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首页> 外文期刊>Electrochimica Acta >Oxygen reduction reaction activity of nitrogen, oxygen and sulphur containing carbon derived from low-temperature pyrolysis of poultry featherfiber
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Oxygen reduction reaction activity of nitrogen, oxygen and sulphur containing carbon derived from low-temperature pyrolysis of poultry featherfiber

机译:禽羽毛纤维低温热解制氮,氧,硫的碳的氧还原反应活性

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Poultry featherfiber (PFF), the soft fibrous part of poultry feathers, is used as the novel precursor to derive N-, O- and S-doped-carbon (CNx) electrocatalysts. The catalysts are synthesized by a low-temperature pyrolysis of PFF or a mixture of PFF and Fe/Co salts in varying concentrations, followed by acid-treatment to remove the metal from pyrolyzed samples. Electrochemical measurements in alkaline media exhibit significant ORR electrocatalytic activity of CNx with an ORR onset potential of similar to-230 mV (vs. Ag/AgCl), which is comparable to Pt (similar to-210 mV) under similar conditions. Despite the absence of metal-carbon bonds, the CNx electrocatalysts synthesized in presence of Fe/Co exhibit catalytic activity significantly higher than that of the CNx synthesized without metals. This is attributed to the modified chemical states of C-N and C-O sites due to the presence of Fe/Co during pyrolysis. Hence, presence of metal precursors during pyrolysis affects the ORR activity of CNx indirectly. The CNx catalysts synthesized in presence of varying Fe to Co ratio contain varying N-content and the ORR peak current is found to vary linearly with the N-content. Observed ORR activity of the present catalyst makes it a suitable Pt-free catalyst for low temperature fuel cells. (C) 2015 Elsevier Ltd. All rights reserved.
机译:家禽羽毛纤维(PFF)是家禽羽毛的柔软纤维部分,被用作衍生N,O和S掺杂碳(CNx)电催化剂的新型前体。通过对PFF或不同浓度的PFF和Fe / Co盐的混合物进行高温热解,然后进行酸处理以从热解样品中除去金属,来合成催化剂。在碱性介质中的电化学测量显示CNx具有显着的ORR电催化活性,其ORR起始电势近似于-230 mV(vs. Ag / AgCl),在相似条件下可与Pt(相似于-210 mV)相提并论。尽管不存在金属-碳键,但是在Fe / Co存在下合成的CNx电催化剂的催化活性明显高于没有金属时合成的CNx的催化活性。这归因于热解过程中Fe / Co的存在,导致C-N和C-O位的化学状态发生了变化。因此,热解过程中金属前体的存在间接影响CNx的ORR活性。在Fe / Co比变化的情况下合成的CNx催化剂包含变化的N含量,并且发现ORR峰值电流随N含量线性变化。观察到的本发明催化剂的ORR活性使其成为适用于低温燃料电池的无Pt催化剂。 (C)2015 Elsevier Ltd.保留所有权利。

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