Xiong Dehua, Li Wei, Liu Lifeng
International Iberian Nanotechnology Laboratory (INL), Av. Mestre Jose Veiga, 4715-330, Braga, Portugal.
State Key Laboratory of Silicate Materials for Architectures, Wuhan University of Technology, Wuhan, 430070, P.R. China.
Chem Asian J. 2017 Mar 2;12(5):543-551. doi: 10.1002/asia.201601590. Epub 2017 Feb 7.
Vertically aligned Ni(OH) nanosheets were grown on carbon paper (CP) current collectors through a simple and cost-effective hydrothermal approach. The as-grown nanosheets are porous and highly crystallized. If used as a monolithic electrode for electrochemical water oxidation in alkaline solution, the carbon paper supported Ni(OH) nanosheets [CP@Ni(OH) ] exhibit high electrocatalytic activity and excellent long-term stability. The electrode can attain an anodic current density of 20 mA cm at a low overpotential of 338 mV, comparable to that of state-of-the-art RuO nanocatalysts supported on CP (CP/RuO ) with the same catalyst loading. Significantly, CP@Ni(OH) shows much better long-term stability than CP/RuO upon continuous galvanostatic electrolysis, particularly at a high industry-relevant current density such as 100 mA cm . CP@Ni(OH) can sustain water oxidation at 100 mA cm for 50 h without any degradation, whereas the performance of CP/RuO is much poorer and deteriorates gradually over time. CP@Ni(OH) electrodes hold substantial promise for use as low-costing water oxidation anodes in electrolyzers.
通过一种简单且经济高效的水热法,在碳纸(CP)集流体上生长出了垂直排列的Ni(OH)纳米片。生长出的纳米片具有多孔性且结晶度高。如果用作碱性溶液中电化学水氧化的整体电极,碳纸负载的Ni(OH)纳米片[CP@Ni(OH)]表现出高电催化活性和出色的长期稳定性。该电极在338 mV的低过电位下可达到20 mA cm的阳极电流密度,与具有相同催化剂负载量的CP负载的最先进RuO纳米催化剂(CP/RuO)相当。值得注意的是,在连续恒电流电解时,CP@Ni(OH)比CP/RuO表现出更好的长期稳定性,特别是在与工业相关的高电流密度如100 mA cm下。CP@Ni(OH)可以在100 mA cm下维持水氧化50小时而无任何降解,而CP/RuO的性能则差得多且会随时间逐渐恶化。CP@Ni(OH)电极作为电解槽中低成本水氧化阳极具有很大的应用前景。