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用于新兴应用的基于硫化亚锡(SnS)结构的纳米工程。

Nanoengineering of Tin Monosulfide (SnS)-Based Structures for Emerging Applications.

作者信息

Zi You, Zhu Jun, Hu Lanping, Wang Mengke, Huang Weichun

机构信息

School of Chemistry and Chemical Engineering Nantong University Nantong Jiangsu 226019 P. R. China.

出版信息

Small Sci. 2021 Dec 29;2(3):2100098. doi: 10.1002/smsc.202100098. eCollection 2022 Mar.

Abstract

In recent years, tin monosulfide (SnS), one kind of black phosphorus analogues, is of great interest owing to its unique properties, such as low cost, environmental compatibility, nontoxicity, earth-abundance, etc., which merit it an ideal candidate for modern devices, such as batteries, sensors, and optoelectronics, among others. The controllable and precise synthesis of SnS-based nanostructures with various crystal phases, sizes, and compositions holds great potential for high-performance devices as crucial components. To further improve their performance for next-generation devices, the nanoengineering of SnS-based nanostructures has been extensively explored over the past decade. In this review, the latest research and progress on SnS-based nanostructures, including 0D, 1D, 2D, and 3D pure SnS nanostructures, and SnS-based loaded, sandwiched or encapsulated models are comprehensively presented, focusing on their synthetic approaches, fundamental properties, and fascinating applications such as batteries and solar cells, catalysis (photocatalysis and electrocatalysis), optoelectronics, sensors, ferroelectrics, thermoelectrics, nonlinear properties, and biomedical applications. Finally, the critical challenges and constructive perspectives are discussed for further improvement of the SnS-based nanostructures in these burgeoning fields.

摘要

近年来,硫化亚锡(SnS)作为一种类黑磷材料,因其具有低成本、环境兼容性好、无毒、储量丰富等独特性质而备受关注,使其成为电池、传感器和光电子器件等现代设备的理想候选材料。可控且精确地合成具有不同晶相、尺寸和组成的SnS基纳米结构,作为关键组件,在高性能器件方面具有巨大潜力。为进一步提升其在下一代器件中的性能,在过去十年中人们对SnS基纳米结构的纳米工程进行了广泛探索。在这篇综述中,全面介绍了SnS基纳米结构的最新研究与进展,包括零维、一维、二维和三维纯SnS纳米结构,以及SnS基负载、夹心或封装模型,重点阐述了它们的合成方法、基本性质以及在电池和太阳能电池、催化(光催化和电催化)、光电子学、传感器、铁电体、热电学、非线性性质和生物医学应用等方面的迷人应用。最后,针对在这些新兴领域进一步改进SnS基纳米结构所面临的关键挑战和建设性观点进行了讨论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bca3/11935815/4cfcae0360e1/SMSC-2-2100098-g020.jpg

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