Bifunctional Ni Foam Supported TiO2@Ni3S2 core@shell Nanorod Arrays for Boosting Electrocatalytic Biomass Upgrading and H2 Production Reactions

被引:15
作者
Wei, Meng [1 ]
Li, Mingli [1 ]
Gao, Qiongzhi [1 ]
Cai, Xin [1 ]
Zhang, Shengsen [1 ]
Fang, Yueping [1 ]
Peng, Feng [2 ]
Yang, Siyuan [1 ]
机构
[1] South China Agr Univ, Coll Mat & Energy, Minist Educ, Guangdong Lab Lingnan Modern Agr,Key Lab Biobased, Guangzhou 510642, Peoples R China
[2] Guangzhou Univ, Sch Chem & Chem Engn, Guangzhou 51006, Peoples R China
基金
中国国家自然科学基金;
关键词
biomass oxidation reaction; hydrogen production; Ni3S2; TiO2; water splitting; EFFICIENT; HYDROGEN; NANOARRAYS; GROWTH;
D O I
10.1002/smll.202305906
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
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 Ni3S2 nanosheets covered TiO2 nanorod arrays are in situ growth on conductive Ni foam (Ni/TiO2@Ni3S2). The Ni/TiO2@Ni3S2 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 mu mol h(-1), about 2.7 times higher than that of in a common HER//OER two-electrode water splitting system (365.50 mu mol h(-1)). 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/TiO2@Ni3S2 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/TiO2@Ni3S2 has great potential in electrocatalysis, especially in replacing OER reaction with BOR reaction and promoting the sustainable development of hydrogen production.
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页数:10
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