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Cobalt-Based Nitride-Core Oxide-Shell Oxygen Reduction Electrocatalysts

机译:钴基氮化物-核心氧化物-壳氧还原电催化剂

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Developing high-performance, low-cost, and conductive nonprecious electrocatalysts for the oxygen reduction reaction (ORR) has been a key challenge for advancing fuel cell technologies. Here, we report on a novel family of cobalt nitrides (Co_(x )N/C, x = 2, 3, 4) as ORR electrocatalysts in alkaline fuel cells. Co_(4)N/C exhibited the highest ORR activity among the three types of cobalt nitrides studied, with a half-wave potential (E _(1/2)) of 0.875 V vs RHE in 1 M KOH, rivaling that of commercial Pt/C (0.89 V). Moreover, Co_(4)N/C showed an 8-fold improvement in mass activity at 0.85 V, when compared to cobalt oxide, Co_(3)O_(4)/C, and a negligible degradation (ΔE _(1/2) = 14 mV) after 10 000 potential cycles. The superior performance was ascribed to the formation of a conductive nitride core surrounded by a naturally formed thin oxide shell (about 2 nm). The conductive nitride core effectively mitigated the low conductivity of the metal oxide, and the thin oxide shell on the surface provided the active sites for the ORR. Strategies developed herein represent a promising approach for the design of other novel metal nitrides as electrocatalysts for fuel cells.
机译:开发用于氧气还原反应(ORR)的高性能,低成本和导电性非贵金属电催化剂一直是推进燃料电池技术的关键挑战。在这里,我们报告了碱性燃料电池中作为ORR电催化剂的新型钴氮化物家族(Co_(x)N / C,x = 2,3,4)。在1M KOH中,Co_(4)N / C在三种研究的氮化钴类型中表现出最高的ORR活性,相对于RHE的半波电势( E _(1/2))为0.875 V商业Pt / C(0.89 V)。此外,当与氧化钴,Co_(3)O_(4)/ C相比时,Co_(4)N / C在0.85V下显示出8倍的质量活性,并且降解可忽略不计(ΔE_ (10)个潜在周期后(1/2)= 14 mV)。优越的性能归因于被天然形成的薄氧化物壳(约2 nm)包围的导电氮化物核的形成。导电氮化物核有效地缓解了金属氧化物的低导电性,并且表面上的薄氧化物壳为ORR提供了活性位点。本文开发的策略代表了一种设计其他新颖的金属氮化物作为燃料电池电催化剂的有前途的方法。

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