Wei Meng, Li Mingli, Gao Qiongzhi, Cai Xin, Zhang Shengsen, Fang Yueping, Peng Feng, Yang Siyuan
Key Laboratory for Biobased Materials and Energy of Ministry of Education, Guangdong Laboratory for Lingnan Modern Agriculture, College of Materials and Energy, South China Agricultural University, Guangzhou, 510642, China.
School of Chemistry and Chemical Engineering, Guangzhou University, Guangzhou, 51006, China.
Small. 2024 Mar;20(9):e2305906. doi: 10.1002/smll.202305906. Epub 2023 Oct 19.
Replacing traditional oxygen evoltion reaction (OER) with biomass oxidation reaction (BOR) is an advantageous alternative choice to obtain green hydrogen energy from electrocatalytic water splitting. Herein, a novel of extremely homogeneous Ni S nanosheets covered TiO nanorod arrays are in situ growth on conductive Ni foam (Ni/TiO @Ni S ). The Ni/TiO @Ni S electrode exhibits excellent electrocatalytic activity and long-term stability for both BOR and hydrogen evolution reaction (HER). Especially, taking glucose as a typical biomass, the average hydrogen production rate of the HER-glucose oxidation reaction (GOR) two-electrode system reached 984.74 µmol h , about 2.7 times higher than that of in a common HER//OER two-electrode water splitting system (365.50 µmol h ). The calculated power energy saving efficiency of the GOR//HER system is about 13% less than that of the OER//HER system. Meanwhile, the corresponding selectivity of the value-added formic acid produced by GOR reaches about 80%. Moreover, the Ni/TiO @Ni S electrode also exhibits excellent electrocatalytic activity on a diverse range of typical biomass intermediates, such as urea, sucrose, fructose, furfuryl alcohol (FFA), 5-hydroxymethylfurfural (HMF), and alcohol (EtOH). These results show that Ni/TiO @Ni S has great potential in electrocatalysis, especially in replacing OER reaction with BOR reaction and promoting the sustainable development of hydrogen production.
用生物质氧化反应(BOR)取代传统的析氧反应(OER)是通过电催化水分解获得绿色氢能的一种有利的替代选择。在此,一种新型的由极其均匀的硫化镍纳米片覆盖的二氧化钛纳米棒阵列原位生长在导电泡沫镍上(Ni/TiO@NiS)。Ni/TiO@NiS电极对BOR和析氢反应(HER)均表现出优异的电催化活性和长期稳定性。特别是,以葡萄糖作为典型生物质,HER-葡萄糖氧化反应(GOR)双电极体系的平均产氢速率达到984.74μmol/h,约为普通HER//OER双电极水分解体系(365.50μmol/h)的2.7倍。计算得出GOR//HER体系的功率节能效率比OER//HER体系低约13%。同时,GOR产生的增值甲酸的相应选择性达到约80%。此外,Ni/TiO@NiS电极对多种典型生物质中间体,如尿素、蔗糖、果糖、糠醇(FFA)、5-羟甲基糠醛(HMF)和乙醇(EtOH)也表现出优异的电催化活性。这些结果表明Ni/TiO@NiS在电催化方面具有巨大潜力,特别是在以BOR反应取代OER反应以及促进制氢的可持续发展方面。