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A first-principles study of doping effect on enhancing ORR performance of Sr-Ni-Nb co-doped LaFeO3 perovskite

机译:掺杂效应对提高Sr-Ni-Nb共掺杂LaFeO3钙钛矿ORR性能的第一性原理研究

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摘要

The development of oxygen reductive reaction (ORR) electrocatalyst with high-stability, conductivity and activity is of great importance for improving the conversion efficiency of Solid Oxide Fuel Cell (SOFC). Although the ORR performance of LaFeO3 perovskite (LFO) is not excellent, it is a promising cathode for SOFC duo to its low-cost peculiarity and adequate compatibility with electrolyte. In this work, the Ni-Nb and Sr were partially doped to Fe and La sites of LFO, respectively, to evaluate the doping effect on ORR ability. The increased formation energy illustrated that Nb-doping significantly enhanced the stability of LFO, while Ni-3d band emerged as the minimum conductive band mainly contributed to reduce the band gap. Moreover, the overpotential of LFO with Sr-doping (LSFO) was sharply reduced from 0.60 V to 0.34 V, which was possibly attributed to the decrease of eg-filling (less than 2), and hence increased the binding energy. Although surface O-vacancy (Ov) is more favorable to be induced than sublayer, the sublayer Ov facilitates to reduce the ORR overpotential. The electron variation exploration of Sr-Ni-Nb codoped LFO provides important guidance for the design of high-efficient ORR catalyst for SOFC with high stability, and superior conductivity, as well as low overpotential. (c) 2023 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:开发具有高稳定性、高导电性和高活性的氧还原反应(ORR)电催化剂对提高固体氧化物燃料电池(SOFC)的转化效率具有重要意义。虽然LaFeO3钙钛矿(LFO)的ORR性能并不理想,但凭借其低成本的特性和与电解质的充分相容性,它是SOFC duo的一种有前途的正极。本工作将Ni-Nb和Sr分别部分掺杂到LFO的Fe位点和La位点,以评估其对ORR能力的掺杂效应。形成能的增加表明,Nb掺杂显著增强了LFO的稳定性,而Ni-3d能带作为最小导电带的出现主要有助于减小带隙。此外,锶掺杂LFO的过电位从0.60 V急剧降低到0.34 V,这可能是由于eg填充量减少(小于2),从而增加了结合能。虽然表面O-空位(Ov)比子层更有利于诱导,但子层O-vac有利于降低ORR过电位。Sr-Ni-Nb共掺杂LFO的电子变化探索为设计高稳定性、优异电导率和低过电位的高效SOFCORR催化剂提供了重要指导。(c) 2023 Hydrogen Energy Publications LLC.,由Elsevier Ltd.出版。保留所有权利。

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