Lu Haifei, Ren Xingang, Ouyang Dan, Choy Wallace C H
Department of Electrical and Electronic Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong, 999077, P. R. China.
School of Science, Wuhan University of Technology, Wuhan, 430070, P.R. China.
Small. 2018 Apr;14(14):e1703140. doi: 10.1002/smll.201703140. Epub 2018 Jan 22.
Emerging novel metal electrodes not only serve as the collector of free charge carriers, but also function as light trapping designs in photovoltaics. As a potential alternative to commercial indium tin oxide, transparent electrodes composed of metal nanowire, metal mesh, and ultrathin metal film are intensively investigated and developed for achieving high optical transmittance and electrical conductivity. Moreover, light trapping designs via patterning of the back thick metal electrode into different nanostructures, which can deliver a considerable efficiency improvement of photovoltaic devices, contribute by the plasmon-enhanced light-mattering interactions. Therefore, here the recent works of metal-based transparent electrodes and patterned back electrodes in photovoltaics are reviewed, which may push the future development of this exciting field.
新兴的新型金属电极不仅可作为自由电荷载流子的收集器,还可在光伏领域用作光捕获设计。作为商用氧化铟锡的潜在替代品,由金属纳米线、金属网和超薄金属膜组成的透明电极被深入研究和开发,以实现高光学透过率和电导率。此外,通过将背面厚金属电极图案化为不同的纳米结构来进行光捕获设计,这可以通过等离子体增强的光散射相互作用显著提高光伏器件的效率。因此,本文综述了光伏领域中基于金属的透明电极和图案化背电极的最新研究成果,这可能会推动这一令人兴奋的领域的未来发展。