Grids on TCOs for higly transparent materials with a resistivity below 1 Ohm/sq

J. van Deelen, H. Rendering, Hero het Mannetje, A. Hovestad
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引用次数: 3

Abstract

Various transparent conducting materials are compared based on their transparency versus sheet resistance characteristics. At present, transparent conducting oxides (TCOs) are still superior in performance compared to various recent alternatives and can only be surpassed by the combination of TCOs with a metal grid. Results on modeling and design optimization are presented using a monolithically integrated CIGS cell configuration as case. This study showed that considerable efficiency enhancement (17% in power output) can be achieved for metal grid TCO combinations compared to single TCOs. Conductivity improvement has been experimentally verified on both commercial ITO PET foil as well as on ZnO coated glass with electrochemically deposited metal grids. Conductivities below 0,1 Ohm/sq were reached and 80 times and 400 times conductivity improvements were obtained at a transparency loss of only 3% and 6%, respectively. It was also found that electrochemical deposition results in more conductive and more transparent grids than obtained by Ag-ink screen printing.
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电阻率低于1欧姆/平方的高透明材料的tco上的栅格
对各种透明导电材料的透明度与片电阻特性进行了比较。目前,透明导电氧化物(tco)在性能上仍然优于最近的各种替代品,只有将tco与金属网格结合才能超越。以单片集成CIGS电池配置为例,给出了建模和设计优化的结果。该研究表明,与单一TCO相比,金属网格TCO组合可以实现相当大的效率提高(输出功率提高17%)。电导率的提高已经在商用ITO PET箔和电化学沉积金属网格的ZnO镀膜玻璃上得到了实验验证。电导率低于0.1欧姆/平方,在透明度损失仅3%和6%的情况下,电导率分别提高了80倍和400倍。与银墨丝网印刷相比,电化学沉积可获得更导电、更透明的网格。
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