Niu Qijian, Chen Binling, Guo Junxia, Nie Jun, Guo Xindong, Ma Guiping
Key Laboratory of carbon Fiber and Functional Polymers, Ministry of Education, Beijing University of Chemical Technology, Beijing, 100029, People's Republic of China.
State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing, 100029, People's Republic of China.
Nanomicro Lett. 2019 Jan 19;11(1):8. doi: 10.1007/s40820-019-0238-4.
Developing an efficient and durable oxygen reduction electrocatalyst is critical for clean-energy technology, such as fuel cells and metal-air batteries. In this study, we developed a facile strategy for the preparation of flexible, porous, and well-dispersed metal-heteroatom-doped carbon nanofibers by direct carbonization of electrospun Zn/Co-ZIFs/PAN nanofibers (Zn/Co-ZIFs/PAN). The obtained Zn/Co and N co-doped porous carbon nanofibers carbonized at 800 °C (Zn/Co-N@PCNFs-800) presented a good flexibility, a continuous porous structure, and a superior oxygen reduction reaction (ORR) catalytic activity to that of commercial 20 wt% Pt/C, in terms of its onset potential (0.98 V vs. RHE), half-wave potential (0.89 V vs. RHE), and limiting current density (- 5.26 mA cm). In addition, we tested the suitability and durability of Zn/Co-N@PCNFs-800 as the oxygen cathode for a rechargeable Zn-air battery. The prepared Zn-air batteries exhibited a higher power density (83.5 mW cm), a higher specific capacity (640.3 mAh g), an excellent reversibility, and a better cycling life than the commercial 20 wt% Pt/C + RuO catalysts. This design strategy of flexible porous non-precious metal-doped ORR electrocatalysts obtained from electrospun ZIFs/polymer nanofibers could be extended to fabricate other novel, stable, and easy-to-use multi-functional electrocatalysts for clean-energy technology.
开发一种高效且耐用的氧还原电催化剂对于清洁能源技术(如燃料电池和金属空气电池)至关重要。在本研究中,我们通过对静电纺丝的Zn/Co-ZIFs/PAN纳米纤维(Zn/Co-ZIFs/PAN)进行直接碳化,开发了一种简便的策略来制备柔性、多孔且分散良好的金属-杂原子掺杂碳纳米纤维。在800℃碳化得到的Zn/Co和N共掺杂多孔碳纳米纤维(Zn/Co-N@PCNFs-800)具有良好的柔韧性、连续的多孔结构以及优于商业20 wt% Pt/C的氧还原反应(ORR)催化活性,其起始电位(相对于可逆氢电极,0.98 V)、半波电位(相对于可逆氢电极,0.89 V)和极限电流密度(-5.26 mA cm)均表现出色。此外,我们测试了Zn/Co-N@PCNFs-800作为可充电锌空气电池氧阴极的适用性和耐久性。所制备的锌空气电池比商业20 wt% Pt/C + RuO催化剂具有更高的功率密度(83.5 mW cm)、更高的比容量(640.3 mAh g)、优异的可逆性和更好的循环寿命。这种从静电纺丝的ZIFs/聚合物纳米纤维获得柔性多孔非贵金属掺杂ORR电催化剂的设计策略可扩展到制造用于清洁能源技术的其他新型、稳定且易于使用的多功能电催化剂。