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基于锡和锗的二维 Ruddlesden-Popper 混合钙钛矿在潜在的无铅光伏和光电应用中的研究进展。

Tin and germanium based two-dimensional Ruddlesden-Popper hybrid perovskites for potential lead-free photovoltaic and photoelectronic applications.

机构信息

Department of Chemistry and Nebraska Center for Materials and Nanoscience, University of Nebraska-Lincoln, Lincoln, Nebraska 68588, USA.

出版信息

Nanoscale. 2018 Jun 21;10(24):11314-11319. doi: 10.1039/c8nr03589j.

Abstract

Despite their high power conversion efficiency, the commercial applications of hybrid organic-inorganic lead (Pb) halide perovskite based solar cells are still hampered by concerns about the toxicity of Pb and the structural stability in open air. Herein, based on density-functional theory computation, we show that lead-free tin (Sn) and germanium (Ge) based two-dimensional (2D) Ruddlesden-Popper hybrid organic-inorganic perovskites with a thickness of a few unit-cells, BA2MAn-1MnI3n+1 (M = Sn or Ge, n = 2-4), possess desirable electronic, excitonic and light absorption properties, thereby showing promise for photovoltaic and/or photoelectronic applications. In particular, we show that by increasing the layer thickness of the Sn-based 2D perovskites, the bandgap can be lowered towards the optimal range (0.9-1.6 eV) for solar cells. Meanwhile, the exciton binding energy is reduced to a more optimal value. In addition, theoretical assessment indicates that the thermodynamic stability of Sn-/Ge-based 2D perovskites is notably enhanced compared to that of their 3D analogues. These features render the Sn-/Ge-based 2D hybrid perovskites with a thickness of a few tens of unit cells promising lead-free perovskites with much improved structural stabilities for photovoltaic and/or photoelectronic applications.

摘要

尽管混合有机-无机铅(Pb)卤化物钙钛矿太阳能电池具有较高的能量转换效率,但由于对 Pb 的毒性和在开放空气中的结构稳定性的担忧,其商业应用仍然受到限制。在此,基于密度泛函理论计算,我们表明具有几个单元厚度的无铅锡(Sn)和锗(Ge)基二维(2D)Ruddlesden-Popper 混合有机-无机钙钛矿 BA2MAn-1MnI3n+1(M = Sn 或 Ge,n = 2-4)具有理想的电子、激子和光吸收特性,因此有望用于光伏和/或光电应用。特别是,我们表明,通过增加 Sn 基二维钙钛矿的层厚度,可以将能带隙降低到适合太阳能电池的最佳范围(0.9-1.6 eV)。同时,激子结合能也降低到更理想的值。此外,理论评估表明,与它们的 3D 类似物相比,Sn-/Ge 基二维钙钛矿的热力学稳定性明显增强。这些特性使得具有数十个单元厚度的 Sn-/Ge 基二维混合钙钛矿有望成为具有更好结构稳定性的无铅钙钛矿,适用于光伏和/或光电应用。

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