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首页> 外文期刊>RSC Advances >N, S and P-ternary doped carbon nano-pore/tube composites derived from natural chemicals in waste sweet osmanthus fruit with superior activity for oxygen reduction in acidic and alkaline media
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N, S and P-ternary doped carbon nano-pore/tube composites derived from natural chemicals in waste sweet osmanthus fruit with superior activity for oxygen reduction in acidic and alkaline media

机译:n,s和p-ternary掺杂碳纳米孔/管复合材料源自废甜桂花果实中的天然化学品,具有优异的耐氧和碱性介质的氧气减少活性

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To promote the practical application of novel heteroatom-doped carbon electrocatalysts for the oxygen reduction reaction (ORR) in fuel cells, in this work, low-cost nitrogen (N), sulfur (S) and phosphorus (P)-ternary doped carbon nano-pore/tube composites (NSP-CNPTCs) were synthesized by natural, cheap and environment-friendly N, S and P-containing chemicals extracted from waste sweet osmanthus fruit and a certain amount of dicyandiamide with ferric sulfate as a catalyst. Electrochemical tests demonstrated that the as-prepared NSP-CNPTCs exhibited superior ORR activity in both acidic and alkaline media, showing a new approach for utilizing natural heteroatom-containing chemicals in all heteroatom-rich biomasses to synthesize value-added heteroatom-doped carbon electrocatalysts in future fuel cells.
机译:为了促进新型杂原子掺杂的碳电催化剂在燃料电池中的氧还原反应(ORR)的实际应用,在该工作中,低成本的氮气(N),硫(N),硫(P) - 掺杂的碳纳米-Pore /管复合材料(NSP-CNPTCS)由自然,廉价和环保的N,S和P含P的化学物质合成,用废甜桂花果实和一定量的双氰胺与硫酸铁作为催化剂。电化学试验证明,制备的NSP-CNPTC在酸性和碱性培养基中表现出优异的ORR活性,显示出在所有富杂原子的生物质中使用含天然杂原子的化学物质的新方法,以合成增值杂原子掺杂的碳电催化剂未来的燃料电池。

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