通过动态核极化增强双共振NMR光谱对支持金属催化剂的基板-表面相互作用进行表征
Frédéric A Perras1, J Daniel Padmos2, Robert L Johnson3
1Ames Laboratory, U.S. Department of Energy , Ames, Iowa 50011, United States.
Journal of the American Chemical Society
|January 24, 2017
概括
动态核极化表面增强NMR光谱 (DNP SENS) 显示了类催化剂上的基质协调. 这种先进的技术揭示了-界面上的美因的双模协调.
科学领域:
- 表面科学和催化
- 材料化学
- 光谱学
背景情况:
- 碳基板与之间的纳米级相互作用对于催化非常重要,但在技术上很困难.
- 了解表面协调是设计高效异质催化剂的关键.
研究的目的:
- 展示动态核极化表面增强NMR光谱 (DNP SENS) 用于详细的表面表征.
- 为了阐明在支持的催化剂上吸附的分子的分子层面几何.
主要方法:
- 使用动态核极化表面增强NMR光谱 (DNP SENS) 进行高分辨率的13C-27Al距离测量.
- 将DNP SENS应用于玛-Al2O3支持的Pd上吸附的13C丰富的甲和聚乙烯醇.
- 通过元素特异性X射线吸收近边结构 (XANES) 测量得到了支持.
主要成果:
- 通过DNP SENS,可以明确地确定表面的基板协调几何形状和形状.
- 在-Al2O3界面发现了一种令人惊的双模协调.
- 提供了对异质催化剂上吸附物种分子结构的详细见解.
结论:
- DNP SENS是一种高分辨率的催化材料表面表征技术.
- 这项研究揭示了氨酸的新协调行为,影响了催化剂的设计和理解.
- 这项工作提升了在催化中探测界面现象的能力.
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