Yang Zhou, Chen Hanbing, Bei Shaoyi, Bao Keyan, Zhang Chunyong, Xiang Meng, Yu Chengbin, Dong Shuang, Qin Hengfei
Department of Chemistry and Chemical Engineering, Jiangsu University of Technology, Changzhou, 213001, China.
Department of Automotive and Traffic Engineering, Jiangsu University of Technology, Changzhou, 213001, China.
Small. 2024 Jun;20(24):e2310286. doi: 10.1002/smll.202310286. Epub 2024 Jan 2.
Hydrogen energy and biomass energy are green and sustainable forms that can solve the energy crisis all over the world. Electrocatalytic water splitting is a marvelous way to produce hydrogen and biomass platform molecules can be added into the electrolyte to reduce the overpotential and meanwhile are converted into some useful organics, but the key point is the design of electrocatalyst. Herein, ultralow noble metal Ru is doped into NiS to form RuO@NiS heterojunction. Amongst them, the 0.06 RuO@NiS has low overpotentials of 363 mV for OER and 71 mV for HER in 1 m KOH, which are superior to the RuO and Pt/C. Besides, the 0.06 RuO@NiS shows a low overpotential of 173 mV in 1 m KOH+0.1 m glycerol, and the glycerol is oxidized to glyceraldehyde and formic acid via the high Faraday efficiency GlyOR process, and the splitting voltage is only 1.17 V. In addition, the 0.06 RuO@NiS has a low overpotential of 206 mV in 1 m KOH+0.1 m glucose, and the glucose is converted to glucaric acid, lactic acid, and formic acid. This work has a "one stone three birds" effect for the production of hydrogen, low splitting voltage, and high-value-added biomass chemicals.
氢能和生物质能是绿色且可持续的能源形式,能够解决全球能源危机。电催化水分解是一种制取氢气的奇妙方法,并且可以将生物质平台分子添加到电解质中以降低过电位,同时将其转化为一些有用的有机物,但关键在于电催化剂的设计。在此,超低贵金属Ru被掺杂到NiS中以形成RuO@NiS异质结。其中,0.06 RuO@NiS在1 m KOH中对于析氧反应(OER)具有363 mV的低过电位,对于析氢反应(HER)具有71 mV的低过电位,优于RuO和Pt/C。此外,0.06 RuO@NiS在1 m KOH + 0.1 m甘油中显示出173 mV的低过电位,并且甘油通过高法拉第效率的甘油氧化反应(GlyOR)被氧化为甘油醛和甲酸,分解电压仅为1.17 V。此外,0.06 RuO@NiS在1 m KOH + 0.1 m葡萄糖中具有206 mV的低过电位,并且葡萄糖被转化为葡萄糖二酸、乳酸和甲酸。这项工作对于氢气生产、低分解电压和高附加值生物质化学品具有“一石三鸟”的效果。