Multi-Scale Energy Systems (MuSES) Laboratory, Mechanical & Aerospace Engineering Department, The University of Texas at Arlington , 500 W. First Street, Arlington, Texas 76019, United States.
ACS Appl Mater Interfaces. 2017 Aug 30;9(34):28355-28365. doi: 10.1021/acsami.7b05735. Epub 2017 Aug 17.
We demonstrate an electrodeposition method to rapidly grow novel three-dimensional nanodendrite forests of amorphous α-phase mixed nickel-cobalt hydroxides on stainless steel foil toward high performance electrocatalysis of the oxygen evolution reaction (OER). The proposed hydrogen bubble-templated, diffusion-limited deposition process leads to the unprecedented dendritic growth of vertically aligned amorphous metal hydroxides, induced by the controlled electrolysis of the tuned water content in the primarily alcohol-based deposition solution. The hierarchical nature of these binder-free, amorphous metal hydroxide deposits leads to their superhydrophilic nature and underwater superaerophobic behavior. The combination of all of these qualities leads to exemplary catalytic performance. When directly grown on planar stainless steel substrates, these nanoforests show high OER activity with overpotentials as low as ∼255 mV to produce a current density of 10 mA cm over 10 000 accelerated stability test cycles. This work demonstrates a novel fabrication technique that can simultaneously achieve a dendritic hierarchical structure, vertical alignment, superaerophobicity, amorphous crystal structure, and intimate contact with the substrate that leads to high catalytic activity with excellent durability.
我们展示了一种在不锈钢箔上快速生长新型三维纳米枝晶状无定形α-相混合镍钴氢氧化物的电沉积方法,以实现析氧反应(OER)的高性能电催化。所提出的氢气泡模板、扩散限制沉积过程导致垂直排列的无定形金属氢氧化物的前所未有的枝晶生长,这是由主要基于醇的沉积溶液中调节的含水量的受控电解诱导的。这些无粘合剂、无定形金属氢氧化物沉积物的分级性质导致其超亲水和水下超疏油性。所有这些特性的结合导致了示范的催化性能。当直接在平面不锈钢基板上生长时,这些纳米林具有高的 OER 活性,过电位低至约 255 mV,在 10000 个加速稳定性测试循环中产生 10 mA cm 的电流密度。这项工作展示了一种新颖的制造技术,可同时实现枝状分级结构、垂直排列、超疏油性、无定形晶体结构以及与基底的紧密接触,从而实现高催化活性和优异的耐久性。