塔菲尔方程
材料科学
交换电流密度
阴极保护
无定形固体
镍
合金
多孔性
化学工程
非晶态金属
过渡金属
电催化剂
催化作用
电化学
冶金
电极
复合材料
物理化学
结晶学
化学
工程类
生物化学
作者
Baran Sarac,Tolga Karazehir,Matej Mičušík,Celine Halkali,Dominik Gutnik,Mária Omastová,A. Sezai̇ Saraç,J. Eckert
标识
DOI:10.1021/acsami.1c03007
摘要
In transition metal-based alloys, the nonlinearity of the current at large cathodic potentials reduces the credibility of the linear Tafel slopes for the evaluation of electrocatalytic hydrogen activity. High-precision nonlinear fitting at low current densities describing the kinetics of electrochemical reactions due to charge transfer can overcome this challenge. To show its effectiveness, we introduce a glassy alloy with a highly asymmetric energy barrier: amorphous NiP electrocoatings (with different C and O inclusions) via changing the applied DC and pulsed current and NaH 2 PO 2 content. The highest hydrogen evolution reaction (HER) activity with the lowest cathodic transfer coefficient α = 0.130 with high J 0 = −1.07 mA cm –2 and the largest surface areas without any porosity are observed for the pulsed current deposition. The calculated α has a direct relation with morphology, composition, chemical state and coating thickness defined by the electrodeposition conditions. Here, a general evaluation criterion with practicality in assessment and high accuracy for electrocatalytic reactions applicable to different metallic alloy systems is presented.
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