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高度活性的铂纳米颗粒负载在石墨烯纳米片上,稳定性和 CO 耐受性得到显著提高。

Highly active platinum nanoparticles on graphene nanosheets with a significant improvement in stability and CO tolerance.

机构信息

State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan 430070, PR China.

出版信息

Langmuir. 2012 Feb 28;28(8):3979-86. doi: 10.1021/la2045493. Epub 2012 Feb 9.

Abstract

Graphene nanosheets (GNS) supporting Pt nanoparticles (PNs) are prepared using perfluorosulfonic acid (PFSA) as a functionalization and anchoring agent. Transmission electron microscope (TEM) results indicate that the prepared Pt NPs are uniformly deposited on GNS with a narrow particle size ranging from 1 to 4 nm in diameter. A high catalytic activity of this novel catalyst is observed by both cyclic voltammetry and oxygen reduction reaction (ORR) measurements due to the increasing of proton (H(+)) transmission channels. Significantly, this novel PFSA-functionalized Pt/GNS (PFSA-Pt/GNS) catalyst reveals a better CO oxidation and lower loss rate of electrochemical active area in comparison with that of the plain Pt/GNS and conventional Pt/C catalysts, indicating our PFSA-Pt/GNS catalysts hold much higher stability and CO tolerance by virtue of introduction of PFSA.

摘要

采用全氟磺酸(PFSA)作为功能化和锚定试剂制备了负载 Pt 纳米颗粒(PNs)的石墨烯纳米片(GNS)。透射电子显微镜(TEM)结果表明,所制备的 Pt NPs 均匀地沉积在 GNS 上,粒径从 1nm 到 4nm 不等,分布较窄。由于质子(H(+))传输通道的增加,通过循环伏安法和氧还原反应(ORR)测量均观察到这种新型催化剂具有高的催化活性。值得注意的是,与普通的 Pt/GNS 和传统的 Pt/C 催化剂相比,新型 PFSA 功能化 Pt/GNS(PFSA-Pt/GNS)催化剂在 CO 氧化和电化学活性面积损失率方面表现出更好的性能,这表明我们的 PFSA-Pt/GNS 催化剂由于引入了 PFSA,具有更高的稳定性和 CO 耐受性。

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