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通过锚定在杂原子掺杂碳球上实现铁酞菁的电子结构调控用于高效氧还原反应及铝空气电池

Electronic Structure Regulation of Iron Phthalocyanine Induced by Anchoring on Heteroatom-Doping Carbon Sphere for Efficient Oxygen Reduction Reaction and Al-Air Battery.

作者信息

Luo Yingjian, Chen Yihan, Xue Yali, Chen Jinwei, Wang Gang, Wang Ruilin, Yu Miao, Zhang Jie

机构信息

College of Materials Science and Engineering, Sichuan University, Chengdu, 610065, China.

School of Mechanical Engineering, Sichuan University, Chengdu, 610065, China.

出版信息

Small. 2022 Jan;18(2):e2105594. doi: 10.1002/smll.202105594. Epub 2021 Dec 3.

Abstract

Aluminum-air batteries (AABs) are deemed as a potential clean energy storage device. However, exploiting high-efficiency and stable oxygen reduction reaction (ORR) electrocatalysts in AABs is still a challenge. Iron phthalocyanine (FePc) shows a great prospect in ORR but still far from Pt-based catalysts. Here, the hybrid electrocatalysts of monolayer FePc and hollow N,S-doped carbon spheres (HNSCs) are innovatively constructed through π-π stacking to achieve high dispersion. The resulting FePc@HNSC catalyst exhibits an outstanding ORR activity, outperforming that of pristine FePc and even most Fe-based catalysts reported to date. Moreover, the AAB using FePc@HNSC catalyst not only demonstrates a superior power density than the battery with Pt/C, but also displays stable discharge voltages and excellent durability. Furthermore, the theoretical calculations confirm that the charge distribution and d-band center of the Fe atom in FePc are efficiently optimized by hybrid configuration via the introduction of N,S-doped carbon substrate. The design leads to an enriched electron density around Fe active sites and significant reduction of energy barrier for OH* formation, which are favorable for the improvement of electrocatalytic ORR performance. This work provides a chance to expand the application of metallic macrocyclic compound electrocatalysts in various energy technologies.

摘要

铝空气电池(AABs)被认为是一种潜在的清洁能源存储装置。然而,在AABs中开发高效且稳定的氧还原反应(ORR)电催化剂仍然是一项挑战。铁酞菁(FePc)在ORR中显示出巨大的前景,但仍远不及基于铂的催化剂。在此,通过π-π堆积创新地构建了单层FePc与空心N、S掺杂碳球(HNSCs)的混合电催化剂,以实现高分散性。所得的FePc@HNSC催化剂表现出出色的ORR活性,优于原始FePc,甚至优于迄今为止报道的大多数铁基催化剂。此外,使用FePc@HNSC催化剂的AAB不仅展现出比使用Pt/C的电池更高的功率密度,还具有稳定的放电电压和出色的耐久性。此外,理论计算证实,通过引入N、S掺杂碳基底,FePc中Fe原子的电荷分布和d带中心通过混合构型得到有效优化。这种设计导致Fe活性位点周围的电子密度增加,并且OH*形成的能垒显著降低,这有利于电催化ORR性能的提高。这项工作为扩大金属大环化合物电催化剂在各种能源技术中的应用提供了契机。

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