Two-dimensional Materials based Printed Photodetectors

Q2 Engineering
Ayaz Ali, Nardin Avishan, Shahnawaz Shah, A. Memon, Yaqoob Khan
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引用次数: 0

Abstract

Two-dimensional (2D) materials offer several unique advantages for high-performance light detection including fast response, high responsivity, broadband response and relatively low noise levels. 2D materials integrated photodetectors often use chemical vapor deposition grown materials, which despite their good quality are relatively high cost and not easily scalable. 2D materials based inks, fabricated through liquid phase exfoliation of bulk crystals, are attractive alternatives due to their low cost, ease of processing and scalable production. Combined with these advantages, mature printing methods available for 2D inks allow large scale electronic device fabrication for a variety of high performance applications including energy storage, solar cells, photodetectors, etc. In this review, we summarize production of 2D materials based inks, their printing methods, and applications for high performance photodetection.
基于二维材料的印刷光电探测器
二维(2D)材料为高性能光检测提供了几个独特的优势,包括快速响应、高响应、宽带响应和相对较低的噪声水平。二维材料集成光电探测器通常采用化学气相沉积生长材料,尽管其质量好,但成本相对较高且不易扩展。基于二维材料的油墨,通过体晶体的液相剥离制造,由于其低成本,易于加工和可扩展生产而成为有吸引力的替代品。结合这些优点,成熟的2D油墨印刷方法允许大规模电子设备制造各种高性能应用,包括能量存储,太阳能电池,光电探测器等。本文综述了二维材料基油墨的生产、印刷方法及其在高性能光检测中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Materials Research Innovations
Materials Research Innovations 工程技术-材料科学:综合
CiteScore
5.20
自引率
0.00%
发文量
38
审稿时长
2.8 months
期刊介绍: Materials Research Innovations covers all areas of materials research with a particular interest in synthesis, processing, and properties from the nanoscale to the microscale to the bulk. Coverage includes all classes of material – ceramics, metals, and polymers; semiconductors and other functional materials; organic and inorganic materials – alone or in combination as composites. Innovation in composition and processing to impart special properties to bulk materials and coatings, and for innovative applications in technology, represents a strong focus. The journal attempts to balance enduring themes of science and engineering with the innovation provided by such areas of research activity.
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