Hao Xiaoqiong, Jiang Zhongqing, Zhang Baoan, Tian Xiaoning, Song Changsheng, Wang Likui, Maiyalagan Thandavarayan, Hao Xiaogang, Jiang Zhong-Jie
Key Laboratory of Optical Field Manipulation of Zhejiang Province Department of Physics Zhejiang Sci-Tech University Hangzhou 310018 P. R. China.
Department of Chemical Engineering Taiyuan University of Technology Taiyuan 030024 P. R. China.
Adv Sci (Weinh). 2021 Mar 16;8(10):2004572. doi: 10.1002/advs.202004572. eCollection 2021 May.
This work reports a novel approach for the synthesis of FeCo alloy nanoparticles (NPs) embedded in the N,P-codoped carbon coated nitrogen-doped carbon nanotubes (NPC/FeCo@NCNTs). Specifically, the synthesis of NCNT is achieved by the calcination of graphene oxide-coated polystyrene spheres with Fe, Co and melamine adsorbed, during which graphene oxide is transformed into carbon nanotubes and simultaneously nitrogen is doped into the graphitic structure. The NPC/FeCo@NCNT is demonstrated to be an efficient and durable bifunctional catalyst for oxygen evolution (OER) and oxygen reduction reaction (ORR). It only needs an overpotential of 339.5 mV to deliver 10 mA cm for OER and an onset potential of 0.92 V to drive ORR. Its bifunctional catalytic activities outperform those of the composite catalyst Pt/C + RuO and most bifunctional catalysts reported. The experimental results and density functional theory calculations have demonstrated that the interplay between FeCo NPs and NCNT and the presence of N,P-codoped carbon structure play important roles in increasing the catalytic activities of the NPC/FeCo@NCNT. More impressively, the NPC/FeCo@NCNT can be used as the air-electrode catalyst, improving the performance of rechargeable liquid and flexible all-solid-state zinc-air batteries.
本工作报道了一种合成嵌入氮、磷共掺杂碳包覆氮掺杂碳纳米管(NPC/FeCo@NCNTs)中的铁钴合金纳米颗粒(NPs)的新方法。具体而言,通过对吸附有铁、钴和三聚氰胺的氧化石墨烯包覆聚苯乙烯球进行煅烧来实现氮掺杂碳纳米管的合成,在此过程中氧化石墨烯转变为碳纳米管,同时氮被掺杂到石墨结构中。结果表明,NPC/FeCo@NCNT是一种用于析氧反应(OER)和氧还原反应(ORR)的高效且耐用的双功能催化剂。对于OER,它仅需339.5 mV的过电位即可提供10 mA cm的电流密度,对于ORR,起始电位为0.92 V。其双功能催化活性优于复合催化剂Pt/C + RuO以及报道的大多数双功能催化剂。实验结果和密度泛函理论计算表明,FeCo NPs与NCNT之间的相互作用以及氮、磷共掺杂碳结构的存在对提高NPC/FeCo@NCNT的催化活性起着重要作用。更令人印象深刻的是,NPC/FeCo@NCNT可用作空气电极催化剂,提高可充电液体和柔性全固态锌空气电池的性能。