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CoS2 Nanoparticles Embedded in Covalent Organic Polymers as Efficient Electrocatalyst for Oxygen Evolution Reaction with Ultralow Overpotential
Chemistry - An Asian Journal ( IF 3.5 ) Pub Date : 2021-08-27 , DOI: 10.1002/asia.202100735
Qian Ma 1 , Rongfeng Liao 1 , Yuheng Lu 1 , Shaohong Liu 1 , Youchen Tang 1 , Youlong Zhu 1 , Dingcai Wu 1
Chemistry - An Asian Journal ( IF 3.5 ) Pub Date : 2021-08-27 , DOI: 10.1002/asia.202100735
Qian Ma 1 , Rongfeng Liao 1 , Yuheng Lu 1 , Shaohong Liu 1 , Youchen Tang 1 , Youlong Zhu 1 , Dingcai Wu 1
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CoS2 with uniform and small particle size embedded in a covalent organic polymer (CoS2@BP-COP) has been successfully synthesized by an in-situ vulcanization approach. CoS2@BP-COP possesses much more electrocatalytic active sites and notable enhancement of OER activity in comparison with bulk CoS2 nanosheets, boosting OER performances with ultra-low overpotential (270 mV vs. RHE) and long-term stability.
中文翻译:
嵌入共价有机聚合物中的 CoS2 纳米颗粒作为具有超低过电位的氧析出反应的高效电催化剂
的CoS 2具有均匀和小粒径嵌入在共价的有机聚合物(CoS的2 @ BP-COP)已成功地通过原位硫化方法合成。与块状 CoS 2纳米片相比,CoS 2 @BP-COP 具有更多的电催化活性位点和显着增强的 OER 活性,以超低过电位(270 mV vs. RHE)和长期稳定性提高 OER 性能。
更新日期:2021-10-19

中文翻译:

嵌入共价有机聚合物中的 CoS2 纳米颗粒作为具有超低过电位的氧析出反应的高效电催化剂
的CoS 2具有均匀和小粒径嵌入在共价的有机聚合物(CoS的2 @ BP-COP)已成功地通过原位硫化方法合成。与块状 CoS 2纳米片相比,CoS 2 @BP-COP 具有更多的电催化活性位点和显着增强的 OER 活性,以超低过电位(270 mV vs. RHE)和长期稳定性提高 OER 性能。
