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In-situ grown, passivator-modulated anodization derived synergistically well-mixed Ni-Fe oxides from ni foam as high-performance oxygen evolution reaction electrocatalyst
期刊文章

In-situ grown, passivator-modulated anodization derived synergistically well-mixed Ni-Fe oxides from ni foam as high-performance oxygen evolution reaction electrocatalyst

Xui-Fang Chuah, Cheng-Ting Hsieh, Chun-Lung Huang, Duraisamy Senthil Raja, Hao-Wei LinShih-Yuan Lu
ACS Applied Energy Materials, 卷.2(1), 頁碼.743-753
01/2019

摘要

Anodization Electrocatalysis Hematite Nickel oxide Overall water splitting Energy Engineering and Power Technology Chemical Engineering (miscellaneous) Electrochemistry Materials Chemistry Electrical and Electronic Engineering
A simple one-step passivator-modulated nickel foam (NF) anodization process was developed to fabricate synergistically well-mixed NiO/α-Fe 2 O 3 @NF, which was demonstrated a high efficiency electrocatalyst for oxygen evolution reaction (OER), exhibiting ultralow overpotentials and excellent stability at high current densities. The NiO/α-Fe 2 O 3 @NF composite electrode, with NiO and α-Fe 2 O 3 well-mixed at nanoscale for much enhanced synergistic effects, exhibited extraordinary electrochemical activities with ultralow overpotentials of 244 and 334 mV at current densities of 50 and 500 mA/cm 2 , respectively, for the OER in 1 M KOH. The NiO/α-Fe 2 O 3 @NF composite electrode was further tested as both the cathode and anode for overall water splitting, and achieved low working cell voltages of 1.76 and 1.99 V at the current densities of 50 and 500 mA/cm 2 , respectively, outperforming the pairing of Pt/C@NF and IrO 2 @NF, 1.79 and 2.08 V, correspondingly. The stability of the NiO/α-Fe 2 O 3 @NF electrode was also outstanding, experiencing only a minor chronoamperometric decay of 5.6% after a continuous operation at 500 mA/cm 2 for 24 h. The success of the present catalyst design was attributed to the strong positive synergistic effects between the well mixed NiO and α-Fe 2 O 3 at nanoscale and between the nonconductive mixed oxide catalyst and the conductive nickel foam support.

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