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Microwave-induced formation of platinum nanostructured networks with superior electrochemical activity and stability

机译:微波诱导的铂纳米结构网络具有优异的电化学活性和稳定性

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摘要

Platinum nanostructured networks (PNNs) can be synthesized through the chemical reduction of H_2PtCl_6 by benzyl alcohol under microwave irradiation without the introduction of any surfactants, templates, or seeds. The synthesis route utilizes benzyl alcohol as both the reductant and the structure-directing agent, and thus, the process is particularly simple and highly repeatable. The formation of the PNN structure was ascribed to the collision-induced fusion of Pt nanocrystals owing to the cooperative functions of microwave irradiation and benzyl alcohol. Compared with a commercial Pt/C catalyst, the as-prepared PNNs possessed superior electrochemical activity and stability on the oxidation of methanol because of the unique 3D nanostructured networks and abundant defects formed during the assembly process. This study may provide a facile microwave-induced approach for the synthesis of other 3D nanostructured noble metals or their alloys.
机译:可以在不引入任何表面活性剂,模板或种子的情况下,通过在微波辐射下用苄醇对H_2PtCl_6进行化学还原来合成铂纳米结构网络(PNN)。合成路线利用苄醇作为还原剂和结构导向剂,因此,该方法特别简单并且可重复性很高。 PNN结构的形成归因于微波辐射和苯甲醇的协同作用,碰撞诱导的Pt纳米晶体的融合。与市售的Pt / C催化剂相比,由于独特的3D纳米结构网络和在组装过程中形成的大量缺陷,所制备的PNN具有优异的电化学活性和对甲醇氧化的稳定性。这项研究可能为其他3D纳米结构的贵金属或其合金的合成提供一种简便的微波诱导方法。

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