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首页> 外文期刊>Bulletin of Materials Science >Insights into the effect of structure-directing agents on structural properties of mesoporous carbon for polymer electrolyte fuel cells
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Insights into the effect of structure-directing agents on structural properties of mesoporous carbon for polymer electrolyte fuel cells

机译:洞察结构导向剂对聚合物电解质燃料电池中孔碳结构性能的影响

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摘要

Synthesis of mesoporous carbon (MC) with well-defined morphologies and, wide range of surface area and pore size, is reported by organic-organic interaction between thermally decomposable surfactants (structure-directing agents) and the cost-effective carbon precursors, such as phloroglucinol and formaldehyde. Selected surfactants based on tri-block co-polymer, non-ionic and ionic, are used for synthesis of MCs with wide variation in their physical properties. The present method could be applied to large-scale production of porous carbon with desired surface area and pore morphology and would practically be relevant to many emerging technologies including electrochemical power sources such as super-capacitors and fuel cells. In the present study, we have successfully used MCs as gas-diffusion layers in fuel cell electrodes and established proper balance between air permeability and water management. The porous carbon contributes significantly to reduce mass transfer existing at high current density region resulting in improved performance of the polymer electrolyte fuel cells.
机译:通过可热分解的表面活性剂(结构导向剂)与具有成本效益的碳前驱物(如碳纳米管)之间的有机-有机相互作用,报道了具有明确形态,宽范围的表面积和孔径的介孔碳(MC)的合成。间苯三酚和甲醛。基于三嵌段共聚物(非离子型和离子型)的选定表面活性剂可用于合成物理性质差异较大的MC。本方法可以应用于具有所需表面积和孔形态的多孔碳的大规模生产,并且实际上与包括电化学电源例如超级电容器和燃料电池在内的许多新兴技术有关。在本研究中,我们已经成功地将MC用作燃料电池电极中的气体扩散层,并在透气性和水管理之间建立了适当的平衡。多孔碳显着有助于减少在高电流密度区域存在的传质,从而改善了聚合物电解质燃料电池的性能。

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