Strain Engineering in 2D Material‐Based Flexible Optoelectronics

应变工程 材料科学 灵活性(工程) 半导体 光电子学 拉伤 纳米技术 计算机科学 数学 医学 统计 内科学
作者
Junli Du,Huihui Yu,Baishan Liu,Mengyu Hong,Qingliang Liao,Zheng Zhang,Yue Zhang
出处
期刊:Small methods [Wiley]
卷期号:5 (1) 被引量:117
标识
DOI:10.1002/smtd.202000919
摘要

Abstract Flexible optoelectronics, as promising components hold shape‐adaptive features and dynamic strain response under strain engineering for various intelligent applications. 2D materials with atomically thin layers are ideal for flexible optoelectronics because of their high flexibility and strain sensitivity. However, how the strain affects the performance of 2D materials‐based flexible optoelectronics is confused due to their hypersensitive features to external strain changes. It is necessary to establish an evaluation system to comprehend the influence of the external strain on the intrinsic properties of 2D materials and the photoresponse performance of their flexible optoelectronics. Here, a focused review of strain engineering in 2D materials‐based flexible optoelectronics is provided. The first attention is on the mechanical properties and the strain‐engineered electronic properties of 2D semiconductors. An evaluation system with relatively comprehensive parameters in functionality and service capability is summarized to develop 2D materials‐based flexible optoelectronics in practical application. Based on the parameters, some strategies to improve the functionality and service capability are proposed. Finally, combining with strain engineering in future intelligence devices, the challenges and future perspective developing 2D materials‐based flexible optoelectronics are expounded.
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