State Key Laboratory of Optoelectronic Materials and Technologies, School of Physics and Engineering, Sun Yat-sen University, Guangzhou, 510275, PR China.
Nanoscale. 2011 Dec;3(12):5041-8. doi: 10.1039/c1nr10947b. Epub 2011 Nov 2.
Pt nanowires (PtNWs) have been controllably synthesized on carbon powders by the reduction of H(2)PtCl(6) with HCOOH. By adjusting the pH value of the solution, PtCl(6)(2-) can be controllable reduced into particles or nanowires. The Pt nanowires are single crystals growing along the <111> direction with a diameter of 3 nm and a length of 10 nm. The dispersion of Pt nanowires on the surface of carbon powders can be controlled by changing the loading of Pt. The PtNWs/C is evaluated as the catalyst for methanol oxidation. The PtNWs/C with 20 wt% Pt has a larger electrochemical active surface area and much higher mass activity for methanol oxidation than that of commercial Pt/C catalyst. The PtNWs/C catalyst shows significant improvement in the kinetics for methanol oxidation and mass transfer property due to the single crystal structure of the Pt nanowires. The PtNWs/C catalyst holds promising potential applications in energy converting devices and environmental protection.
Pt 纳米线 (PtNWs) 已通过 HCOOH 将 H(2)PtCl(6) 还原在碳粉上可控合成。通过调整溶液的 pH 值,可以将 PtCl(6)(2-) 可控还原成颗粒或纳米线。Pt 纳米线沿 <111> 方向生长,直径为 3nm,长度为 10nm,是单晶。通过改变 Pt 的负载量,可以控制 Pt 纳米线在碳粉表面的分散性。PtNWs/C 被评估为甲醇氧化的催化剂。负载 20wt%Pt 的 PtNWs/C 具有比商用 Pt/C 催化剂更大的电化学活性表面积和更高的甲醇氧化质量活性。由于 Pt 纳米线的单晶结构,PtNWs/C 催化剂在甲醇氧化动力学和传质性能方面有显著改善。PtNWs/C 催化剂在能源转换装置和环境保护方面具有广阔的应用前景。