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纳米球光刻技术:一种用于开发光电应用透明导电薄膜的通用方法。

Nanosphere Lithography: A Versatile Approach to Develop Transparent Conductive Films for Optoelectronic Applications.

作者信息

Qiu Tengfei, Akinoglu Eser Metin, Luo Bin, Konarova Muxina, Yun Jung-Ho, Gentle Ian R, Wang Lianzhou

机构信息

Nanomaterials Centre, School of Chemical Engineering and Australian Institute for Bioengineering and Nanotechnology, The University of Queensland, St Lucia, Queensland, 4072, Australia.

School of Chemistry and Molecular Biosciences, Faculty of Science, The University of Queensland, St Lucia, Queensland, 4072, Australia.

出版信息

Adv Mater. 2022 May;34(19):e2103842. doi: 10.1002/adma.202103842. Epub 2022 Mar 20.

Abstract

Transparent conductive films (TCFs) are irreplaceable components in most optoelectronic applications such as solar cells, organic light-emitting diodes, sensors, smart windows, and bioelectronics. The shortcomings of existing traditional transparent conductors demand the development of new material systems that are both transparent and electrically conductive, with variable functionality to meet the requirements of new generation optoelectronic devices. In this respect, TCFs with periodic or irregular nanomesh structures have recently emerged as promising candidates, which possess superior mechanical properties in comparison with conventional metal oxide TCFs. Among the methods for nanomesh TCFs fabrication, nanosphere lithography (NSL) has proven to be a versatile platform, with which a wide range of morphologically distinct nanomesh TCFs have been demonstrated. These materials are not only functionally diverse, but also have advantages in terms of device compatibility. This review provides a comprehensive description of the NSL process and its most relevant derivatives to fabricate nanomesh TCFs. The structure-property relationships of these materials are elaborated and an overview of their application in different technologies across disciplines related to optoelectronics is given. It is concluded with a perspective on current shortcomings and future directions to further advance the field.

摘要

透明导电薄膜(TCFs)是大多数光电子应用中不可或缺的组件,如太阳能电池、有机发光二极管、传感器、智能窗户和生物电子学。现有传统透明导体的缺点促使人们开发既透明又导电且具有可变功能的新型材料体系,以满足新一代光电器件的需求。在这方面,具有周期性或不规则纳米网结构的TCFs最近已成为有前途的候选材料,与传统金属氧化物TCFs相比,它们具有优异的机械性能。在纳米网TCFs的制备方法中,纳米球光刻(NSL)已被证明是一个通用平台,利用该平台已展示出多种形态不同的纳米网TCFs。这些材料不仅功能多样,而且在器件兼容性方面也具有优势。本综述全面描述了用于制备纳米网TCFs的NSL工艺及其最相关的衍生工艺。阐述了这些材料的结构-性能关系,并概述了它们在光电子学相关跨学科不同技术中的应用。最后展望了当前的不足和未来进一步推动该领域发展的方向。

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