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Photoelectric properties of highly conductive samarium-doped cadmium telluride thin films for photovoltaic applications

机译:高导电钐掺杂碲化镉薄膜的光电性能,用于光伏应用

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摘要

Cadmium telluride (CdTe) is one of the most important materials for photovoltaic applications. CdTe-based solar cells have significantly high light-to-current conversion efficiency. However, further improvement of the efficiency is affected by two major problems: high electrical resistivity of CdTe and the difficulty to form ohmic contacts with this material. Extrinsic doping has been employed to rectify these problems; in particular, samarium is a rare-earth element that is characterized by its excellent electrical conductivity, high valence, and low oxidation affinity. In this work, thermally evaporated samarium-doped CdTe thin films were deposited with a samarium concentration of 0-6.2 at%. After doping, there were drastic changes in the photoelectric properties of the films, as demonstrated by: (i) conversion of CdTe from pto n-type material, (ii) reduction of electrical resistivity by eight orders achieving the lowest value of 7.6 x 10(-2) Omega.cm, (iii) formation of ohmic contacts to CdTe, and (iv) reduction of the optical bandgap, which enhanced the absorption of solar radiation.
机译:碲化镉(CDTE)是光伏应用最重要的材料之一。基于CDTE的太阳能电池具有显着高的光到电流转换效率。然而,进一步提高效率受到两个主要问题的影响:CDTE的高电阻率和难以形成欧姆触点的难度。外在掺杂已被用来纠正这些问题;特别地,钐是一种稀土元素,其特征在于其优异的导电性,高价值和低氧化亲和力。在这项工作中,将热蒸发的钐掺杂的CdTe薄膜沉积,钐浓度为0-6.2at%。掺杂后,薄膜的光电性能发生急剧变化,如下所示:(i)从PTO n型材料转化CdTe,(ii)通过八个订单降低电阻率,实现最低值为7.6 x 10 (-2)OMEGA.cm,(iii)形成欧姆接触的CDTE,(iv)减少光学带隙,增强了太阳辐射的吸收。

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