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Core-shell rhodium sulfide catalyst for hydrogen evolution reaction / hydrogen oxidation reaction in hydrogen-bromine reversible fuel cell

机译:用于氢-溴可逆燃料电池中氢析出反应/氢氧化反应的核-壳铑催化剂

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摘要

Synthesis and characterization of high electrochemical active surface area (ECSA) core-shell RhxSy catalysts for hydrogen evolution oxidation (HER)/hydrogen oxidation reaction (HOR) in H-2-Br-2 fuel cell are discussed. Catalysts with RhxSy as shell and different percentages (5%, 10%, and 20%) of platinum on carbon as core materials are synthesized. Cyclic voltammetry is used to evaluate the Pt-equivalent mass specific ECSA and durability of these catalysts. Transmission electron microscopy (TEM), X-ray Photoelectron spectroscopy (XPS) and Energy-dispersive X-ray spectroscopy (EDX) techniques are utilized to characterize the bulk and surface compositions and to confirm the core-shell structure of the catalysts, respectively. Cycling test and polarization curve measurements in the H-2-Br-2 fuel cell are used to assess the catalyst stability and performance in a fuel cell. The results show that the catalysts with core-shell structure have higher mass specific ECSA (50 m(2) gm-Rh-1) compared to a commercial catalyst (RhxSy/C catalyst from BASF, 6.9 m(2) gm-Rh-1). It also shows better HOR/HER performance in the fuel cell. Compared to the platinum catalyst, the core-shell catalysts show more stable performance in the fuel cell cycling test.
机译:讨论了用于H-2-Br-2燃料电池中的析氢氧化(HER)/氢氧化反应(HOR)的高电化学活性表面积(ECSA)核壳RhxSy催化剂的合成和表征。合成了以RhxSy为壳并以不同百分比(5%,10%和20%)的铂/碳为核心材料的催化剂。循环伏安法用于评估Pt当量质量比的ECSA和这些催化剂的耐久性。透射电子显微镜(TEM),X射线光电子能谱(XPS)和能量色散X射线能谱(EDX)技术分别用于表征本体和表面组成,并确定催化剂的核-壳结构。 H-2-Br-2燃料电池中的循环测试和极化曲线测量用于评估燃料电池中催化剂的稳定性和性能。结果表明,与商业催化剂(BASF的RhxSy / C催化剂,6.9 m(2)gm-Rh-)相比,具有核-壳结构的催化剂具有更高的质量比ECSA(50 m(2)gm-Rh-1) 1)。它还在燃料电池中显示出更好的HOR / HER性能。与铂催化剂相比,核-壳催化剂在燃料电池循环测试中显示出更稳定的性能。

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