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首页> 外文期刊>Nanoscale >Quasi-layer Co2P-polarized Cu3P nanocomposites with enhanced intrinsic interfacial charge transfer for efficient overall water splitting
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Quasi-layer Co2P-polarized Cu3P nanocomposites with enhanced intrinsic interfacial charge transfer for efficient overall water splitting

机译:Quasi-layer Co2P-polarized Cu3P纳米复合材料与增强内在界面电荷传输效率总体水分裂

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摘要

The search for efficient, stable and low-cost electrocatalysts for water splitting is a big challenge faced by energy conversion systems. In this work, Cu3P-Co2P nanocomposites with numerous interfaces are employed as catalysts for water splitting in alkaline solution. The quasi-layer structure of Co2P and the polarized plane of Cu3P endow the nanocomposites with large surface areas and active sites, which substantially favors the intrinsic charge transfer and boosts the catalytic activity. In addition, Cu3P reduces the lattice mismatch between Co2P and nickel foam and then enhances the catalytic stability. For the optimized Cu(3)P0.75Co(2)P catalyst, a low overpotential of 124.6 mV@-20 mA cm(-2) is required with a Tafel slope of 65 mV dec(-1) for the hydrogen evolution reaction (HER) and an overpotential of 334 mV (at 20 mA cm(-2)) is required for the oxygen evolution reaction (OER). The potential for the overall-water-splitting@10 mA cm(-2) is about 1.55 V with the optimized Cu(3)P0.75Co(2)P catalysts. Theoretical and experimental results both reveal the significance of coupling of Cu3P in the two processes of water-splitting for the Cu3P-Co2P nanocomposite catalyst.
机译:寻找高效、稳定、低成本electrocatalysts水分裂是一个很大的能量转换系统所面临的挑战。这项工作,与众多Cu3P-Co2P纳米复合材料接口是作为催化剂对水在碱性溶液分离。Co2P结构和偏振Cu3P面赋予大表面积的纳米复合材料和活跃的网站,大大支持内在的电荷转移和促进催化活性。Co2P和泡沫镍晶格不匹配然后提高催化稳定性。优化铜(3)P0.75Co (2) P催化剂、低过电压的124.6马mV@-20厘米(2)要求塔费尔坡65 mV 12月(1)(她的)和一个氢进化反应过电压334 mV(马在20厘米(2))进化所需的氧气反应(OER)。overall-water-splitting@10的潜力马厘米(2)约为1.55 V的优化铜(3)P0.75Co (2) P催化剂。实验结果揭示了意义Cu3P耦合的两个过程水分解Cu3P-Co2P纳米复合材料催化剂。

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