电催化剂
催化作用
电化学
铂金
材料科学
结晶度
金属有机骨架
化学工程
析氧
氧气
金属
极化(电化学)
纳米技术
无机化学
化学
电极
有机化学
复合材料
冶金
物理化学
吸附
工程类
作者
Elise M. Miner,Tomohiro Fukushima,Dennis Sheberla,Lei Sun,Yogesh Surendranath,Mircea Dincă
摘要
Abstract Control over the architectural and electronic properties of heterogeneous catalysts poses a major obstacle in the targeted design of active and stable non-platinum group metal electrocatalysts for the oxygen reduction reaction. Here we introduce Ni 3 (HITP) 2 (HITP=2, 3, 6, 7, 10, 11-hexaiminotriphenylene) as an intrinsically conductive metal-organic framework which functions as a well-defined, tunable oxygen reduction electrocatalyst in alkaline solution. Ni 3 (HITP) 2 exhibits oxygen reduction activity competitive with the most active non-platinum group metal electrocatalysts and stability during extended polarization. The square planar Ni-N 4 sites are structurally reminiscent of the highly active and widely studied non-platinum group metal electrocatalysts containing M-N 4 units. Ni 3 (HITP) 2 and analogues thereof combine the high crystallinity of metal-organic frameworks, the physical durability and electrical conductivity of graphitic materials, and the diverse yet well-controlled synthetic accessibility of molecular species. Such properties may enable the targeted synthesis and systematic optimization of oxygen reduction electrocatalysts as components of fuel cells and electrolysers for renewable energy applications.
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