首页> 外文会议>Symposium on Combinatorial and Artificial Intelligence Methods in Materials Science >Analytical TEM Observations of Combinatorial Catalyst Libraries for Hydrogen Production - As a Part of 'MATERIOMICS'-
【24h】

Analytical TEM Observations of Combinatorial Catalyst Libraries for Hydrogen Production - As a Part of 'MATERIOMICS'-

机译:用于氢生产组合催化剂文库的分析视线观察 - 作为“产物”的一部分 -

获取原文

摘要

Materiomics is a new approach combining combinatorial surveys and precise structure analyses in order to develop new functional materials efficiently. In this paper, we show the first stage of materiomics applied to metal/metal oxide catalysts. The catalytic activities of various metal/metal oxide catalysts for hydrogen production have been examined by a combinatorial method, and TEM observations have been performed for the selected catalysts from the libraries in order to estimate the structures in the combinatorial surveys. A Pd/MnO_2 catalyst shows the high activity for the water gas shift reaction, where thin Pd oxide layers about l-2nm thickness are formed on the flat M11O2 surface. However, Pd oxide layers are reduced and metallic Pd particles 2-3nm in diameter with narrow size distribution are formed after hydrogen reduction. The structure of manganese oxide support also changes after hydrogen reduction. On the other hand, both Pd particles with diameters of 2-3nm and 10~20nm on SiO_2 show low activity for the water gas shift reaction, Thus, it is concluded that the catalytic activity does not simply depend on the particle size of metals, but that the interaction between metals and metal oxide supports is also important for the catalytic performance.
机译:Materiomics是一种新的方法,以便有效地开发新的功能材料相结合的组合调查和精确结构分析。在本文中,我们示出应用于金属/金属氧化物催化剂materiomics的第一阶段。用于氢气生产各种金属/金属氧化物催化剂的催化活性已通过组合方法检测,和TEM观察已经为了估计在所述组合调查的结构,用于将来自文库的选择的催化剂进行的。钯/二氧化锰催化剂示出了用于水煤气变换反应,其中,所述平坦的MnO 2表面上形成约1- 2nm的厚度薄的Pd氧化物层的高活性。然而,钯氧化物层与氢还原之后,形成粒径分布窄,直径减小和金属Pd粒子为2-3nm。的锰氧化物载体上的结构氢气还原后也改变。在另一方面,直径为2-3nm和10两者Pd粒子〜上SiO_2 20nm的示出了用于水煤气变换反应活性低,因此,可以得出的结论是催化活性并不仅仅依赖于金属的粒径,但金属和金属氧化物载体之间的相互作用也对催化性能是重要的。

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