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首页> 外文期刊>ACS Omega >A Simple and Scalable Approach To Remarkably Boost the Overall Water Splitting Activity of Stainless Steel Electrocatalysts
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A Simple and Scalable Approach To Remarkably Boost the Overall Water Splitting Activity of Stainless Steel Electrocatalysts

机译:一种简单且可扩展的方法,可显着提高不锈钢电催化剂的总水分解活性

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The stainless steel mesh (SSM) has received growing consideration as an electrocatalyst for efficient hydrogen and oxygen evolution reactions. Recently, the application of SSM as an oxygen evolution reaction (OER) electrocatalyst has been more promising, while its hydrogen evolution reaction (HER) catalytic activity is very low, which definitely affects its overall water splitting activity. Herein, a simple chemical bath deposition (CBD) method followed by phosphorization is employed to significantly boost the overall water splitting performance of SSM. The CBD method could allow the voids between the SSM fibers to be filled with Ni and P. Electrocatalytic studies show that the CBD-treated and phosphorized stainless steel (denoted SSM-Ni-P) exhibits an HER overpotential of 149 mV, while the phosphorization-free CBD-treated SSM (denoted as SSM-Ni) delivers an OER overpotential of 223 mV, both at a current density of 10 mA cm–2. An asymmetric alkaline electrolyzer assembled based on the SSM-Ni-P cathode (HER) and SSM-Ni anode (OER) achieved an onset and 10 mA cm–2 current densities at an overall potential of 1.62 V, granting more prospects for the application of inexpensive and highly active electrocatalysts for electrocatalytic water splitting reactions.
机译:不锈钢网(SSM)作为有效的氢和氧放出反应的电催化剂已受到越来越多的考虑。近年来,SSM作为氧释放反应(OER)电催化剂的应用前景更为广阔,而其氢释放反应(HER)的催化活性却很低,这肯定会影响其整体的水分解活性。在本文中,采用简单的化学浴沉积(CBD)方法并随后进行磷化处理,可以显着提高SSM的整体水分解性能。 CBD方法可以使SSM纤维之间的空隙充满Ni和P。电催化研究表明,经CBD处理和磷化的不锈钢(表示为SSM-Ni-P)显示出149 mV的HER超电势,而磷化无CBD处理的SSM(表示为SSM-Ni)在10 mA cm–2的电流密度下均提供223 mV的OER过电势。基于SSM-Ni-P阴极(HER)和SSM-Ni阳极(OER)组装的不对称碱性电解槽在总电势为1.62 V的情况下达到了起始电流和10 mA cm–2的电流密度,为该应用提供了更多前景用于电催化水分解反应的廉价且高活性的电催化剂的制备。

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