Sunlight-Driven Fixation of CO<sub>2</sub> to Cyclic Carbonates Using Carbon Dots as a Photothermal Catalyst. [PDF]
Wang R +12 more
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Broadband light absorption in cadmium telluride thin-film solar cells <i>via</i> composite light trapping techniques. [PDF]
Suny AA +4 more
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Nitrogen-doped Cu<sub>4</sub>O<sub>3</sub> thin films as high-performance counter electrodes for quantum dot-sensitized solar cells. [PDF]
Minh Khang P +3 more
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Unveiling the Potential of Reduced Graphene Oxide in Self-Powered Photodetectors. [PDF]
Thakuria BR +3 more
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Interface reconstruction strategy enabling the efficient light-driven amination of furfuryl alcohol. [PDF]
He Y +10 more
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Abstract The structural, morphological and optoelectrical characteristics of cadmium sulfide (CdS) thin films grown on ultra-thin glass substrates via Radio Frequency (RF) magnetron sputtering and chemical bath deposition (CBD) have been explored in this study.
Mustapha Isah +2 more
exaly +2 more sources
In this study, the impact of locational CdCl2 treatment on the MgZnO/CdS stacks was investigated. In the stack structure with an ultra-thin MgZnO layer, the samples with CdCl2 applied to the inter-face, the top-surface, and both the inter-face and top-surface were grown by chemical bath deposition.
Ali Ciris
exaly +3 more sources
Improvements in ultra-thin CdS/CdTe solar cells
2011 37th IEEE Photovoltaic Specialists Conference, 2011Thinning the CdTe is advantageous, inter alia, to reduce the consumption of Te in solar modules; however the CdTe cell performance typically decreases with CdTe thickness. In comparison with other deposition techniques, sputtering appears to be well suited for ultra-thin device preparation partly due to control over the growth rate, grain size, and ...
K A Wieland, A D Compaan
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Ultra-thin CdS for highly performing chalcogenides thin film based solar cells
Solar Energy Materials and Solar Cells, 2016Abstract Ultra-thin CdS layers non intentionally doped and doped with Cu were grown by chemical bath deposition and applied as buffer layers for chalcogenide CuIn 1− x Ga x Se 2 and Cu 2 ZnSnSe 4 (CZTSe) based solar cells. We demonstrate that the use of Cu as dopant allows to reduce the CdS thickness below 30 nm while keeping the same efficiency
Marcel Placidi +2 more
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A numerical study of high efficiency ultra-thin CdS/CIGS solar cells
African Journal of Science, Technology, Innovation and Development, 2016This work aims to improve the performance of solar cells with structure SnO2/CdS/CIGS/Mo by using the solar cell capacitance simulator (SCAPS-1D). Our idea is to insert the SnS layer between the absorber layer CIGS and the Mo (molybdenum) back contact. A maximum conversion efficiency of 24.45% (VOC = 0.78 V, JSC = 38.66 mA/cm2, FF = 0.80) was achieved ...
Sabrina Benabbas +3 more
exaly +2 more sources

