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Two-dimensional InSb/GaAs- and InSb/InP-based tandem photovoltaic device with matched bandgap

机译:二维InSb /砷化镓-和InSb / InP-based串联光伏设备匹配的能带

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The past several years have witnessed remarkable research efforts to develop high-performance photovoltaics (PVs), to curtail the energy crisis by avoiding dependence on traditional fossil fuels. In this regard, there is an urgent need to accelerate research progress on new low-dimensional semiconductors with superior electronic and optical properties. Herein, combining abundant related PV experimental data in the literature and our systematic theoretical calculations, we propose two-dimensional (2D) InSb/GaAs and InSb/InP-based tandem PVs with high solar-to-electric efficiency up to near 30.0%. Firstly, according to first-principles calculations, the stability, electronic and optical properties of single-layer group-III–V materials (XY, X = Ga and In, Y = N, P, As, Sb, and Bi) are systematically introduced. Next, due to the high bandgap (Eg) of GaAs and InP being a perfect match with the low Eg of InSb, InSb/GaAs- and InSb/InP-based tandem PVs are constructed. In addition, the complementary absorption spectra of these two subcells can facilitate the achievement of high tandem power conversion efficiency. Furthermore, we have analyzed in detail the influencing factors for PCE and the physical mechanism of the optimized match between the top and bottom subcells in the tandem configurations. Our designed 2D-semiconductor-based PVs can be expected to bring a new perspective for future commercialized high-efficiency energy devices.
机译:过去的几年中有了长足研究开发高性能的努力光伏(pv)、减少能源危机通过避免依赖传统的化石燃料。加快研究新进展低维半导体与优越的电子和光学性质。结合丰富的光伏相关实验数据在文学和我们的系统理论计算,我们提出二维(2 d)InSb /砷化镓和InSb / InP-based串联与高pvsolar-to-electric效率接近30.0%。首先,根据采用计算,稳定性、电子和单层族的光学特性材料(XY, X = Ga和Y = N, P,某人,和Bi)是系统地介绍。高能带(如砷化镓)并输入一个完美匹配的低如InSb, InSb /砷化镓-构造和InSb / InP-based串联pv。另外,补充吸收光谱这两个太阳光可以促进成就串联功率转换效率高。此外,我们详细分析了四氯乙烯和物理的影响因素机制的优化匹配和底部的太阳光串联配置。我们的设计2 d-semiconductor-based pv将为未来带来一个新的视角商业化的高效能源设备。

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