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铂钌/氮掺杂石墨烯复合碳纳米纤维深冷处理的形貌重构研究

Research on the Morphology Reconstruction of Deep Cryogenic Treatment on PtRu/nitrogen-Doped Graphene Composite Carbon Nanofibers.

作者信息

Lv Shuaishuai, Zhu Yangyang, Wang Xingxing, Zhu Yu, Wang Kaixuan, Ni Hongjun, Gu Ruobo

机构信息

School of Mechanical Engineering, Nantong University, Nantong 226019, China.

Nantong Institute of Technology, Nantong 226019, China.

出版信息

Materials (Basel). 2022 Jan 25;15(3):908. doi: 10.3390/ma15030908.

Abstract

To improve the performance of PtRu/nitrogen-doped graphene composite carbon nanofibers, the composite carbon nanofibers were thermally compensated by deep cryogenic treatment (DCT), which realized the morphology reconstruction of composite carbon nanofibers. The effects of different DCT times were compared: 12 h, 18 h, and 24 h. The morphology reconstruction mechanism was explored by combining the change of inner chain structure and material group. The results showed that the fibers treated for 12 h had better physical and chemical properties, where the diameter is evenly distributed between 500 and 800 nm. Combined with Fourier infrared analysis, the longer the cryogenic time, the more easily the water vapor and nitrogen enter polymerization reaction, causing changes of chain structure and degradation performance. With great performance of carbonization and group transformation, the PtRu/nitrogen-doped graphene composite carbon nanofibers can be used as an efficient direct alcohol fuel cell catalyst and promote its commercialization.

摘要

为提高PtRu/氮掺杂石墨烯复合碳纳米纤维的性能,通过深低温处理(DCT)对复合碳纳米纤维进行热补偿,实现了复合碳纳米纤维的形貌重构。比较了不同DCT时间(12小时、18小时和24小时)的影响。通过结合内链结构和材料基团的变化来探索形貌重构机制。结果表明,处理12小时的纤维具有更好的物理和化学性能,其直径均匀分布在500至800纳米之间。结合傅里叶红外分析可知,低温时间越长,水蒸气和氮气越容易发生聚合反应,导致链结构变化和降解性能改变。PtRu/氮掺杂石墨烯复合碳纳米纤维具有优异的碳化和基团转变性能,可作为高效的直接醇类燃料电池催化剂并推动其商业化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f2b/8838454/83b2f455e5d9/materials-15-00908-g001.jpg

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