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Size-dependent optical absorption of Cu2ZnSn(Se,S)(4) quantum dot sensitizers from ab initio many-body methods

机译:Cu2ZNSN(SE,S)(4)量子点敏化剂的尺寸依赖性光学吸收来自AB Initio的许多身体方法

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Quantum-dot sensitized solar cells are an exciting technology because they allow to overcome the efficiency limit of single-junction solar cells. The tunability of their band gap with quantum-dot size allows to make multi-junction solar cells with optimized band gaps, moreover using simple production techniques. Here, we study quantum-dot sensitizers made of the earth-abundant photovoltaic absorbers Cu2ZnSnS4 and Cu2ZnSnS4 (CZTS). Using many-body perturbation theory (GW and the Bethe-Salpeter equation) and time-dependent density-functional theory, we calculate the dependence of the photoemission and optical band gap on the quantum-dot size, accounting for excitonic effects. Our study completes the existing knowledge about quantum confinement in CZTS nanocrystals, for which experimental data are sparse and provide the power law that describes the dependence of the optical gap on the quantum-dot size.
机译:量子点敏化太阳能电池是令人兴奋的技术,因为它们允许克服单结太阳能电池的效率极限。 随着量子点尺寸的带隙的可调性允许使多结太阳能电池具有优化的带隙,而且使用简单的生产技术。 在这里,我们研究由地球丰光的光伏吸收剂Cu2zNSNS4和Cu2ZNS4(CZT)制成的量子点敏化剂。 使用许多身体扰动理论(GW和贝特 - 排水管方程)和时间依赖性密度 - 功能理论,我们计算了光鼓励和光学带隙对量子点尺寸的依赖性,占兴奋效应。 我们的研究完成了关于CZT纳米晶体中量子限制的现有知识,其中实验数据是稀疏的,并提供描述光学间隙对量子点尺寸的依赖性的动力法。

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