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Nb-doped TiO2 cathode catalysts for oxygen reduction reaction of polymer electrolyte fuel cells

机译:Nb掺杂的TiO2阴极催化剂用于聚合物电解质燃料电池的氧还原反应

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摘要

Nb-doped TiO2 particles were studied as electrocatalysts for the oxygen reduction reaction (ORR) under acidic conditions. The Nb-doped TiN nanoparticles were first synthesized by meso-porous C3N4 and then fully oxidized to Nb-doped TiO2 by immersing in 0.1 M H2SO4 at 353 K for 24 h. Although the ORR activity of the as-obtained sample was low, a H2 treatment at relatively high temperature (1173 K) dramatically improved the ORR performance. An onset potential as high as 0.82 V_(RHe) was measured. No degradation of the catalysts was observed during the oxidation-reduction cycles under the ORR condition for over 127 h. H2 treatment at temperatures above 1173 K caused the formation of a Ti4O7 phase, resulting in a decrease in ORR current. Elemental analysis indicated that the Nb-doped TiO2 contained 25 wt% residual carbon. Calcination in air at 673 or 973 K eliminated the residual carbon in the catalyst, which was accompanied by a dramatic decrease in ORR activity. This post-calcination process may reduce the conductivity of the sample by filling the oxygen vacancies, and the carbon residue in the particle aggregates may enhance the electrocatalytic activity for ORR. The feasibility of using conductive oxide materials as electrocatalysts is discussed.
机译:研究了Nb掺杂的TiO2颗粒在酸性条件下作为氧还原反应(ORR)的电催化剂。 Nb掺杂的TiN纳米粒子首先通过中孔C3N4合成,然后通过在353 K下浸入0.1 M H2SO4中24 h将其完全氧化为Nb掺杂的TiO2。尽管所得样品的ORR活性较低,但在较高温度(1173 K)下进行H2处理可显着提高ORR性能。测量的起始电位高达0.82 V_(RHe)。在ORR条件下经过超过127小时的氧化还原循环期间,未观察到催化剂的降解。在高于1173 K的温度下进行H2处理会导致Ti4O7相的形成,从而导致ORR电流减小。元素分析表明,掺Nb的TiO2含有25 wt%的残留碳。在673或973 K的空气中煅烧消除了催化剂中的残留碳,这伴随着ORR活性的急剧下降。该后煅烧过程可通过填充氧空位来降低样品的电导率,并且颗粒聚集体中的碳残留物可增强对ORR的电催化活性。讨论了使用导电氧化物材料作为电催化剂的可行性。

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