A detailed first-principles investigation of the gas-phase precursor chemistry of titanium tetrachloride (TiCl4) in an O2 environment is used to identify the thermodynamically most stable oxidation products. Candidate species are systematically proposed based on twelve manually defined base moieties in combination with possible functional groups attached to each moiety. The ground state geometry and vibrational frequencies for each candidate species are calculated using density functional theory at the B97-1/6-311+G(d,p) level of theory. A set of 2; 328 unique candidate species are found to be physically reasonable. Their thermochemical data are calculated by applying statistical thermodynamics. Standard enthalpies of formation are estimate...
This work presents the first systematically derived and thermodynamically consistent mechanism to de...
A thermodynamic study of the Ti-O system at 1573 K has been conducted using a combination of thermog...
The structural and electronic properties of silica-supported titanium chloride tetrahydrofuranates s...
A detailed first-principles investigation of the gas-phase precursor chemistry of titanium tetrachlo...
The thermal decomposition of titanium tetraisopropoxide (TTIP) is investigated using quantum chemist...
Titanium dioxide (TiO2) nanoparticles are widely used in contaminant remediation, photocatalysis, an...
In this paper, Titanium tetrachloride (TiCl4) is analyzed/assessed and proposed as a new potential w...
The combustion of TiCl4 to synthesize TiO2 nanoparticles is a multimillion tonne per year industrial...
In process and materials chemistry, computational modelling of complex reactive systems has been a l...
In this work, three different ab initio methods are used to predict bond dissociation enthalpies (BD...
A number of experiments were made to study tire gas phase reactions that precede TiO2 aerosol format...
The reaction of titanium tetrachloride with diethyl ether at various ratios of components and temper...
A thermodynamic study of the Ti-O system at 1573 K has been conducted using a combination of thermog...
A thermodynamic study of the Ti-O system at 1573 K has been conducted using a combination of thermog...
This work presents the first systematically derived and thermodynamically consistent mechanism to de...
A thermodynamic study of the Ti-O system at 1573 K has been conducted using a combination of thermog...
The structural and electronic properties of silica-supported titanium chloride tetrahydrofuranates s...
A detailed first-principles investigation of the gas-phase precursor chemistry of titanium tetrachlo...
The thermal decomposition of titanium tetraisopropoxide (TTIP) is investigated using quantum chemist...
Titanium dioxide (TiO2) nanoparticles are widely used in contaminant remediation, photocatalysis, an...
In this paper, Titanium tetrachloride (TiCl4) is analyzed/assessed and proposed as a new potential w...
The combustion of TiCl4 to synthesize TiO2 nanoparticles is a multimillion tonne per year industrial...
In process and materials chemistry, computational modelling of complex reactive systems has been a l...
In this work, three different ab initio methods are used to predict bond dissociation enthalpies (BD...
A number of experiments were made to study tire gas phase reactions that precede TiO2 aerosol format...
The reaction of titanium tetrachloride with diethyl ether at various ratios of components and temper...
A thermodynamic study of the Ti-O system at 1573 K has been conducted using a combination of thermog...
A thermodynamic study of the Ti-O system at 1573 K has been conducted using a combination of thermog...
This work presents the first systematically derived and thermodynamically consistent mechanism to de...
A thermodynamic study of the Ti-O system at 1573 K has been conducted using a combination of thermog...
The structural and electronic properties of silica-supported titanium chloride tetrahydrofuranates s...