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基于MXene的新型纳米复合材料掺杂二氧化锡以提高钙钛矿太阳能电池的性能。

MXene-based novel nanocomposites doped SnO for boosting the performance of perovskite solar cells.

作者信息

Alhamada T F, Hanim M A Azmah, Jung D W, Saidur R, Nuraini A A, Hasan W Z Wan, Tan K H, Noh M Mohamad, Teridi M A M

机构信息

Department of Mechanical and Manufacturing Engineering, Faculty of Engineering, Universiti Putra Malaysia, 43400, Serdang, Selangor, Malaysia.

Department of Scientific Affairs, University Presidency, Northern Technical University, Mosul, 41001, Iraq.

出版信息

Sci Rep. 2024 Jun 25;14(1):14638. doi: 10.1038/s41598-024-64632-1.

Abstract

Since being first published in 2018, the use of two-dimensional MXene in solar cells has attracted significant interest. This study presents, for the first time, the synthesis of an efficient hybrid electrocatalyst in the form of a nanocomposite (MXene/CoS)-SnO designed to function as a high-performance electron transfer layer (ETL). The study can be divided into three distinct parts. The first part involves the synthesis of single-layer TiCT MXene nanosheets, followed by the preparation of a CoS solution. Subsequently, in the second part, the fabrication of MXene/CoS heterostructure nanocomposites is carried out, and a comprehensive characterization is conducted to evaluate the physical, structural, and optical properties. In the third part, the attention is on the crucial characterizations of the novel nanocomposite-electron transport layer (ETL) solution, significantly contributing to the evolution of perovskite solar cells. Upon optimising the composition, an exceptional power conversion efficiency of more than 17.69% is attained from 13.81% of the control devices with fill factor (FF), short-circuit current density (J), and open-circuit voltage (V) were 66.51%, 20.74 mA/cm, and 1.282 V. Therefore, this PCE is 21.93% higher than the control device. The groundbreaking MXene/CoS (2 mg mL) strategy reported in this research represents a promising and innovative avenue for the realization of highly efficient perovskite solar cells.

摘要

自2018年首次发表以来,二维MXene在太阳能电池中的应用引起了广泛关注。本研究首次展示了一种高效的纳米复合杂化电催化剂(MXene/CoS)-SnO的合成,该催化剂设计用作高性能电子传输层(ETL)。该研究可分为三个不同部分。第一部分涉及单层TiCT MXene纳米片的合成,随后制备CoS溶液。接着,在第二部分中,制备MXene/CoS异质结构纳米复合材料,并进行全面表征以评估其物理、结构和光学性质。在第三部分中,重点是对新型纳米复合电子传输层(ETL)溶液的关键表征,这对钙钛矿太阳能电池的发展有显著贡献。通过优化组成,从填充因子(FF)、短路电流密度(J)和开路电压(V)分别为66.51%、20.74 mA/cm和1.282 V的对照器件的13.81%获得了超过17.69%的优异功率转换效率。因此,该功率转换效率比对照器件高21.93%。本研究报道的开创性MXene/CoS(2 mg mL)策略为实现高效钙钛矿太阳能电池提供了一条有前景的创新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d79/11199647/19f664e50978/41598_2024_64632_Fig1_HTML.jpg

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