Leng Ying, Jin Kai, Wang Tian, Sun Hui
State Key Laboratory of High-Efficiency Coal Utilization and Green Chemical Engineering, School of Chemistry and Chemical Engineering, Ningxia University, Yinchuan 750021, China.
Department of Chemistry, University of Washington, Seattle, WA 98195, USA.
Polymers (Basel). 2023 Jan 19;15(3):521. doi: 10.3390/polym15030521.
The facile preparation of non-noble metal nanoparticle loaded carbon nanomaterials is promising for efficient oxygen reduction reaction (ORR) electrocatalysis. Herein, a facile preparation strategy is proposed to prepare nitrogen-doped carbon sponge loaded with fine cobalt nanoparticles by the direct pyrolysis of the cobalt ions adsorbed polymeric precursor. The polymeric sponge precursor with continuous framework and high porosity is formed by the self-assembly of a poly(amic acid). Taking advantage of the negatively charged surface and porous structure, cobalt ions can be efficiently adsorbed into the polymeric sponge. After pyrolysis, fine cobalt nanoparticles covered by carbon layers are formed, while the sponge-like structure of the precursor is also well-preserved in order to give cobalt nanoparticles loaded nitrogen-doped carbon sponges (Co/CoO@NCS) with a high loading content of 44%. The Co/CoO@NCS exhibits promising catalytic activity toward ORR with a half-wave potential of 0.830 V and a limiting current density of 4.71 mA cm. Overall, we propose a facile polymer self-assembly strategy to encapsulate transition metal nanoparticles with high loading content on a nitrogen-doped carbon sponge for efficient ORR catalysis.
简便制备负载非贵金属纳米颗粒的碳纳米材料对于高效氧还原反应(ORR)电催化具有重要意义。在此,我们提出了一种简便的制备策略,通过对吸附钴离子的聚合物前驱体进行直接热解,制备负载有精细钴纳米颗粒的氮掺杂碳海绵。具有连续骨架和高孔隙率的聚合物海绵前驱体由聚(酰胺酸)自组装而成。利用带负电荷的表面和多孔结构,钴离子能够被有效地吸附到聚合物海绵中。热解后,形成了被碳层覆盖的精细钴纳米颗粒,同时前驱体的海绵状结构也得到了很好的保留,从而得到了负载含量高达44%的负载钴纳米颗粒的氮掺杂碳海绵(Co/CoO@NCS)。Co/CoO@NCS对ORR表现出有前景的催化活性,半波电位为0.830 V,极限电流密度为4.71 mA cm。总体而言,我们提出了一种简便的聚合物自组装策略,用于在氮掺杂碳海绵上高负载量地封装过渡金属纳米颗粒,以实现高效的ORR催化。