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化合物半导体Cu2ZnSnS4太阳电池与人工光合作用制氢 被引量:2
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作者 江丰 李林涛 +2 位作者 冯旷 王康 黄定旺 《华南师范大学学报(自然科学版)》 CAS 北大核心 2020年第6期1-9,共9页
太阳能作为一种取之不尽、用之不竭的清洁能源,将成为未来新能源的重要组成部分.目前人们除了利用太阳能光伏发电以外,还有利用仿生光合作用将太阳能转化为化学能、利用半导体光电极分解水制氢等方式.而在半导体材料中,低成本环保型的... 太阳能作为一种取之不尽、用之不竭的清洁能源,将成为未来新能源的重要组成部分.目前人们除了利用太阳能光伏发电以外,还有利用仿生光合作用将太阳能转化为化学能、利用半导体光电极分解水制氢等方式.而在半导体材料中,低成本环保型的化合物半导体光伏材料(如Cu2ZnSnS4等)具有优良的光伏发电性能,同时也非常适合作为太阳光分解水制氢的材料.文章综述了近年来在Cu2ZnSnS4光伏电池及其太阳光分解水制氢领域的研究进展. 展开更多
关键词 化合物半导体材料 电池结构 太阳分解水制氢 Cu2ZnSnS4
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光伏材料高纯镓的规模化生产研究 被引量:1
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作者 吴广杰 于金凤 朱刘 《广东化工》 CAS 2018年第16期120-120,117,共2页
本文主要介绍了高纯镓的规模化生产研究,尤其重点介绍了结晶法在高纯镓的规模化生产中的应用,介绍了4种高纯镓的提纯方法的不同点。针对高纯镓的规模化生产,重点介绍了模块式结晶器的结构及各个结构的作用。
关键词 结晶提纯法 模块式结晶器 光伏半导体材料
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Nanotube photovoltaic configuration for enhancement of carrier generation and collection 被引量:1
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作者 Hongmei Dang Vijay P. Singh Sai Guduru Suresh Rajaputra Zhi David Chen 《Nano Research》 SCIE EI CAS CSCD 2015年第10期3186-3196,共11页
We report on the growth of geometric feature tuned semiconductor nanotubes on a transparent substrate through the application of an anodic aluminum oxide membrane-assisted method. Three-dimensional nanotube solar cell... We report on the growth of geometric feature tuned semiconductor nanotubes on a transparent substrate through the application of an anodic aluminum oxide membrane-assisted method. Three-dimensional nanotube solar cells are developed in which semiconductor absorbers are not only used to fill the inner core of the nanotubes, but also to replace the membrane and to fill the intertube space between the nanotubes. The nanotube solar cells generate and separate carriers in three dimensions, namely, inside the cores of the nanotubes, in the intertube space between the nanotubes along the radial direction, and above the nanotubes along the axial direction. In preliminary experiments conducted to demonstrate the potential of this approach, nanotube CdS-CdTe solar cells were fabricated. CdS nanotubes with an inner diameter, wall thickness and intertube spacing of 35, 20, and 35 nm, respectively, were grown; the porosity and CdS nanotube density were 36.5% and 2.26 × 10^10 nanotubes/cm^2, respectively. These features of CdS nanotubes enable more efficient carrier collection because of the reduced recombination, especially in those cases in which the minority carrier lifetime is short, thus resulting in a diffusion length of less than 100 nm. Nanotube CdS-CdTe solar cells exhibit a wide and strong spectral response and quantum efficiency, indicating enhanced light absorption and carrier generation and collection. Without the benefit of an antireflection coating, the cells exhibited a wide and strong spectral response of quantum efficiency, and a short current density of 25.5 mA/cm^2, an open circuit voltage of 750 mV, and a power conversion efficiency of 10.7% under 1-sun illumination. The materials and electro-optical characterizations indicated well-defined junction and interface behavior in these 3D nanotube solar cell configurations. 展开更多
关键词 cadmium sulfide nanotube three-dimensionalnanotube solar cells membrane-assistedpatterning carrier generation andcollection
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