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Localization of platinum nanoparticles on inner walls of mesoporous hollow carbon spheres for improvement of electrochemical stability

机译:本地化的铂纳米粒子内部介孔空心碳球改进的电化学稳定

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Mesoporous hollow carbon spheres with Pt nanoparticles (NPs) loaded on their inner walls (Pt@HCmeso) have been designed and prepared through a dual-templating method. The core-shell structured Pt/SiO2@micelle-polydopamine (PDA) precursor is obtained by first depositing Pt NPs on silica spheres and then coating them with the carbon precursor of PDA and diblock copolymer micelles as soft templates. The subsequent carbonization and KOH etching convert the micelle-PDA shells into mesoporous carbon and remove the silica cores, respectively. Thus, the Pt NPs are subjected to calcination and left on the inner walls. The fabricated Pt@HC-meso achieved high electrocatalytic performance and outstanding stability in catalyzing methanol oxidation. We infer that the mesoporous carbon shells not only provide accessible diffusion pathways for the reactants, but also protect the inner Pt NPs from collision with Pt NPs in other hollow carbon spheres. Each hollow carbon sphere with Pt NPs inside can be regarded as an independent nanoreactor. Moreover, observations of the morphology have proved that the calcined Pt NPs avoid a second aggregation during the electrocatalytic process and maintain long-term stability.
机译:介孔空心碳球Pt纳米颗粒(NPs)加载到自己内心的墙(Pt@HCmeso)设计和准备通过dual-templating方法。结构化Pt / SiO2@micelle-polydopamine (PDA)前身是通过第一次沉淀Pt NPs硅球然后涂层的碳前体的PDA和diblock共聚物胶束作为软模板。碳化和KOH腐蚀转换介孔碳和micelle-PDA贝壳分别去除硅芯。Pt NPs进行煅烧,留在这里的内部墙壁。高electrocatalytic性能和实现优秀稳定的催化甲醇氧化。壳不仅提供容易扩散反应物的途径,但也保护内心的Pt NPs与Pt NPs在其他碰撞空心碳球。与Pt NPs在可以被视为一个独立nanoreactor。的形态已经证明煅烧Pt NPs避免第二个聚合期间electrocatalytic过程和长期维护稳定。

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