...
首页> 外文期刊>ACS applied materials & interfaces >Ambient Synthesis of High-Quality Ruthenium Nanowires and the Morphology-Dependent Electrocatalytic Performance of Platinum-Decorated Ruthenium Nanowires and Nanoparticles in the Methanol Oxidation Reaction
【24h】

Ambient Synthesis of High-Quality Ruthenium Nanowires and the Morphology-Dependent Electrocatalytic Performance of Platinum-Decorated Ruthenium Nanowires and Nanoparticles in the Methanol Oxidation Reaction

机译:高质量钌纳米线的环境合成以及铂修饰的钌纳米线和纳米粒子在甲醇氧化反应中的形态学依赖性电催化性能

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

We report for the first time (a) the synthesis of elemental ruthenium nanowires (Ru NWs), (b) a method for modifying their surfaces with platinum (Pt), and (c) the morphology-dependent methanol oxidation reaction (MOR) performance of high-quality Pt-modified Ru NW electrocatalysts. The synthesis of our elemental Ru NWs has been accomplished utilizing a template-based method under ambient conditions. As-prepared Ru NWs are crystalline and elementally pure, maintain electrochemical properties analogous to elemental Ru, and can be generated with average diameters ranging from 44 to 280 nm. We rationally examine the morphology-dependent performance of the Ru NWs by comparison with commercial Ru nanoparticle (NP)/carbon (C) systems after decorating the surfaces of these structures with Pt. We have demonstrated that the deposition of Pt onto the Ru NWs (Pt~Ru NWs) results in a unique hierarchical structure, wherein the deposited Pt exists as discrete clusters on the surface. By contrast, we find that the Pt-decorated commercial Ru NP/C (Pt~Ru NP/C) results in the formation of an alloy-type NP. The Pt~Ru NPs (0.61 A/mg of Pt) possess nearly 2-fold higher Pt mass activity than analogous Pt~Ru NW electrocatalysts (0.36 A/mg of Pt). On the basis of a long-term durability test, it is apparent that both catalysts undergo significant declines in performance, potentially resulting from aggregation and ripening in the case of Pt~Ru NP/C and the effects of catalyst poisoning in the Pt~Ru NWs. At the conclusion of the test, both catalysts maintain comparable performance, despite a slightly enhanced performance in Pt~Ru NP/C. In addition, the measured mass-normalized MOR activity of the Pt~Ru NWs (0.36 A/mg of Pt) was significantly enhanced as compared with supported elemental Pt (Pt NP/C, 0.09 A/mg of Pt) and alloy-type PtRu (PtRu NP/C, 0.24 A/mg of Pt) NPs, both serving as commercial standards.
机译:我们首次报告(a)钌元素纳米线(Ru NWs)的合成,(b)用铂(Pt)修饰其表面的方法,以及(c)形态依赖的甲醇氧化反应(MOR)性能高质量的Pt改性Ru NW电催化剂。我们的基本Ru NW的合成是在环境条件下使用基于模板的方法完成的。制备的Ru NW是晶体且元素纯,保持类似于元素Ru的电化学性质,并且可以以44至280 nm的平均直径生成。我们用Pt装饰这些结构的表面后,通过与商业Ru纳米颗粒(NP)/碳(C)系统进行比较,合理地检查了Ru NWs的形态依赖性能。我们已经证明,Pt在Ru NWs(Pt〜Ru NWs)上的沉积导致独特的分层结构,其中沉积的Pt在表面上以离散簇的形式存在。相比之下,我们发现装饰有Pt的商业化Ru NP / C(Pt〜Ru NP / C)导致了合金型NP的形成。 Pt〜Ru NPs(0.61 A / mg Pt)的Pt活性比类似的Pt〜Ru NW电催化剂(0.36 A / mg Pt)高近2倍。根据长期的耐久性试验,很明显两种催化剂的性能都会显着下降,这可能是由于Pt〜Ru NP / C的聚集和成熟以及Pt〜Ru中催化剂中毒的影响所致。西北。试验结束时,尽管在Pt〜Ru NP / C中性能略有提高,但两种催化剂均保持了相当的性能。此外,与支持元素Pt(Pt NP / C,0.09 A / mg Pt)和合金类型相比,Pt〜Ru NWs的质量归一化MOR活性(0.36 A / mg Pt)显着提高。 PtRu(PtRu NP / C,0.24 A / mg Pt)NPs均用作商业标准品。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号