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Designed Synthesis of Size-Controlled Pt-Cu Alloy Nanoparticles Encapsulated in Carbon Nanofibers and Their High Efficient Electrocatalytic Activity Toward Hydrogen Evolution Reaction

机译:设计在碳纳米纤维中封装的尺寸控制的Pt-Cu合金纳米粒子的合成及其对氢气进化反应的高效电催化活性

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摘要

Well-dispersed Pt-Cu alloy nanoparticles (NPs) with a diameter of only ≈2 nm encapsulated in carbon nanofibers (CNFs) are synthesized using electrospinning technology followed by a graphitization process in a chemical vapor deposition furnace. Distinctly, even with a small amount of Pt, the Pt-Cu/CNFs-1:2 catalyst possesses outstanding hydrogen evolution reaction (HER) activity, including small overpotential, long-term stability, and a high exchange current density as well as large double layer capacitance (C_(dl)). The excellent HER performance of the Pt-Cu/CNFs-1:2 catalyst is attributed to the synergistic interaction between Pt and Cu, the uniform distribution of the alloy NPs and the use of CNFs with 3D architectures. This development may provide a simple, efficient, and green synthesis method to design bi- or multimetal alloys for use as the cathode electrocatalysts for the HER or other electrocatalytic devices.
机译:使用静电纺丝技术合成分散的PT-Cu合金纳米颗粒(NPS),其直径仅在碳纳米纤维(CNFS中)合成,然后在化学气相沉积炉中进行石墨化方法。 明显,即使具有少量Pt,Pt-Cu / CNFS-1:2催化剂也具有出色的氢气进化反应(她的)活性,包括小的过电位,长期稳定性,以及高交换电流密度以及大 双层电容(C_(DL))。 PT-Cu / CNFS-1:2催化剂的优异性能归因于Pt和Cu之间的协同相互作用,合金NPS的均匀分布和使用CNF与3D架构的使用。 该开发可以提供简单,有效和绿色的合成方法,以设计用于其或其他电催化器件的阴极电催化剂的二型或多型合金。

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