Thermogravimetry–FTIR study of the surface formate decomposition on Cu, CuCl, Cu2O and CuO. Correlations between reaction selectivity and structural properties
- 1 January 1994
- journal article
- research article
- Published by Royal Society of Chemistry (RSC) in Journal of the Chemical Society, Faraday Transactions
- Vol. 90 (2) , 355-362
- https://doi.org/10.1039/ft9949000355
Abstract
In this work three types of the surface formate, ionic, monodentate and bidentate species, are identified to be the main products of formic acid adsorption on Cu, CuCl, Cu2O and CuO at room temperature. Combined thermal analysis [differential thermal analysis (DTA), thermogravimetry (TG) and evolved gas analysis (EGA)] and FTIR studies have shown that the decomposition selectivity and activity are highly dependent on the electronic and structural properties of the surface formate. The ionic formate which gives the characteristic infrared bands at 1600 and 1320 cm–1 is found to exist on all the surfaces studied in the lower temperature range (–1) decomposed at elevated temperatures, forming water as the main product. Bidentate formate with infrared bands at 1630 and 1350 cm–1 is observed on the Cu, Cu2O and CuO surfaces and is decomposed at high temperatures (around 500K) with an activation energy of 15–39 kcal mol–1, producing mainly carbon dioxide. The adsorbed formate on CuCl at high temperatures demonstrates only an asymmetric OCO band at 1610 cm–1 and is considered to be the monodentate formate, whose pyrolysis favours the production of water, with an observed activation energy of 19 kcal mol–1. The reaction scheme and the origin of the structural dependence of the surface formate decomposition are discussed.Keywords
This publication has 53 references indexed in Scilit:
- Infrared study of the adsorption of formic acid on silica-supported copper and oxidised copper catalystsJournal of the Chemical Society, Faraday Transactions, 1991
- Adsorption and decomposition of formic acid on potassium-promoted rhodium(111) surfacesThe Journal of Physical Chemistry, 1988
- Active oxygen on Group VIII metals: activation of formic acid and formaldehyde on Pd(100)Journal of the American Chemical Society, 1988
- On the role of formate species in the reactions of carbon oxides (CO−CO2) with hydrogen or waterReviews of Chemical Intermediates, 1985
- The behavior of surface formate ions as reaction intermediates in the decomposition of methanol over Cr2O3Journal of Catalysis, 1985
- Reaction of HCOOH with a Pt(111)-O surface; identification of adsorbed monodentate formateApplications of Surface Science, 1983
- Photoelectron spectroscopic investigation of the adsorption and catalytic decomposition of formic acid by copper, nickel and goldProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1976
- Molecular orientation of chemisorbed formates and nitric monoxides on evaporated metal surfaces by infrared reflectance spectroscopyThe Journal of Physical Chemistry, 1975
- Dynamic technique to elucidate the reaction intermediate in surface catalysis. Water-gas shift reactionTransactions of the Faraday Society, 1970
- The crystal structure of trispyridinecupriacetateRecueil des Travaux Chimiques des Pays-Bas, 1967