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Improvement of proton-exchange membrane fuel cell performance using platinum-loaded carbon black entrapped in crosslinked chitosan

机译:使用交联壳聚糖中夹杂的载有铂的炭黑改善质子交换膜燃料电池的性能

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To improve the performance of proton-exchange membrane fuel cells which use hydrogen and oxygen as fuels, the application of small proton-conducting polymer to extend the three-phase boundary into the primary pores of catalyst-loaded carbon black agglomerates is of interest. An alternative and simple crosslinking method is proposed in place of the complicated polymer-grafting methods. Platinum-loaded carbon black is entrapped in epichlorohydrin-crosslinked chitosan of low molecular weight. Morphology and pore analyses of carbon black prior and post treatment are assessed, as well as performances of fuel cells fabricated with the treated and the untreated carbon black at 40℃ and 100% humidity. Results indicate the existence of chitosan chains in the primary pores of the carbon black agglomerates, corresponding to a decline in the activation overvoltage and resulting in significantly better cell performance. An increase in chitosan amount, however, does not necessarily enhance the cell performance because effects of ohmic and concentration losses may become more dominant than that of the raised exchange current density of the cell.
机译:为了改善使用氢和氧作为燃料的质子交换膜燃料电池的性能,应用小质子传导聚合物将三相边界扩展到负载催化剂的炭黑团聚物的主要孔中是很有意义的。提出了一种替代和简单的交联方法来代替复杂的聚合物接枝方法。负载铂的炭黑被低分子量的环氧氯丙烷交联的壳聚糖截留。评估了炭黑在处理前后的形态和孔隙分析,以及在40℃和100%湿度下用处理过的和未经处理的炭黑制造的燃料电池的性能。结果表明,在炭黑附聚物的主要孔中存在壳聚糖链,这对应于活化过电压的下降,并导致电池性能明显改善。然而,壳聚糖量的增加并不一定会提高电池性能,因为欧姆和浓度损失的影响可能会比增加的电池交换电流密度的影响更为明显。

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