Preparation and properties and performance study of chopped carbon fiber/polyvinylidene fluoride/expanded graphite composite bipolar plates utilizing surface-coated carbon nanotubes

IF 2.6 4区 化学 Q3 ELECTROCHEMISTRY Journal of Solid State Electrochemistry Pub Date : 2024-10-19 DOI:10.1007/s10008-024-06113-z
Wenkai Li, Haodong Zeng, Zhiyong Xie
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Abstract

The bipolar plate is an important part of the proton exchange membrane fuel cell, which has high requirements for mechanical properties and strength. Composite bipolar plates have the advantages of easy processing and corrosion resistance, but there are problems such as difficulty in balancing between mechanical properties and electrical conductivity. In this study, surface-coating modification of chopped carbon fibers was carried out by catalytic chemical vapor deposition, and multi-walled carbon nanotube-coated carbon fiber composites with better interfacial contact properties and improved specific surface area were prepared and added to polyvinylidene fluoride/expanded graphite to synthesize composite bipolar plates. Due to the selective distribution of carbon nanotubes and the synergistic construction of conductive pathways with carbon fibers, the performance of the composite bipolar plate was improved, with a conductivity of 116.01 S/cm, a flexural strength of 50.37 MPa, and both good hydrophobicity and corrosion resistance and a corrosion current density of 0.804 µA cm−2. The results show that the prepared composite bipolar plates meet the requirements in fuel cell use, and the use of carbon nanotubes coated with carbon fibers to synergistically construct conductive networks has also proven to be a potential performance enhancer for composite bipolar plates.

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利用表面包覆碳纳米管制备短切碳纤维/聚偏氟乙烯/膨胀石墨复合双极板及其性能研究
双极板是质子交换膜燃料电池的重要组成部分,对其力学性能和强度有很高的要求。复合双极板具有易加工、耐腐蚀等优点,但存在力学性能与导电性难以平衡等问题。本研究采用催化化学气相沉积法对短切碳纤维进行表面涂层改性,制备出界面接触性能更好、比表面积提高的多壁碳纳米管涂层碳纤维复合材料,并将其加入聚偏氟乙烯/膨胀石墨中制备复合双极板。由于碳纳米管的选择性分布和碳纤维导电通道的协同构建,复合双极板的电导率达到116.01 S/cm,抗弯强度达到50.37 MPa,同时具有良好的疏水性和耐腐蚀性,腐蚀电流密度为0.804µa cm−2。结果表明,制备的复合双极板满足燃料电池的使用要求,并且利用碳纳米管包覆碳纤维协同构建导电网络也被证明是复合双极板潜在的性能增强剂。
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阿拉丁
polyvinylidene fluoride (PVDF)
来源期刊
CiteScore
4.80
自引率
4.00%
发文量
227
审稿时长
4.1 months
期刊介绍: The Journal of Solid State Electrochemistry is devoted to all aspects of solid-state chemistry and solid-state physics in electrochemistry. The Journal of Solid State Electrochemistry publishes papers on all aspects of electrochemistry of solid compounds, including experimental and theoretical, basic and applied work. It equally publishes papers on the thermodynamics and kinetics of electrochemical reactions if at least one actively participating phase is solid. Also of interest are articles on the transport of ions and electrons in solids whenever these processes are relevant to electrochemical reactions and on the use of solid-state electrochemical reactions in the analysis of solids and their surfaces. The journal covers solid-state electrochemistry and focusses on the following fields: mechanisms of solid-state electrochemical reactions, semiconductor electrochemistry, electrochemical batteries, accumulators and fuel cells, electrochemical mineral leaching, galvanic metal plating, electrochemical potential memory devices, solid-state electrochemical sensors, ion and electron transport in solid materials and polymers, electrocatalysis, photoelectrochemistry, corrosion of solid materials, solid-state electroanalysis, electrochemical machining of materials, electrochromism and electrochromic devices, new electrochemical solid-state synthesis. The Journal of Solid State Electrochemistry makes the professional in research and industry aware of this swift progress and its importance for future developments and success in the above-mentioned fields.
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