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非晶/晶界界面电催化剂中超低 Pt 掺杂和 Pt-Ni 对位点促进碱性析氢高效进行。

Ultra-Low Pt Doping and Pt-Ni Pair Sites in Amorphous/Crystalline Interfacial Electrocatalyst Enable Efficient Alkaline Hydrogen Evolution.

机构信息

School of Materials Science and Engineering, Ocean University of China, 238 Songling Road, Qingdao, Shandong Province, 266100, P. R. China.

Institute of Optoelectronic Materials and Devices, College of Optical and Electronic Technology, China Jiliang University, 256 Xueyuan Street, Hangzhou, Zhejiang, 310018, P. R. China.

出版信息

Small. 2023 Jun;19(23):e2300368. doi: 10.1002/smll.202300368. Epub 2023 Mar 6.

Abstract

Noble metal doping can achieve an increase in mass activity (MA) without sacrificing catalysis efficiency and stability, so that alkaline hydrogen evolution reaction (HER) performance of the catalyst can be optimized to the maximum degree. However, its excessively large ionic radius makes it difficult to achieve either interstitial doping or substitutional doping under mild conditions. Herein, a hierarchical nanostructured electrocatalyst with enriched amorphous/crystalline interfaces for high-efficiency alkaline HER is reported, which is composed of amorphous/crystalline (Co, Ni) (HPO ) (OH) homogeneous hierarchical structure with an ultra-low doped Pt (Pt-a/c-NiHPi). Benefiting from the structural flexibility of the amorphous component, extremely low Pt (0.21 wt.%, totally 3.31 µg Pt on 1 cm NF) are stably doped on it via a simple two-phase hydrothermal method. The DFT calculations show that due to the strongly electron transfer between the crystalline/amorphous components at the interfaces, electrons finally concentrate toward Pt and Ni in the amorphous components, thus the electrocatalyst has near-optimal energy barriers and adsorption energy for H O and H . With the above benefits, the obtained catalyst exhibits an exceptionally high MA (39.1 mA µg ) at 70 mV, which is almost the highest level among the reported Pt-based electrocatalysts for alkaline HER.

摘要

贵金属掺杂可以在不牺牲催化效率和稳定性的情况下提高质量活性(MA),从而最大限度地优化催化剂的碱性析氢反应(HER)性能。然而,其过大的离子半径使得在温和条件下难以实现间隙掺杂或取代掺杂。在此,报道了一种具有丰富非晶/晶界的分级纳米结构电催化剂,用于高效碱性 HER,它由非晶/晶相(Co,Ni)(HPO)(OH)均匀分级结构组成,具有超低掺杂的 Pt(Pt-a/c-NiHPi)。得益于非晶成分的结构灵活性,通过简单的两相水热法可以将极其少量的 Pt(0.21 wt.%,总共 3.31 µg Pt 负载在 1 cm NF 上)稳定地掺杂在其上。DFT 计算表明,由于界面处晶相/非晶相之间的强烈电子转移,电子最终集中在非晶相中的 Pt 和 Ni 上,因此电催化剂对 H2O 和 H 具有近乎最佳的能量势垒和吸附能。由于具有上述优势,所获得的催化剂在 70 mV 时表现出异常高的 MA(39.1 mA µg),这几乎是报道的碱性 HER 用 Pt 基电催化剂中的最高水平。

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