Nafion基纳米纤维三维网络结构膜电极的可控构筑及在DMFC中的应用研究
批准号:
21373256
项目类别:
面上项目
资助金额:
85.0 万元
负责人:
邹志青
依托单位:
学科分类:
电能源化学
结题年份:
2017
批准年份:
2013
项目状态:
已结题
项目参与者:
杨辉、蒋晶晶、曹伊凡、霍为炜、陈鹏
中文摘要
集成催化剂和质子交换膜的膜电极存在催化剂利用率低、催化层结构无序等问题,制约了DMFC性能提高和成本降低,因而迫切需要发展三维网络纳米结构膜电极,最大化三相反应界面,实现电池性能的提高和催化剂用量的降低。本项目借助静电纺技术工艺成熟、纳米纤维尺寸和形貌可控等特点,构筑纳米纤维三维网络结构膜电极,研究纳米结构的形貌、尺寸、取向、分布、催化剂负载方法和催化剂粒子分布以及树脂分散度等对膜电极内分子、质子和电子的高效输运及催化剂利用率的影响,重点探索仅纳米纤维表层含催化剂粒子的制备方法,阐明纳米纤维三维网络结构膜电极的可控构筑规律,实现膜电极三相界面电催化活性、传质效率和结构稳定性的提高。通过纳米纤维网络的表面修饰和结构调控,探索实现三维网络结构催化层与扩散层及膜之间界面兼容性提高的方法,提升膜电极寿命。发展低催化剂用量、高性能纳米纤维网络结构膜电极制备方法,推进DMFC的实用化进程。
英文摘要
The relatively low utilization of noble catalyst and disordered catalyst layer are the remaining issues limiting the performance improvement of the membrane electrode assembly (MEA) for a DMFC. Three-dimensional nanostructured components are introduced in MEA as an attractive solution to improve the performance, promising to maximize the three-phase boundary, to enhance the electrochemical reactivity and to reduce the noble metal loading. In the project, a novel MEA with three-dimensional nanofibrous structure will be fabricated by an electrospinning technique, expecting above advantages. The relationships between the nanostructures (such as morphologies, nano sizes, arrangement manner and uniformity of nanofibers, the loading sites and distribution of the catalysts, the homogeneity of the Nafion resin, etc.) with the MEA properties (such as the efficiency of mass, proton and electron transportation, the utilization of catalyst) will be investigated internally. A new approach will be pursued to load the noble catalyst only on the surface layer of the nanofibers, promising the maxim catalyst utilization. The lifetime of the MEAs will be prolonged by boundary modification and structure regulation, due to their enhanced interface compatibility between the gas diffusion layer, the Nafion membrane with the catalyst layer. Therefore, such nanofiber network structure and corresponding nanofabricating approach is desired to achieve superior performance and lower catalyst loading in MEAs, promoting the commercial viability of DMFCs.
课题针对DMFC膜电极存在的催化剂利用率低、催化层结构无序等问题,借助静电纺技术工艺成熟、纳米纤维尺寸和形貌可控等特点,构筑了多种纳米纤维三维网络结构膜电极,最大化膜电极三相反应界面,实现了电池性能的提高和催化剂Pt用量的大幅降低,实现了预定的研究目标。通过纳米纤维网络结构、多孔微球等催化层结构的构筑,直接甲醇燃料电池的性能得到显著提升(在PtRu载量为2.0 mg cm-2时,最大功率密度43.0±0.9 mW cm-2),在同比性能情况下,阴阳极催化剂载量均可降低至1mgcm-2,是原来的1/2~1/4,显著降低了成本;通过静电纺丝及热处理技术制备了Co/N/C纳米棒氧还原催化剂在酸性条件下具有较好的ORR活性,起始还原电位在0.8V (vs RHE),半波电位为0.62V(vs RHE),应用于DMFC阴极催化剂,在25oC、空气自呼吸模式条件下,DMFC的最大功率密度可达8 mWcm-2,表明该类催化剂具有良好的应用前景。发展低催化剂用量、高性能纳米纤维网络结构膜电极制备方法,推进DMFC的实用化进程。
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Conversionof PtNi alloy from disordered to ordered for enhanced activity and durabilityof methanol tolerant oxygen reduction reaction,
PtNi合金从无序到有序的转变,以增强耐甲醇氧还原反应的活性和耐久性,
DOI:
--
发表时间:
--
期刊:
Nano Research
影响因子:
9.9
作者:
[Liangliang Zou, Jing Fan, Yi Zhou, Congming Wang, Jun Li, Zhiqing Zou, Hui Yang]
通讯作者:
Hui Yang
Construction of porous anode by sacrificial template for a passive direct methanol fuel cell
牺牲模板法构建被动式直接甲醇燃料电池多孔阳极
DOI:
10.1016/j.jpowsour.2014.03.121
发表时间:
2014-09
期刊:
Journal of Power Sources
影响因子:
9.2
作者:
[Huang Qinghong, Jiang Jingjing, Chai Jieshi, Yuan Ting, Zhang Haifeng, Zou Zhiqing, Zhang Xiaogang, Yang Hui]
通讯作者:
Yang Hui
Performance improvement of passive direct methanol fuel cells with surface-patterned Nafion® membranes
使用表面图案化 Nafion® 膜提高被动式直接甲醇燃料电池的性能
DOI:
10.1016/j.apsusc.2014.11.087
发表时间:
2015-02
期刊:
Applied Surface Science
影响因子:
6.7
作者:
[Longjuan Pu, Jingjing Jiang, Ting Yuan, Jieshi Chai, Haifeng Zhang, Zhiqing Zou, Xue-Mei Li, Hui Yang]
通讯作者:
Hui Yang
Electronspun nanofiber network anode for a passive direct methanol fuel cell
用于被动直接甲醇燃料电池的电纺纳米纤维网络阳极
DOI:
10.1016/j.jpowsour.2013.12.130
发表时间:
2014-06
期刊:
Journal of Power Sources
影响因子:
9.2
作者:
[Chen Peng, Wu Huijuan, Yuan Ting, Zou Zhiqing, Zhang Haifeng, Zheng Junwei, Yang Hui]
通讯作者:
Yang Hui
One-step Synthesis of Pt Nanoparticles Highly Loaded on Graphene Aerogel as Durable Oxygen Reduction Electrocatalyst
一步合成石墨烯气凝胶上高负载 Pt 纳米颗粒作为耐用的氧还原电催化剂
DOI:
10.1016/j.electacta.2014.11.107
发表时间:
2015-01
期刊:
Electrochimica Acta
影响因子:
6.6
作者:
[Qinghong Huang, Feifei Tao, Liangliang Zou, Ting Yuan, Zhiqing Zou, Haifeng Zhang, Xiaogang Zhang, Hui Yang]
通讯作者:
Hui Yang
共 11 条
过渡金属-氮掺杂碳氧还原催化剂高密度活性位点的形成机制和结构演化规律
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批准号:21673275
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项目类别:面上项目
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资助金额:65.0万元
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批准年份:2016
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负责人:邹志青
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依托单位:
国内基金
海外基金