse Applications in Multiple Optoelectronic Devices
title_full_unstemmed Polyimides and Their Diverse Applications in Multiple Optoelectronic Devices
title_short Polyimides and Their Diverse Applications in Multiple Optoelectronic Devices
title_sort polyimides and their diverse applications in multiple optoelectronic devices
url https://spj.science.org/doi/10.34133/adi.0011
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AT shiyongyang polyimidesandtheirdiverseapplicationsinmultipleoptoelectronicdevices
AT haixiayang polyimidesandtheirdiverseapplicationsinmultipleoptoelectronicdevices