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对钯锡合金进行界面氧原子修饰以促进锌空气电池中的氧还原反应。

Interfacial oxygen atom modification of a PdSn alloy to boost oxygen reduction in zinc-air batteries.

作者信息

Li Zongge, Chen Jiabao, Guo Yajie, Zheng Fuxian, Qu Konggang, Wang Lei, Li Rui, Xiong Shenglin, Kang Wenjun, Li Haibo

机构信息

Shandong Provincial Key Laboratory of Chemical Energy Storage and Novel Cell Technology, School of Chemistry and Chemical Engineering, Liaocheng University, Liaocheng 252059, Shandong, China.

Key Laboratory of the Colloid and Interface Chemistry Ministry of Education, School of Chemistry and Chemical Engineering, Shandong University, Jinan 250100, Shandong, China.

出版信息

J Colloid Interface Sci. 2024 Apr;659:257-266. doi: 10.1016/j.jcis.2023.12.168. Epub 2023 Dec 30.

Abstract

Modifying the surface of a catalyst with heteroatoms can regulate the interfacial atomic valence state and adjust the charge distribution, which is promising for obtaining desirable platinum carbon catalyst (Pt/C)-matched oxygen reduction reaction (ORR) catalytic performance. Here, we developed an efficient method to access O-rich crystalline interfacial-exposed palladium-tin alloy (111) crystal surfaces [PdSn (111)] for highly efficient ORR via direct reduction of Pd/Sn metal salt species that are well dispersed in a nitrogen, phosphorus-doped carbonaceous (NPC) substrate. In addition to the other materials, preembedded Pd/Sn metal salt species in NPC control the release of metal sources upon reduction in the liquid phase, resulting in the grafting of an as-prepared PdSn alloy with many merits, such as efficient electron conduction, short-range crystallinity and increased crystal interface exposure. The presence of a considerable quantity of oxygen atoms at the interface of small-sized PdSn alloys on NPC substrates has been methodically verified by powder X-ray diffraction, high-resolution transmission electron microscopy and X-ray photoelectron spectroscopy characterizations. The PdSn-O sample exhibited excellent ORR activity, achieving an onset potential of ∼0.99 V and a half-wave potential of ∼0.88 V at 1600 rpm in O-saturated 1.0 M KOH. Density functional theory simulations of pure Pd, Pd-O, the PdSn alloy and PdSn-O suggest that interfacial oxygen atom modification is responsible for the significantly improved ORR activity. The assembled zinc-air battery provides a high specific power of 218.9 mW cm and a specific capacity of 810.6 mAh g. Our approach has the potential to stimulate the preparation of O-rich crystalline interfacial-exposed alloy compounds for other energy conversion applications.

摘要

用杂原子修饰催化剂表面可以调节界面原子价态并调整电荷分布,这有望获得与氧还原反应(ORR)催化性能相匹配的理想铂碳催化剂(Pt/C)。在此,我们开发了一种有效的方法,通过直接还原均匀分散在氮、磷掺杂碳质(NPC)基底中的钯/锡金属盐物种,来获得富含氧的晶体界面暴露钯锡合金(111)晶体表面[PdSn(111)],以实现高效的ORR。除其他材料外,NPC中预嵌入的钯/锡金属盐物种在液相还原时控制金属源的释放,从而接枝制备出具有许多优点的钯锡合金,如高效的电子传导、短程结晶度和增加的晶体界面暴露。通过粉末X射线衍射、高分辨率透射电子显微镜和X射线光电子能谱表征,系统地验证了NPC基底上小尺寸钯锡合金界面处大量氧原子的存在。PdSn-O样品表现出优异的ORR活性,在O饱和的1.0 M KOH中,在1600 rpm下起始电位约为0.99 V,半波电位约为0.88 V。对纯钯、钯-氧、钯锡合金和钯锡-氧的密度泛函理论模拟表明,界面氧原子修饰是ORR活性显著提高的原因。组装的锌空气电池具有218.9 mW cm的高比功率和810.6 mAh g的比容量。我们的方法有可能促进用于其他能量转换应用的富含氧的晶体界面暴露合金化合物的制备。

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