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WPCl单层:一种具有适度直接带隙和强可见光吸收能力的未被探索的二维材料,用于高效太阳能电池。

WPCl monolayer: an unexplored 2D material with moderate direct bandgap and strong visible-light absorption for highly efficient solar cells.

作者信息

Qiao Yusen, Shen Huimin, Zhang Fumin, Liu Siyuan, Yin Huabing

机构信息

Joint Center for Theoretical Physics, and Institute for Computational Materials Science, School of Physics and Electronics, Henan University, Kaifeng 475004, China.

International Joint Research Laboratory of New Energy Materials and Devices of Henan Province, School of Physics and Electronics, Henan University, Kaifeng 475004, China.

出版信息

Nanoscale. 2022 Sep 2;14(34):12386-12394. doi: 10.1039/d2nr03009h.

Abstract

The discovery of novel two-dimensional (2D) materials with excellent electronic and optoelectronic properties have attracted much scientific attention. Based on the first-principles calculations, we predict an unexplored 2D WPCl monolayer, which is potentially strippable from its bulk counterpart with the exfoliation energy of only 0.16 J m. The dynamical, thermal, and mechanical stabilities have also been confirmed. Remarkably, WPCl monolayer is direct semiconductor with a bandgap of 1.25 eV, which endows the monolayer with very strong visible-light absorption in the magnitude of 10 cm. Meanwhile, the calculated carrier mobilities of WPCl monolayer can reach to 10 cm V s. Considering the moderate direct bandgap and high carrier mobility, WPCl monolayer should be a superior candidate for the donor material of excitonic solar cells. The estimated power conversion efficiency of the fabricated WPCl/BiWO heterojunction reaches as high as 21.64%, which much superior to those of most recently reported 2D heterojunction. All these outstanding properties accompanied with its experimental feasibility endows WPCl monolayer with promising photovoltaic applications.

摘要

具有优异电子和光电特性的新型二维(2D)材料的发现引起了科学界的广泛关注。基于第一性原理计算,我们预测了一种未被探索的二维WPCl单层,它有可能从其体相材料中剥离出来,剥离能仅为0.16 J m 。其动力学、热稳定性和机械稳定性也得到了证实。值得注意的是,WPCl单层是一种直接带隙为1.25 eV的半导体,这使得该单层在10 cm 的量级上具有非常强的可见光吸收能力。同时,计算得到的WPCl单层的载流子迁移率可达10 cm V s 。考虑到适中的直接带隙和高载流子迁移率,WPCl单层应该是激子太阳能电池供体材料的一个优异候选者。所制备的WPCl/BiWO异质结的估计功率转换效率高达21.64%,远高于最近报道的大多数二维异质结。所有这些优异特性及其实验可行性使WPCl单层具有广阔的光伏应用前景。

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