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Palladium supported on phosphorus-nitrogen dual-doped carbon nanoparticles as cathode for hydrogen evolution in PEM water electrolyser

机译:钯 - 氮双掺杂碳纳米粒子的磷氮双掺杂碳纳米粒子作为PEM水电解器氢进化的阴极

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摘要

Phosphorus-nitrogen dual-doped carbon nanoparticles (PN-CNPs) have been successfully synthesised using chemical vapour deposition (CVD), in the presence of triphenylphosphine and acetonitrile. PN-CNPs are used as carbon support for Pd and employed as electrocatalyst in hydrogen evolution reactions. The prepared Pd/PN-CNPs electrocatalyst was subjected to morphological and electrochemical studies carried out using FE-SEM, EDS, ICP, XRD, CV, and LSV techniques. The membrane electrode assemblies (MEAs) were prepared and tested in 25cm(2) area PEM cell setup and the test results obtained are promising as the cell voltage is 1.9V at 1000mAcm(-2) at 80 degrees C. Furthermore, the cell setup was operated continuously for 500h and has shown stable performance without any hindrance in electrochemical activity.
机译:在三苯基膦和乙腈存在下,已经使用化学气相沉积(CVD)成功地合成了磷 - 氮双掺杂的碳纳米粒子(PN-CNP)。 PN-CNPS用作Pd的碳载体,并用作氢化反应中的电催化剂。 使用Fe-SEM,EDS,ICP,XRD,CV和LSV技术进行制备的PD / PN-CNPS电催化剂的形态学和电化学研究。 制备膜电极组件(MEA)并在25cm(2)区域PEM单元设置中,并且获得的测试结果与电池电压为1.9V,在80摄氏度下为1.9V(-2)。此外,电池设置 连续运行500h,显示出稳定的性能,无需电化学活性任何障碍。

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