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Ultrathin metal-organic framework array for efficient electrocatalytic water splitting

机译:用于高效电催化水分解的超薄金属有机骨架阵列

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摘要

Two-dimensional metal-organic frameworks represent a family of materials with attractive chemical and structural properties, which are usually prepared in the form of bulk powders. Here we show a generic approach to fabricate ultrathin nanosheet array of metal-organic frameworks on different substrates through a dissolution–crystallization mechanism. These materials exhibit intriguing properties for electrocatalysis including highly exposed active molecular metal sites owning to ultra-small thickness of nanosheets, improved electrical conductivity and a combination of hierarchical porosity. We fabricate a nickel-iron-based metal-organic framework array, which demonstrates superior electrocatalytic performance towards oxygen evolution reaction with a small overpotential of 240 mV at 10 mA cm−2, and robust operation for 20,000 s with no detectable activity decay. Remarkably, the turnover frequency of the electrode is 3.8 s−1 at an overpotential of 400 mV. We further demonstrate the promise of these electrodes for other important catalytic reactions including hydrogen evolution reaction and overall water splitting.
机译:二维金属有机骨架代表一类具有诱人的化学和结构特性的材料,通常以散装粉末的形式制备。在这里,我们展示了一种通过溶解结晶机制在不同基板上制造金属-有机骨架的超薄纳米片阵列的通用方法。这些材料在电催化方面表现出令人着迷的特性,包括高度暴露的活性分子金属位点(归因于纳米片的超小厚度),改进的电导率和分层孔隙率的组合。我们制造了一种镍铁基金属有机骨架阵列,该阵列表现出优异的电催化性能,在10 performancemA cm −2 下具有240 mV的小过电位,并且在20,000 s下仍能稳定运行没有可检测的活动衰减。值得注意的是,在400 turnovermV的超电势下,电极的周转频率为3.8 s -1 。我们进一步证明了这些电极有望用于其他重要的催化反应,包括析氢反应和总水分解。

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