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Correlation between Precursor Properties and Performance in the Oxygen Reduction Reaction of Pt and Co 'Core-shell' Carbon Nitride-Based Electrocatalysts

机译:PT和CO“核心壳”碳氮化物电催化剂氧还原反应中前体性能与性能的相关性

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摘要

This report shows the synthesis of a new family of "core-shell" carbon nitride (CN)-based electrocatalysts (ECs) for the oxygen reduction reaction (ORR) in acid medium. The ECs comprise "cores" of carbon black nanoparticles (NPs) that are covered by a CN "shell" embedding the active sites. The latter include Pt as the "active metal" and Co as the "co-catalyst." The interplay between the synthesis parameters, the chemical composition, and the ORR performance of the final ECs is elucidated. In particular, the ORR performance and reaction mechanism are studied both in an: (i) "ex-situ" setup, by means of cyclic voltammetry with thin-film rotating ring-disk electrode (CV-TF-RRDE) measurements; and (ii) "in-situ" experiment, i.e., in single proton exchange membrane fuel cells (PEMFCs) tested under operating conditions. A structural hypothesis is proposed that explains both the "ex situ" and the "in situ" ORR results on the basis of: (i) the relative amounts of the reactants used in the precursor synthesis; and (ii) the main temperature of the pyrolysis process (T-f) adopted in the preparation of the ECs. It is shown that the understanding of the fundamental features of the physicochemical processes involved in the preparation of the ECs is crucial in order to improve the proposed synthesis route and to yield ORR ECs exhibiting a performance level beyond the state of the art.
机译:该报告显示了在酸性介质中的氧还原反应(ORR)的氧气还原反应(ORR)的新的“核壳”氮化物(CN)电催化剂(ECS)的合成。 ECS包括由嵌入活性位点的CN“壳”覆盖的炭黑纳米颗粒(NPS)的“核心”。后者包括Pt作为“活性金属”和CO作为“助催化剂”。阐明了合成参数,化学组合物和最终ECS的ORR性能之间的相互作用。特别地,通过具有薄膜旋转环形盘电极(CV-TF-RRDE)测量的循环伏安法在:(i)“前原位”设置中研究了ORR性能和反应机理; (ii)“原位”实验,即在操作条件下测试的单个质子交换膜燃料电池(PEMFC)。提出了结构假设,其基于以下基于:(i)前体合成中使用的反应物的相对量来解释“ex原位”和“原位”ORR结果; (ii)ECS制备中采用的热解过程(T-F)的主要温度。结果表明,理解所涉及ECS制备中涉及的物理化学过程的基本特征是至关重要的,以改善所提出的合成途径,并屈服于呈现出超出现有技术的性能水平的ORR EC。

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