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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Antimony sulfide as a light absorber in highly ordered, coaxial nanocylindrical arrays: preparation and integration into a photovoltaic device
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Antimony sulfide as a light absorber in highly ordered, coaxial nanocylindrical arrays: preparation and integration into a photovoltaic device

机译:硫化锑在高度有序的同轴纳米圆柱阵列中作为光吸收剂:制备并集成到光伏设备中

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摘要

We demonstrate the preparation of functional 'extremely thin absorber' solar cells consisting of massively parallel arrays of nanocylindrical, coaxial n-TiO2/i-Sb2S3/p-CuSCN junctions. Anodic alumina is used as an inert template that provides ordered pores of 80 nm diameter and 1-50 mu m length. Atomic layer deposition (ALD) then coats pores of up to 20 mm with thin layers of the electron conductor and the intrinsic light absorber. The crystallization of the initially amorphous Sb2S3 upon annealing is strongly promoted by an underlying crystalline TiO2 layer. After the remaining pore volume is filled with the hole conductor by solution evaporation, the resulting coaxial p-i-n junctions display stable diode and photodiode electrical characteristics. A recombination timescale of 40 ms is extracted from impedance spectroscopy in open circuit conditions, whereas transient absorption spectroscopy indicates that holes are extracted from Sb2S3 with a lifetime of 1 ns.
机译:我们演示了功能性的“极薄吸收体”太阳能电池的制备,该太阳能电池由纳米圆柱同轴n-TiO2 / i-Sb2S3 / p-CuSCN结的大规模平行阵列组成。阳极氧化铝用作惰性模板,可提供直径为80 nm,长度为1-50μm的有序孔。然后,原子层沉积(ALD)用电子导体和本征光吸收剂的薄层覆盖最大20毫米的孔。初始的非晶态Sb2S3退火后的结晶会受到下面的结晶TiO2层的强烈促进。在剩余的孔体积通过溶液蒸发被空穴导体填充后,所得的同轴p-i-n结表现出稳定的二极管和光电二极管电特性。在开路条件下,从阻抗光谱中提取了40 ms的重组时间标度,而瞬态吸收光谱表明,从Sb2S3中提取的空穴的寿命为1 ns。

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