Low dimensional freestanding semiconductors for flexible optoelectronics: materials, synthesis, process, and applications

Low dimensional freestanding semiconductors for flexible optoelectronics: materials, synthesis, process, and applications
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用于柔性光电子学的低维独立式半导体:材料、合成、工艺和应用

DOI:
10.1080/21663831.2020.1718231
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发表时间:
2020-01
影响因子:
8.3
通讯作者:
Jung‐Hun Seo;Edward Swinnich;Yi-Yu Zhang;Munho Kim
Jung‐Hun Seo;Edward Swinnich;Yi-Yu Zhang;Munho Kim
中科院分区:
材料科学2区
文献类型:
--
作者:
Jung‐Hun Seo;Edward Swinnich;Yi-Yu Zhang;Munho Kim

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本文主要介绍了用于柔性光电应用的独立无机晶体半导体及其操纵技术的最新进展。我们首先详细介绍了不同尺寸的独立无机晶体半导体的生长和加工技术及其在应变条件下的材料性能。最后介绍了柔性光电器件的制备工艺和光电性能。展望了未来的研究方向,包括进一步提高器件性能,在柔性衬底上构建更多类型的光电器件,以及先进光电电路和系统的工艺集成。图形抽象
ABSTRACT In this review, the primary focus is the recent advances in the development of freestanding inorganic crystalline semiconductors and their manipulation technology for flexible optoelectronic applications. We firstly cover the details of the growth and processing techniques of freestanding inorganic crystalline semiconductors in various dimensions and their material property under strain condition. Finally, fabrication processes and opto-electrical properties of flexible optoelectronics are introduced. Future research directions are also discussed, including further enhancement of device performance, building more types of optoelectronic devices on flexible substrates, and process integration for the advanced optoelectronic circuits and systems. GRAPHICAL ABSTRACT