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Shrimp-shell derived carbon nanodots as carbon and nitrogen sources to fabricate three-dimensional N-doped porous carbon electrocatalysts for the oxygen reduction reaction

机译:虾壳衍生的碳纳米点作为碳和氮源,以制备用于氧还原反应的三维N掺杂多孔碳电催化剂

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摘要

Development of cheap, abundant and metal-free N-doped carbon materials as high efficiency oxygen reduction electrocatalysts is crucial for their practical applications in future fuel cell devices. Here, three-dimensional (3D) N-doped porous carbon (NPC) materials have been successfully developed by a simple template-assisted (e.g., SiO2 spheres) high temperature pyrolysis approach using shrimp-shell derived N-doped carbon nanodots (N-CNs) as carbon and nitrogen sources obtained through a facile hydrothermal method. The shrimp-shell derived N-CNs with a product yield of ∼5% possess rich surface O- and N-containing functional groups and small nanodot sizes of 1.5–5.0 nm, which are mixed with surface acidification treated SiO2 spheres with an average diameter of ∼200 nm in aqueous solution to form a N-CNs@SiO2 composite subjected to a thermal evaporation treatment. The resultant N-CNs@SiO2 composite is further thermally treated in a N2 atmosphere at different pyrolysis temperatures, followed by acid etching, to obtain 3D N-doped porous carbon (NPC) materials. As electrocatalysts for oxygen reduction reaction (ORR) in alkaline media, the experimental results demonstrate that 3D NPC obtained at 800 °C (NPC-800) with a surface area of 360.2 m2 g−1 exhibits the best ORR catalytic activity with an onset potential of −0.06 V, a half wave potential of −0.21 V and a large limiting current density of 5.3 mA cm−2 (at −0.4 V, vs. Ag/AgCl) among all NPC materials investigated, comparable to that of the commercial Pt/C catalyst with an onset potential of −0.03 V, a half wave potential of −0.17 V and a limiting current density of 5.5 mA cm−2 at −0.4 V. Such a 3D porous carbon ORR electrocatalyst also displays superior durability and high methanol tolerance in alkaline media, apparently better than the commercial Pt/C catalyst. The findings of this work would be valuable for the development of low-cost and abundant N-doped carbon materials from biomass as high performance metal-free electrocatalysts.
机译:廉价,丰富且不含金属的N掺杂碳材料作为高效氧还原电催化剂的开发对其在未来燃料电池设备中的实际应用至关重要。在这里,通过简单的模板辅助(例如SiO2球)高温热解方法,使用虾壳衍生的N掺杂碳纳米点(N-),成功开发了三维(3D)N掺杂多孔碳(NPC)材料。 CNs)作为碳和氮的来源,通过简便的水热法获得。虾壳衍生的N-CN的产率约为5%,具有丰富的表面O和N官能团以及1.5-5.0 nm的小纳米点,并与经表面酸化处理的平均直径的SiO2球混合在水溶液中约200nm处形成N-CNs @ SiO 2复合材料,进行热蒸发处理。将所得的N-CNs @ SiO 2复合材料在N 2气氛中在不同的热解温度下进一步热处理,然后进行酸蚀刻,以获得3D N掺杂的多孔碳(NPC)材料。作为碱性介质中氧还原反应(ORR)的电催化剂,实验结果表明,在800°C(NPC-800)下获得的表面积为360.2 m2 g-1的3D NPC表现出最佳的ORR催化活性,且具有起始电位-0.06 V的半波电位,-0.21 V的半波电位和5.3 mA cm-2的大极限电流密度(在-0.4 V时,相对于Ag / AgCl)在所有NPC材料中均与商用Pt相当/ C催化剂,其起始电势为-0.03 V,半波电势为-0.17 V,极限电流密度为-0.4 V时的极限电流密度为5.5 mA cm-2。这种3D多孔碳ORR电催化剂还显示出优异的耐久性和高甲醇含量在碱性介质中的耐受性,明显优于市售Pt / C催化剂。这项工作的发现对于利用生物质作为高性能的无金属电催化剂开发低成本和富氮的碳材料将具有重要的价值。

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