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染料敏化太阳能电池中的MXene修饰电极和电解质。

MXene-modified electrodes and electrolytes in dye-sensitized solar cells.

作者信息

Aftab Sikandar, Iqbal Muhammad Zahir, Hussain Sajjad, Kabir Fahmid, Hegazy Hosameldin Helmy, Goud Burragoni Sravanthi, Aslam Muhammad, Xu Fan

机构信息

Department of Intelligent Mechatronics Engineering, Sejong University, Seoul 05006, South Korea.

Faculty of Engineering Sciences, Ghulam Ishaq Khan Institute of Engineering Sciences and Technology, Khyber Pakhtunkhwa, Topi, 23640, Pakistan.

出版信息

Nanoscale. 2023 Nov 9;15(43):17249-17269. doi: 10.1039/d3nr03005a.

Abstract

Dye-sensitized solar cells (DSSCs) have attracted much attention as promising tools in renewable energy conversion technology. This is mainly because of their beneficial qualities, such as their impressive efficiency levels and low-cost fabrication techniques. An overview of MXene-modified electrodes in DSSCs is given in this review article. MXenes are two-dimensional (2D) transition metal carbides or nitrides with remarkable properties such as high conductivity and large surface area. MXenes' properties make them an appealing material for various applications, including energy storage, catalysis, and electronic devices. MXene integration enhances ion transport, dye adsorption, and charge transport in DSSC electrodes. In-depth analysis of the use of 2D Mxene and integration with carbon nanotubes (CNTs), reduced graphene oxide (rGO), 2D MoS, and hybrids like 2D-2D heterostructures for electrode modification in photovoltaics (PVs), including anodes, photoanodes, composite decorated electrodes, counter electrodes (CEs), and electrolytes, is provided in this review article. The effects on the performance metrics of various deposition techniques are discussed and assessed. The use of MXene-modified electrodes in DSSCs suggests potential for enhancing the performance and efficiency of these solar cells in general. The article examines this strategy's potential advantages and implications, illuminating the fascinating advancements in the area and emphasizing MXenes' potential as a valuable substance for renewable energy applications. We also discuss the difficulties and potential benefits of using MXene-modified electrodes in DSSCs and emphasize the need for additional study to enhance stability, optimize MXene integration techniques, and enhance long-term device performance. The scalability and potential of MXene-based electrode modifications for commercial applications are also covered, addressing issues and prospects for the future, focusing on the necessity of more study. Electrodes modified with MXenes can improve DSSC performance and advance sustainable energy conversion.

摘要

染料敏化太阳能电池(DSSC)作为可再生能源转换技术中颇具前景的工具备受关注。这主要是因为它们具有诸多有益特性,比如令人瞩目的效率水平和低成本制造技术。本文综述了DSSC中MXene修饰电极的相关情况。MXene是二维(2D)过渡金属碳化物或氮化物,具有高导电性和大表面积等显著特性。MXene的这些特性使其成为包括能量存储、催化和电子器件在内的各种应用的有吸引力的材料。MXene的整合增强了DSSC电极中的离子传输、染料吸附和电荷传输。本文综述深入分析了二维MXene的使用以及与碳纳米管(CNT)、还原氧化石墨烯(rGO)、二维MoS以及二维 - 二维异质结构等杂化物在光伏(PV)电极修饰中的应用,包括阳极、光阳极、复合修饰电极、对电极(CE)和电解质。讨论并评估了各种沉积技术对性能指标的影响。在DSSC中使用MXene修饰电极总体上表明了提高这些太阳能电池性能和效率的潜力。文章探讨了该策略的潜在优势和影响,阐明了该领域令人着迷的进展,并强调了MXene作为可再生能源应用中有价值物质的潜力。我们还讨论了在DSSC中使用MXene修饰电极的困难和潜在益处,并强调需要进一步研究以提高稳定性、优化MXene整合技术并增强器件的长期性能。还涵盖了基于MXene的电极修饰在商业应用中的可扩展性和潜力,探讨了未来的问题和前景,重点强调了更多研究的必要性。用MXene修饰的电极可以提高DSSC的性能并推动可持续能源转换。

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