Polymorphic phases in 2D In2Se3: fundamental properties, phase transition modulation methodologies and advanced applications

IF 8 2区 材料科学 Q1 CHEMISTRY, PHYSICAL
Weiying Zheng, Zhiquan Liu, Guoqiang Xi, Tengzhang Liu, Dingguan Wang, Lin Wang and Wugang Liao
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Abstract

Two-dimensional (2D) In2Se3, which is a multifunctional semiconductor, exhibits multiple crystallographic phases, each of which possesses distinct electronic, optical, and thermal properties. This inherent phase variability makes it a promising candidate for a wide range of applications, including memory devices, photovoltaics, and photodetectors. This review comprehensively explores the latest progress of various polymorphic phases of 2D In2Se3, emphasizing their unique properties, characterization methods, phase modulation strategies, and practical applications. Commencing with a rigorous examination of the structural attributes inherent in its various phases, we introduce sophisticated techniques for its characterization. Subsequently, modulation strategies, encompassing variations in temperature, application of electric fields, induced stress, and alterations in pressure, are explored, each exerting an influence on the phase transitions in 2D In2Se3. Finally, we highlight recent advancements and applications resulting from these phase transitions, including homoepitaxial heterophase structures, optical modulators, and phase change memory (PCM). By synthesizing insights into phase properties, modulation strategies, and potential applications, this review endeavours to provide a comprehensive understanding of the significance and prospects of In2Se3 in the semiconductor field.

二维In2Se3的多晶相:基本性质、相变调制方法和先进应用。
二维(2D) In2Se3是一种多功能半导体,具有多个晶体相,每个晶体相都具有不同的电子、光学和热性质。这种固有的相位可变性使其成为广泛应用的有希望的候选者,包括存储设备,光伏电池和光电探测器。本文综述了二维In2Se3的各种多晶相的最新研究进展,重点介绍了它们的独特性质、表征方法、相位调制策略和实际应用。从严格检查其各个阶段固有的结构属性开始,我们介绍了其表征的复杂技术。随后,研究了包括温度变化、电场应用、诱导应力和压力变化在内的调制策略,每一种策略都会对二维In2Se3的相变产生影响。最后,我们重点介绍了这些相变的最新进展和应用,包括同外延异相结构、光调制器和相变存储器(PCM)。通过对相位特性、调制策略和潜在应用的综合见解,本文努力提供对In2Se3在半导体领域的意义和前景的全面理解。
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
Nanoscale Horizons
Nanoscale Horizons Materials Science-General Materials Science
CiteScore
16.30
自引率
1.00%
发文量
141
期刊介绍: Nanoscale Horizons stands out as a premier journal for publishing exceptionally high-quality and innovative nanoscience and nanotechnology. The emphasis lies on original research that introduces a new concept or a novel perspective (a conceptual advance), prioritizing this over reporting technological improvements. Nevertheless, outstanding articles showcasing truly groundbreaking developments, including record-breaking performance, may also find a place in the journal. Published work must be of substantial general interest to our broad and diverse readership across the nanoscience and nanotechnology community.
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