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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Redox-reversible niobium-doped strontium titanate decorated with in situ grown nickel nanocatalyst for high-temperature direct steam electrolysis
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Redox-reversible niobium-doped strontium titanate decorated with in situ grown nickel nanocatalyst for high-temperature direct steam electrolysis

机译:原位生长的镍纳米催化剂修饰的氧化还原可逆铌掺杂钛酸锶锶,用于高温直接蒸汽电解

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Composite cathodes based on Sr_(0.94)Ti_(0.9)Nb_(0.1)O_3 (STNO) can be utilized for direct steam electrolysis; however, the insufficient electrocatalytic activity limits electrode performance and current efficiency. In this work, redox-reversible (Sr_(0.94))_(0.9)(Ti_(0.9)Nb_(0.1))_(0.9)Ni_(0.1)O_3 (STNNO) with A-site deficiency and B-site excess has been designed as a cathode material in an oxide-ion-conducting solid oxide electrolyzer for direct steam electrolysis. The XRD, TEM, SEM, EDS, TGA and XPS results together confirm that the exsolution or dissolution of Ni nanoparticles anchored on the STNO surface is completely reversible in the redox cycles. The electrical properties of STNO and STNNO are investigated and correlated to electrode performances. The current efficiency with an STNNO cathode is enhanced by about 20% compared to the values with a bare STNO cathode in 5% H_2O/H_2/Ar or 5% H_2O/Ar at 800 ℃. The synergetic effect of catalytically active nickel nanoparticles and the redox-stable STNO skeleton contributes to the improved performance and excellent stability of the cathode for steam electrolysis.
机译:基于Sr_(0.94)Ti_(0.9)Nb_(0.1)O_3(STNO)的复合阴极可用于直接蒸汽电解。然而,不足的电催化活性限制了电极性能和电流效率。在这项工作中,具有A位缺陷和B位过量的氧化还原可逆(Sr_(0.94))_(0.9)(Ti_(0.9)Nb_(0.1))_(0.9)Ni_(0.1)O_3(STNNO)具有被设计成在用于直接蒸汽电解的氧化物导电固体氧化物电解器中的阴极材料。 XRD,TEM,SEM,EDS,TGA和XPS结果共同证实,锚定在STNO表面的Ni纳米颗粒的溶解或溶解在氧化还原循环中是完全可逆的。研究了STNO和STNNO的电性能并将其与电极性能相关联。与裸露的STNO阴极相比,在800℃的5%H_2O / H_2 / Ar或5%H_2O / Ar中,STNNO阴极的电流效率提高了约20%。催化活性镍纳米粒子和氧化还原稳定的STNO骨架的协同作用有助于改善蒸汽电解阴极的性能和出色的稳定性。

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