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Optical and electrical properties of SnS semiconductor crystals grown by physical vapor deposition technique

机译:通过物理气相沉积技术生长的SnS半导体晶体的光学和电学性质

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Tin sulfide (SnS) is a material of interest for use as an absorber in low cost solar cells. Single crystals of SnS were grown by the physical vapor deposition technique. The grown crystals were characterized to evaluate the composition, structure, morphology, electrical and optical properties using appropriate techniques. The composition analysis indicated that the crystals were nearly stoichiometric with Sn-to-S atomic percent ratio of 1.02. Study of their morphology revealed the layered type growth mechanism with low surface roughness. The grown crystals had orthorhombic structure with (0 4 0) orientation. They exhibited an indirect optical band gap of 1.06 eV and direct band gap of 1.21 eV with high absorption coefficient (up to 10~3 cm~(-1)) above the fundamental absorption edge. The grown crystals were of p-type with an electrical resistivity of 120 Ω cm and carrier concentration 1.52×10~(15) cm~(-3). Analysis of optical absorption and diffuse reflectance spectra showed the presence of a wide absorption band in the wavelength range 3001200 nm, which closely matches with a significant part of solar radiation spectrum. The obtained results were discussed to assess the suitability of the SnS crystal for the fabrication of optoelectronic devices. All rights reserved.
机译:硫化锡(SnS)是一种用作低成本太阳能电池吸收剂的材料。通过物理气相沉积技术生长SnS的单晶。使用适当的技术对生长的晶体进行表征,以评估其组成,结构,形态,电学和光学性质。组成分析表明,该晶体几乎是化学计量的,Sn-S原子百分比比为1.02。对它们的形态的研究揭示了具有低表面粗糙度的分层型生长机理。生长的晶体具有(0 4 0)取向的正交晶体结构。它们表现出1.06 eV的间接光学带隙和1.21 eV的直接带隙,并且在基本吸收边缘以上具有高吸收系数(高达10〜3 cm〜(-1))。生长的晶体为p型,电阻率为120Ωcm,载流子浓度为1.52×10〜(15)cm〜(-3)。对光吸收和漫反射光谱的分析表明,在3001200 nm波长范围内存在宽吸收带,这与太阳辐射光谱的重要部分非常匹配。讨论了获得的结果,以评估SnS晶体对制造光电器件的适用性。版权所有。

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