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首页> 外文期刊>ACS applied materials & interfaces >Self-Supported Nickel Iron Layered Double Hydroxide-Nickel Selenide Electrocatalyst for Superior Water Splitting Activity
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Self-Supported Nickel Iron Layered Double Hydroxide-Nickel Selenide Electrocatalyst for Superior Water Splitting Activity

机译:自支撑镍铁层双氢氧化物 - 硒镍电催化剂,用于卓越的水分裂活性

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摘要

The design of efficient, low-cost, and stable electrocatalyst systems toward energy conversion is highly demanding for their practical use. Large scale electrolytic water splitting is considered as a promising strategy for clean and sustainable energy production. Herein, we report a self-supported NiFe layered double hydroxide (LDH)-NiSe electrocatalyst by stepwise surface-redox-etching of Ni foam (NF) through a hydrothermal process. The as-prepared NiFe LDH-NiSe/NF catalyst exhibits far better performance in alkaline water oxidation, proton reduction, and overall water splitting compared to NiSex/NF or NiFe LDH/NF. Only 240 mV overpotential is required to obtain a water oxidation current density of 100 mA cm(-2) , whereas the same for the hydrogen evolution reaction is 276 mV in 1.0 M KOH. The synergistic effect from NiSe and NiFe LDH leads to the evolution of a highly efficient catalyst system for water splitting by achieving 10 mA cm (-2) current density at only 1.53 V in a two-electrode alkaline electrolyzer. In addition, the designed electrode produces stable performance for a long time even at higher current density to demonstrate its robustness and prospective as a real-life energy conversion system.
机译:高效,低成本和稳定的电催化剂系统对能量转换的设计非常苛刻。大型电解水分裂被认为是清洁和可持续能源生产的有希望的策略。这里,通过水热法通过水热法向Ni泡沫(NF)的逐步表面氧化还原蚀刻报告一种自支撑的NiFe分层双氢氧化物(LDH)。与NISEX / NF或NIFE LDH / NF相比,AS制备的NIFE LDH-NISE / NF催化剂在碱性水氧化,质子还原和总水分裂中表现出远远相关性。仅需要240mV过屈透以获得100mA cm(-2)的水氧化电流密度,而氢进化反应的水氧化电流密度是276mV在1.0m KOH中。 NISE和NIFE LDH的协同效果导致高效催化剂体系的演变,用于通过在双电极碱性电解槽中仅在1.53V下实现10 mA cm(-2)电流密度。此外,即使在较高的电流密度下,设计的电极也长时间产生稳定的性能,以证明其鲁棒性和预期作为现实生活能量转换系统。

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