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Device Performance of the Mott InsulatorDevice Performance of the Mott Insulator LaVO3 as a Photovoltaic Material

机译:莫特绝缘子的器件性能莫特绝缘子LaVO3作为光伏材料的器件性能

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摘要

Searching for solar-absorbing materials containing earth-abundant elements with chemical stability is of critical importance for advancing photovoltaic technologies. Mott insulators have been theoretically proposed as potential photovoltaic materials. In this paper, we evaluate their performance in solar cells by exploring the photovoltaic properties of Mott insulator LaVO3 (LVO). LVO films show an indirect band gap of 1.08 eV as well as strong light absorption over a wide wavelength range in the solar spectrum. First-principles calculations on the band structure of LVO further reveal that the d−d transitions within the upper and lower Mott-Hubbard bands and p−d transitions between the O 2p and V 3d band contribute to the absorption in visible and ultraviolet ranges, respectively. Transport measurements indicate strong carrier trapping and the formation of polarons in LVO. To utilize the strong light absorption of LVO and to overcome its poor carrier transport, we incorporate it as a light absorber in solar cells in conjunction with carrier transporters and evaluate its device performance. Our complementary experimental and theoretical results on such prototypical solar cells made of Mott-Hubbard transition-metal oxides pave the road for developing light-absorbing materials and photovoltaic devices based on strongly correlated electrons.
机译:寻找含有具有化学稳定性的富含地球的元素的太阳能吸收材料对于推进光伏技术至关重要。理论上已经提出了莫特绝缘体作为潜在的光伏材料。在本文中,我们通过探索Mott绝缘子LaVO3(LVO)的光伏特性来评估其在太阳能电池中的性能。 LVO薄膜显示出1.08 eV的间接带隙以及在太阳光谱的宽波长范围内的强光吸收能力。对LVO的能带结构进行的第一性原理计算进一步表明,上下Mott-Hubbard能带内的d-d跃迁以及O 2p和V 3d能带之间的p-d跃迁有助于可见光和紫外线范围内的吸收,分别。传输测量表明,在LVO中有很强的载流子捕获和极化子形成。为了利用LVO的强光吸收能力并克服其不佳的载流子传输,我们将其与载流子一起作为太阳能电池中的光吸收剂与载流子结合使用,并评估其器件性能。我们对由Mott-Hubbard过渡金属氧化物制成的原型太阳能电池的补充实验和理论结果为开发基于强相关电子的光吸收材料和光伏器件铺平了道路。

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