...
首页> 外文期刊>Materials today >Facet-controlled Pt–Ir nanocrystals with substantially enhanced activity and durability towards oxygen reduction
【24h】

Facet-controlled Pt–Ir nanocrystals with substantially enhanced activity and durability towards oxygen reduction

机译:方面控制的PT-IR纳米晶体,具有基本上增强的活性和耐氧耐耐氧性

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Nanocrystals made of Pt–Ir alloys are fascinating catalysts towards the oxygen reduction reaction (ORR), but the lack of control over their surface atomic structures hinders further optimization of their catalytic performance. Here we report, for the first time, a class of highly active and durable ORR catalysts based on [email protected]–Ir nanocrystals with well-controlled facets. With an average of 1.6 atomic layers of a Pt4Ir alloy on the surface, the nanocrystals can be made in cubic, octahedral, and icosahedral shapes to present Pt–Ir {1?0?0}, {1?1?1}, and {1?1?1} plus twin boundaries, respectively. The [email protected]–Ir nanocrystals exhibit not only facet-dependent catalytic properties but also substantially enhanced ORR activity and durability relative to a commercial Pt/C and their [email protected] counterparts. Among them, the [email protected]–Ir icosahedra deliver the best performance, with a mass activity of 1.88 A·mg?1Pt at 0.9?V, which is almost 15 times that of the commercial Pt/C. Our density functional theory (DFT) calculations attribute the high activity of the [email protected]–Ir nanocrystals, and the facet dependence of these activities, to easier protonation of O* and OH* under relevant OH* coverages, relative to the corresponding energetics on clean [email protected] surfaces. The DFT calculations also indicate that incorporating Ir atoms into the Pt lattice destabilizes OH–OH interactions on the surface, thereby raising the oxidation potential of Pt and greatly improving the catalytic durability.
机译:由PT-IR合金制成的纳米晶体是令氧气还原反应(ORR)的催化剂,但在其表面原子结构上缺乏控制阻碍了其催化性能的进一步优化。在这里,我们首次报告一类高活性和耐用的ORR催化剂,基于具有良好控制的刻面的[电子邮件保护] -Ir纳米晶体。在表面上平均1.6个原子层的PT4IR合金,纳米晶体可以用立方,八面体和icosaheDral形状制成,以提出pt-Ir {1?0≤0},{1?1?1}和{1?1?1}分别加上双界。 [电子邮件保护] -Ir纳米晶体不仅表现出围类依赖性催化性能,而且还具有相对于商业PT / C及其[电子邮件保护]对应的基本上增强的ORR活性和耐久性。其中,[电子邮件受保护] -ir Icosahedra提供最佳性能,质量活动为1.88A·mg?1pt为0.9?v,这几乎是商业Pt / c的15倍。我们的密度函数理论(DFT)计算属性[电子邮件受保护] - 纳米晶体的高活动,以及这些活动的刻面依赖,以更容易在相关的oh *覆盖范围内更轻松地质子化,相对于相应的能量学在清洁[电子邮件保护]表面。 DFT计算还表明,将IR原子掺入Pt晶格中的破坏稳定在表面上的OH-OH相互作用,从而提高PT的氧化电位并大大提高催化耐久性。

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