Thermal decomposition of trimethyl- and thiethyl-arsines in the gas phase
Journal Article
·
· J. Gen. Chem. USSR (Engl. Transl.); (United States)
OSTI ID:5286400
The gas-phase pyrolysis reactions of trimethyl- and triethyl-arsines are described by a first-order equation up to conversions of 80-90% and are accompanied by the formation of a metallic film on the walls of the reactor and the liberation of gaseous products.
- Research Organization:
- V. P. Chkalov Gor'kii Institute of Civil Engineering (USSR)
- OSTI ID:
- 5286400
- Journal Information:
- J. Gen. Chem. USSR (Engl. Transl.); (United States), Journal Name: J. Gen. Chem. USSR (Engl. Transl.); (United States) Vol. 56:2; ISSN JGCHA
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
36 MATERIALS SCIENCE
360601 -- Other Materials-- Preparation & Manufacture
37 INORGANIC, ORGANIC, PHYSICAL, AND ANALYTICAL CHEMISTRY
400201* -- Chemical & Physicochemical Properties
ACTIVATION ENERGY
ARSENIC
ARSENIC COMPLEXES
CHEMICAL COATING
CHEMICAL REACTION KINETICS
CHEMICAL REACTIONS
CHEMICAL VAPOR DEPOSITION
COMPLEXES
DECOMPOSITION
DEPOSITION
DISSOCIATION ENERGY
ELEMENTS
ENERGY
EQUATIONS
KINETIC EQUATIONS
KINETICS
MATERIALS
ORGANIC COMPOUNDS
ORGANOMETALLIC COMPOUNDS
PHYSICAL PROPERTIES
PRESSURE DEPENDENCE
PYROLYSIS
PYROLYSIS PRODUCTS
REACTION KINETICS
SEMICONDUCTOR MATERIALS
SEMIMETALS
SURFACE COATING
TEMPERATURE DEPENDENCE
THERMOCHEMICAL PROCESSES
THERMODYNAMIC PROPERTIES
VAPOR PRESSURE
360601 -- Other Materials-- Preparation & Manufacture
37 INORGANIC, ORGANIC, PHYSICAL, AND ANALYTICAL CHEMISTRY
400201* -- Chemical & Physicochemical Properties
ACTIVATION ENERGY
ARSENIC
ARSENIC COMPLEXES
CHEMICAL COATING
CHEMICAL REACTION KINETICS
CHEMICAL REACTIONS
CHEMICAL VAPOR DEPOSITION
COMPLEXES
DECOMPOSITION
DEPOSITION
DISSOCIATION ENERGY
ELEMENTS
ENERGY
EQUATIONS
KINETIC EQUATIONS
KINETICS
MATERIALS
ORGANIC COMPOUNDS
ORGANOMETALLIC COMPOUNDS
PHYSICAL PROPERTIES
PRESSURE DEPENDENCE
PYROLYSIS
PYROLYSIS PRODUCTS
REACTION KINETICS
SEMICONDUCTOR MATERIALS
SEMIMETALS
SURFACE COATING
TEMPERATURE DEPENDENCE
THERMOCHEMICAL PROCESSES
THERMODYNAMIC PROPERTIES
VAPOR PRESSURE