The adsorption and thermal decomposition of formic acid on Si(100) and Si(111) surfaces
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.456981
Reference41 articles.
1. Identification of the intermediates in the dehydration of formic acid on Ni(110) by high resolution electron energy loss vibrational spectroscopy
2. Angular-resolved photoemission of formate and methoxy on Cu(110): Orientation and orbital assignment using dipole selection rules
3. The structure of formate on Cu(100) and Cu(110) surfaces
4. The structure of the formate species on copper surfaces: new photoelectron diffraction results and sexafs data reassessed
5. Observation of formate species on a copper (100) surface by high resolution electron energy loss spectroscopy
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1. Hydrogenation of Formate Species Using Atomic Hydrogen on a Cu(111) Model Catalyst;Journal of the American Chemical Society;2022-06-28
2. Adsorption Structures of Acetic Acid on Ge(100) at High Coverage;The Journal of Physical Chemistry C;2017-08-21
3. Mechanism of Self-catalytic Atomic Layer Deposition of Silicon Dioxide Using 3-Aminopropyl Triethoxysilane, Water, and Ozone;Chemistry of Materials;2011-04-15
4. Adsorption and thermal decomposition of acetic acid on Si(111)7×7 studied by vibrational electron energy loss spectroscopy;The Journal of Chemical Physics;2010-05-07
5. Selective Adsorption and Thermal Evolution of Bifunctional Carboxylic Acids: Competition of O—H Dissociation and Other Reaction Products in Acrylic Acid and Propanoic Acid on Si(100)2×1;The Journal of Physical Chemistry C;2010-01-29
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