Deng Daijie, Li Qian, Lei Sufen, Zhang Wei, Li Henan, Xu Li
Institute for Energy Research, School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang, Jiangsu Province 212013, P.R. China.
School of Tourism Management, Nanjing Institute of Tourism & Hospitality, Nanjing, Jiangsu Province 212003, P.R. China.
Inorg Chem. 2024 Oct 21;63(42):20022-20029. doi: 10.1021/acs.inorgchem.4c03664. Epub 2024 Oct 10.
The development of a bifunctional electrocatalyst with high efficiency, high stability, and low cost is of great significance in practical applications of electrocatalytic water splitting. Herein, a self-supporting bifunctional electrocatalyst with a NiFe layered double hydroxide/FeO/NiS heterostructure (NiFe LDH/FeO/NiS/IF) for hydrogen evolution and oxygen evolution reactions (HER/OER) is synthesized by the self-corrosion of iron foam (IF) and hydrothermal strategies. The constructed NiFe LDH/FeO/NiS/IF hierarchical heterostructure was not only beneficial to expose active sites and promote charge/mass transfer but also generate a superhydrophilic/superaerophobic surface, thereby accelerating the reaction kinetics to improve the HER/OER activity. Therefore, NiFe LDH/FeO/NiS/IF exhibited superior overpotentials of 226.2 and 162.8 mV for the OER and HER at 100 mA cm, respectively. NiFe LDH/FeO/NiS/IF was employed as both the cathode and the anode to assemble a device for overall water splitting and displayed a voltage of 1.55 V at 10 mA cm. The overall water splitting device was coupled with a solar cell to simulate a solar-powered water splitting system, resulting in a superior solar-to-hydrogen conversion efficiency of 15.16%. This work can promote the development of clean energy sources such as solar hydrogen production.
开发一种具有高效率、高稳定性和低成本的双功能电催化剂在电催化水分解的实际应用中具有重要意义。在此,通过泡沫铁(IF)的自腐蚀和水热策略合成了一种用于析氢反应和析氧反应(HER/OER)的具有NiFe层状双氢氧化物/FeO/NiS异质结构(NiFe LDH/FeO/NiS/IF)的自支撑双功能电催化剂。构建的NiFe LDH/FeO/NiS/IF分级异质结构不仅有利于暴露活性位点并促进电荷/质量转移,还能产生超亲水/超疏气表面,从而加速反应动力学以提高HER/OER活性。因此,NiFe LDH/FeO/NiS/IF在100 mA cm时对OER和HER分别表现出226.2和162.8 mV的优异过电位。NiFe LDH/FeO/NiS/IF用作阴极和阳极来组装一个用于全水分解的装置,并在10 mA cm时显示出1.55 V的电压。全水分解装置与太阳能电池耦合以模拟太阳能驱动的水分解系统,从而实现了15.16%的优异太阳能到氢能的转换效率。这项工作可以促进太阳能制氢等清洁能源的发展。