Title of article
Model studies on heterogeneous catalysts at the atomic scale: From supported metal particles to two-dimensional zeolites
Author/Authors
Hans-Joachim Freund، نويسنده , , Markus Heyde، نويسنده , , Niklas Nilius، نويسنده , , Swetlana Schauermann، نويسنده , , Shamil Shaikhutdinov، نويسنده , , Martin Sterrer، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
14
From page
154
To page
167
Abstract
After a general introduction to model studies in catalysis, results from different research areas are presented: (a) adsorption and reaction on nanoparticles supported on thin oxide films. It is shown that carbonaceous deposits on specific nanoparticle sites influence hydrogenation reactions through control of hydrogen surface–subsurface diffusion. (b) 2D-3D-morphology, geometric, and electronic structure of supported metal nanoparticles partially in relation to doping of the support. We learn how dopants, as electron sources, even if they are well beneath the active surface influence nanoparticle morphology on surfaces. (c) Strong metal–support interaction (SMSI). Ultrathin oxide films are proven to become chemically active in CO oxidation as they form on deposited nanoparticles dependent on the oxygen chemical potential in the gas phase. (d) Adsorption and reaction on two-dimensional silicates and alumino silicates in ordered and vitreous phases. Bilayer silica films on Ru(0 0 0 1) are transformed by Al doping into 2D-aluminosilicates and shown to exhibit binding hydroxyl with an acidity close to 3D-zeolites, such as chabazite.
Keywords
Charge Density Mismatch (CDM) , UFI , mordenite , UZM-14 , Zeolite , NANO , Crystal morphology , Aromatics transalkylation , Aromatics alkylation , UZM-5
Journal title
Journal of Catalysis
Serial Year
2013
Journal title
Journal of Catalysis
Record number
1224533
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