Tianjin Key Laboratory of Composite and Functional Materials, Key Laboratory of Advanced Ceramics and Machining Technology (Ministry of Education), School of Materials Science and Engineering, Tianjin University, Tianjin 300072, China.
Nanoscale. 2018 Mar 8;10(10):4816-4824. doi: 10.1039/c7nr09424h.
Developing cheap, highly efficient and stable electrocatalysts for both oxygen and hydrogen evolution reactions (OER and HER) is extremely meaningful to realize large-scale implementation of water splitting technology. Herein, we report the phase and composition controlled synthesis of cobalt sulfide (CoS) hollow nanospheres (HNSs) and their catalytic efficiencies for hydrogen and oxygen evolution reactions in alkaline media. Three CoS compounds, i.e., CoS, CoS, and CoS HNSs, were precisely synthesized by simply adjusting the molar ratio of carbon disulfide to cobalt acetate using a facile solution-based strategy. Electrochemical results reveal that the as-prepared CoS HNSs exhibit superior OER and HER catalytic performance to CoS and CoS HNSs in 1.0 M KOH, with overpotentials of 290 mV for the OER and 193 mV for the HER at 10 mA cm, and the corresponding Tafel slopes of 57 and 100 mV dec, respectively. In addition, the CoS HNSs exhibit remarkable long-term catalytic durability, which is even superior to precious metal catalysts of RuO and Pt/C. Moreover, an alkaline electrolyzer assembled using CoS HNSs as both anode and cathode materials can achieve 10 mA cm at a low cell voltage of 1.54 V at 60 °C with a faradaic efficiency of 100% for overall water splitting. Further analysis demonstrates that the surface morphology, crystallographic structure and coordination environment of Co active sites in combination determine the HER/OER activities in the synthesized binary CoS series, which would provide insight into the rational design of transition metal chalcogenides for highly efficient hydrogen and oxygen-involved electrocatalysis.
开发廉价、高效、稳定的析氧反应(OER)和析氢反应(HER)电催化剂对于实现大规模水分解技术具有重要意义。在此,我们报告了通过简单调节二硫化碳与醋酸钴的摩尔比,在均相溶液策略下精确合成了硫化钴(CoS)空心纳米球(HNSs)及其在碱性介质中对HER 和 OER 催化性能。三种 CoS 化合物,即 CoS、CoS 和 CoS HNSs,通过简单调节二硫化碳与醋酸钴的摩尔比,使用简便的基于溶液的策略精确合成。电化学结果表明,所制备的 CoS HNSs 在 1.0 M KOH 中表现出优于 CoS 和 CoS HNSs 的 OER 和 HER 催化性能,在 10 mA cm 时 OER 的过电势为 290 mV,HER 的过电势为 193 mV,相应的 Tafel 斜率分别为 57 和 100 mV dec。此外,CoS HNSs 表现出显著的长期催化耐久性,甚至优于贵金属催化剂 RuO 和 Pt/C。此外,以 CoS HNSs 作为阳极和阴极材料组装的碱性电解槽在 60°C 时可在低电池电压 1.54 V 下实现 10 mA cm,整体水分解的法拉第效率为 100%。进一步分析表明,Co 活性位点的表面形貌、结晶结构和配位环境共同决定了所合成二元 CoS 系列的 HER/OER 活性,这将为高效析氢和氧参与电催化的过渡金属硫属化合物的合理设计提供思路。