State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, College of Chemistry , Jilin University , Changchun 130012 , P. R. China.
Key Laboratory of Functional Materials Physics and Chemistry of the Ministry of Education , Jilin Normal University , Siping 136000 , P. R. China.
ACS Appl Mater Interfaces. 2018 Nov 28;10(47):40568-40576. doi: 10.1021/acsami.8b14603. Epub 2018 Nov 14.
NiS nanosheets doped with tin (Sn) grown on nickel foam (Sn-NiS/NF) through a facile hydrothermal process were found to be superior water-splitting electrocatalysts. As for overall water splitting (OWS), when the current density is 10 mA cm, the required voltage is only 1.46 V. Meanwhile, it exhibits a large current density property and long-time stability (>60 h current-time tests) for both the hydrogen evolution reaction (HER) and the oxygen evolution reaction (OER). In order to reach the current densities of 100 and 1000 mA cm, Sn-NiS/NF needs overpotentials of 0.17 and 0.57 V for HER, and 0.27 and 0.58 V for OER, respectively. The water-splitting property of Sn-NiS/NF is much better than that of pure NiS/NF or even 20 wt % Pt/C/NF and RuO/NF. Furthermore, Sn-NiS/NF showed a higher turnover frequency at different potentials, with ∼100% Faraday efficiency for both O and H. The improved activity of Sn-NiS/NF activity for water-splitting is attributed to the doping of Sn, which enhanced the intrinsic activity of Sn-NiS/NF for OWS. This article not only provides a new efficient and stable catalyst for OWS, but also proposes an interface design principle for NF-based high-performance water-splitting materials.
通过简便的水热法在泡沫镍(NF)上生长的掺锡(Sn)的 NiS 纳米片(Sn-NiS/NF)被发现是优越的析水分解电催化剂。对于整体水分解(OWS),当电流密度为 10 mA cm 时,所需的电压仅为 1.46 V。同时,它在氢析出反应(HER)和氧析出反应(OER)中均表现出大电流密度特性和长时间稳定性(>60 h 电流-时间测试)。为了达到 100 和 1000 mA cm 的电流密度,Sn-NiS/NF 需要 0.17 和 0.57 V 的过电势用于 HER,以及 0.27 和 0.58 V 的过电势用于 OER。Sn-NiS/NF 的水分解性能优于纯 NiS/NF,甚至优于 20 wt % Pt/C/NF 和 RuO/NF。此外,Sn-NiS/NF 在不同电位下表现出更高的周转频率,对于 O 和 H 的法拉第效率均约为 100%。Sn-NiS/NF 析水分解活性的提高归因于 Sn 的掺杂,这增强了 Sn-NiS/NF 对 OWS 的本征活性。本文不仅为 OWS 提供了一种新的高效稳定的催化剂,而且还提出了基于 NF 的高性能水分解材料的界面设计原则。