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首页> 外文期刊>ACS applied materials & interfaces >All-Solution-Processed Thermally and Chemically Stable Copper-Nickel Core-Shell Nanowire-Based Composite Window Electrodes for Perovskite Solar Cells
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All-Solution-Processed Thermally and Chemically Stable Copper-Nickel Core-Shell Nanowire-Based Composite Window Electrodes for Perovskite Solar Cells

机译:全溶液加工热和化学稳定的铜镍芯 - 含有用于Perovskite太阳能电池的基于基于的基于复合窗电极

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Organic-inorganic hybrid perovskite solar cells (PSCs) have recently attracted tremendous attention because of their excellent efficiency and the advantage of a low-cost fabrication process. As a transparent electrode for PSCs, the application of copper nanowire (CuNW)-network was limited because. of its thermal/chemical instability, despite its advantages in terms of high optical/electrical properties and low-cost production. Here, the copper-nickel core-shell nanowire (Cu@Ni NW)-based composite electrode is proposed as a bottom window electrode for PSCs, without the involvement of a high cost precious metal and vacuum process. The dense and uniform Ni protective shell for CuNWs is attainable by simple electroless plating, and the resulting Cu@Ni NA/Vs exhibit outstanding chemical stability as well as thermal stability compared with bare CuNWs. When the Ni layer with the optimal thickness is introduced, the Cu@Ni NW electrode shows a high transmittance of 80.5% AVT at 400-800 nm, and a sheet resistance of 49.3 +/- 5 Omega sq(-1). Using the highly stable Cu@Ni NWs, the composite electrode structure is fabricated with sol-gel-derived Al-doped zinc oxide (AZO) over-layer for better charge collection and additional protection against iodine ions from the perovskite. The PSCs fabricated with AZO/Cu@Ni NW-based composite electrode demonstrate a power conversion efficiency (PCE) of 12.2% and excellent long-term stability maintaining 91% of initial PCE after being stored for 500 h at room temperature. Experimental results demonstrate the potential of highly stable Cu@Ni NW-based electrodes as the cost-effective alternative transparent electrode, which can facilitate the commercialization of PSCs.
机译:有机无机杂交钙钛矿太阳能电池(PSC)最近引起了巨大的关注,因为它们的效率优异和低成本制造过程的优点。作为PSC的透明电极,铜纳米线(CUNW)-NETWORK的应用是有限的,因为。尽管其在高光/电性能和低成本生产方面,其热/化学不稳定性。这里,基于铜 - 镍芯 - 壳纳米线(Cu @ Ni NW)被基于用于PSC的底窗电极,而不涉及高成本贵金属和真空过程。通过简单的化学镀可实现用于CUNW的致密和均匀的Ni保护壳,与裸露的CUNW相比,所得Cu @ Ni Na / Vs表现出优异的化学稳定性以及热稳定性。当引入具有最佳厚度的Ni层时,Cu @ Ni Ni电极显示出80.5%AVT的高透射率,400-800nm,薄层电阻为49.3 +/- 5ωSq(-1)。使用高度稳定的Cu @ Ni NWS,复合电极结构用溶胶 - 凝胶衍生的Al掺杂的氧化锌(AZO)过层制成,用于更好地收集和额外保护来自PeroVskite的碘离子。用Azo / Cu @ Ni Ni Ni Ni Ni的合成电极制造的PSCS表明,在室温下储存500h后,将9.2%的功率转换效率(PCE)呈12.2%,优异的长期稳定性保持91%的初始PCE。实验结果表明,基于高度稳定的Cu @ Ni Ni Ni Ni Ni Ni Ni Ni Ni Ni Ni Ni透明电极的电位,可以促进PSC的商业化。

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