A novel strategy to synthesize Pt/CNTs nanocatalyst with highly improved activity for methanol electrooxidation 1st edition by Pingping Yang, Zihan Zhou, Taotao Zheng, Chunmeng Gu, Xi Gong, Yuanyuan Zhang, Yixi Xie, Nianjun Yang, Junjie Fei – Ebook PDF Instant Download/Delivery
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Author : Pingping Yang, Zihan Zhou, Taotao Zheng, Chunmeng Gu, Xi Gong, Yuanyuan Zhang, Yixi Xie, Nianjun Yang, Junjie Fei
Maximizing the activity of Pt catalysts for methanol oxidation (MOR) while minimizing adsorbed CO poisoning during MOR remains a major challenge. We have prepared Pt nanoparticles on multi-walled carbon nanotubes (MWCNTs)-supported catalysts in deep eutectic solvents (DES). These nanocatalysts are shown to be temperature dependent as the catalyst prepared at 80 °C (referred to Pt/CNTs-80) shows higher catalytic performance toward methanol (peak current: 1028.6 mA mgPt−1) and better CO anti-poisoning capability (onset potential: 0.31 V, peak potential: 0.61 V) compared with Pt/CNTs-25 (synthesized in DES at 25 °C) (520.7 mA mgPt−1, 0.56 V, 0.64 V), Pt/CNTs-W (synthesized in water at 80 °C) (260.8 mA mgPt−1, 0.58 V, 0.66 V) and commercial Pt/C (177.8 mA mgPt−1, 0.63 V, 0.71 V). This study provides a suitable strategy for the preparation of high performance Pt-based electrocatalysts for the direct methanol fuel cell (DMFC).
A novel strategy to synthesize Pt/CNTs nanocatalyst with highly improved activity for methanol electrooxidation 1st Table of contents:
Chapter 1
Chapter 2
Chapter 3
Chapter 4
Chapter 5
Chapter 6
Chapter 7
Chapter 8
Chapter 9
Chapter 10
Chapter 11
Chapter 12
Chapter 13
Chapter 14
Chapter 15
Chapter 16
Chapter 17
Chapter 18
Chapter 19
Chapter 20
Chapter 21
Chapter 22
Chapter 23
Chapter 24
Chapter 25
Chapter 26
Chapter 27
Chapter 28
Chapter 29
Chapter 30
Chapter 31
Chapter 32
Chapter 33
Chapter 34
Chapter 35
Chapter 36
Chapter 37
Chapter 38
Chapter 39
Chapter 40
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