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由超细微纳米颗粒组装而成的用于甲醇氧化反应的铂纳米碗的一锅法合成

One-Pot Synthesis of Pt Nanobowls Assembled from Ultrafine Nanoparticles for Methanol Oxidation Reaction.

作者信息

Zhang Shoulin, Wang Pu, Chen Yaoshun, Yao Wenqing, Li Zhijuan, Tang Yawen

机构信息

Jiangsu Key Laboratory of New Power Batteries, Jiangsu Collaborative Innovation Centre of Biomedical Functional Materials, School of Chemistry and Materials Science, Nanjing Normal University, Nanjing 210023, China.

School of Environmental Science, Nanjing Xiaozhuang University, Nanjing 211171, China.

出版信息

Nanomaterials (Basel). 2022 Oct 4;12(19):3471. doi: 10.3390/nano12193471.

Abstract

Simultaneously engineering a bowl-like and ultrafine nano-size structure offers an attractive route to not only increase the utilization efficiency of noble metals, the specific surface areas and the availability of active sites, but also boost the structural robustness and long-term stability. However, a great challenge remains in terms of the methods of synthesis. Herein, we report a facile one-pot hydrothermal method for the preparation of hollow porous Pt nanobowls (NBs) assembled from ultrafine particles. N,N'-methylenebisacrylamide (MBAA) acts as a structure-directing agent that forms a self-template with Pt ions and drives the nucleation and assembly of Pt metals, resulting in the fabrication of Pt NBs from ultrafine particles. By virtue of their unique structure and morphology, the optimized Pt NBs exhibited enhanced electrocatalytic methanol oxidation reaction (MOR) activity with 3.1-fold greater mass activity and 2.6-fold greater specific activities compared with those of commercial Pt black catalysts, as well as excellent stability and anti-poisoning ability.

摘要

同时构建碗状和超细微纳米尺寸结构不仅为提高贵金属的利用效率、比表面积和活性位点的可用性提供了一条有吸引力的途径,还能增强结构的稳健性和长期稳定性。然而,在合成方法方面仍然存在巨大挑战。在此,我们报道了一种简便的一锅水热法,用于制备由超细颗粒组装而成的中空多孔铂纳米碗(NBs)。N,N'-亚甲基双丙烯酰胺(MBAA)作为结构导向剂,与铂离子形成自模板,驱动铂金属的成核和组装,从而由超细颗粒制备出铂纳米碗。凭借其独特的结构和形态,优化后的铂纳米碗表现出增强的电催化甲醇氧化反应(MOR)活性,与商业铂黑催化剂相比,质量活性提高了3.1倍,比活性提高了2.6倍,同时还具有出色的稳定性和抗中毒能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02a8/9565777/e39a6882e80d/nanomaterials-12-03471-g001.jpg

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