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Protonic Conduction of Partially-Substituted CsH2PO4 and the Applicability in Electrochemical Devices

机译:部分取代的CsH2PO4的质子传导及其在电化学装置中的适用性

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摘要

CsH2PO4 is a proton conductor pertaining to the acid salts group and shows a phase transition from monoclinic to cubic phase at 232 ± 2 °C under high-steam atmospheres (>30%). This cubic phase gives rise to the so-called superprotonic conductivity. In this work, the influence of the partial substitution of Cs by Ba and Rb, as well as the partial substitution of P by W, Mo, and S in CsH2PO4 on the phase transition temperature and electrochemical properties is studied. Among the tested materials, the partial substitution by Rb led to the highest conductivity at high temperature. Furthermore, Ba and S-substituted salts exhibited the highest conductivity at low temperatures. CsH2PO4 was used as electrolyte in a fully-assembled fuel cell demonstrating the applicability of the material at high pressures and the possibility to use other materials (Cu and ZnO) instead of Pt as electrode electrocatalyst. Finally, an electrolyzer cell composed of CsH2PO4 as electrolyte, Cu and ZnO as cathode and Pt and Ag as anode was evaluated, obtaining a stable production of H2 at 250 °C.
机译:CsH2PO4是属于酸盐类的质子导体,在高蒸汽气氛(> 30%)下于232±2°C下从单斜晶相转变为立方晶相。该立方相产生了所谓的超质子传导性。在这项工作中,研究了CsH2PO4中Ba和Rb对Cs的部分取代以及W,Mo和S对Ps的部分取代对相变温度和电化学性能的影响。在测试的材料中,Rb的部分取代导致在高温下具有最高的电导率。此外,Ba和S取代的盐在低温下表现出最高的电导率。 CsH2PO4在完全组装的燃料电池中用作电解质,证明了该材料在高压下的适用性以及使用其他材料(Cu和ZnO)代替Pt作为电极电催化剂的可能性。最后,评估了由CsH2PO4作为电解质,Cu和ZnO作为阴极,Pt和Ag作为阳极组成的电解槽,在250°C下可获得稳定的H2生成量。

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