We report the first use of high-energy monochromatic in situ X-ray powder diffraction to gain unprecedented insights into the chemical processes occurring during high temperature, lab-scale metal oxide syntheses. During the flux synthesis of the n = 4 Aurivillius phase, Bi5Ti3Fe0.5Cr0.5O15 at 950 °C in molten Na2SO4 we observe the progression of numerous metastable phases. Using sequential multiphase Rietveld refinement of the time-dependent in situ XRD data, we are able to obtain mechanistic understanding of this reaction under a range of conditions
Synchrotron radiation XRPD is a powerful tool for the in situ investigation of phase transformation ...
Inorganic materials formation is the result of a complicated interplay between thermodynamics and ki...
The study of the chemical processes that occur during the synthesis of inorganic solids has attracte...
We report the first use of high-energy monochromatic in situ X-ray powder diffraction to gain unprec...
The use of in situ X-ray diffraction (XRD) to investigate reactions involving crystalline materials ...
In the synthesis of inorganic materials, reactions often yield non-equilibrium kinetic byproducts in...
APPLICATION OF RIETVELD ANALYSIS TO THE MULTIPHASE CRYSTAL STRUCTURE Bi1/2K1/2TiO3 USING MOLTEN SALT...
Bi4Ti3O12 was synthesized by the molten salt method using single salt NaCl with calcination time var...
The biferroic Aurivillius-phase Bi5Ti3FeO 15 was obtained by molten salt synthesis (MSS) using an eq...
Understanding the driving forces controlling crystallization is essential for the efficient synthesi...
© 2012 Dr. Mark James StylesTo date, the development of new materials for industrial molten salt ele...
We present new time-resolved powder diffraction data measured in situ during the hydrothermal crysta...
Understanding the driving forces controlling crystallisation has important consequences ranging ...
Large scale synthesis of metal–organic frameworks (MOFs) is of high interest, due to their potential...
This paper reports the results of time-resolved synchrotron powder diffraction experiments where jar...
Synchrotron radiation XRPD is a powerful tool for the in situ investigation of phase transformation ...
Inorganic materials formation is the result of a complicated interplay between thermodynamics and ki...
The study of the chemical processes that occur during the synthesis of inorganic solids has attracte...
We report the first use of high-energy monochromatic in situ X-ray powder diffraction to gain unprec...
The use of in situ X-ray diffraction (XRD) to investigate reactions involving crystalline materials ...
In the synthesis of inorganic materials, reactions often yield non-equilibrium kinetic byproducts in...
APPLICATION OF RIETVELD ANALYSIS TO THE MULTIPHASE CRYSTAL STRUCTURE Bi1/2K1/2TiO3 USING MOLTEN SALT...
Bi4Ti3O12 was synthesized by the molten salt method using single salt NaCl with calcination time var...
The biferroic Aurivillius-phase Bi5Ti3FeO 15 was obtained by molten salt synthesis (MSS) using an eq...
Understanding the driving forces controlling crystallization is essential for the efficient synthesi...
© 2012 Dr. Mark James StylesTo date, the development of new materials for industrial molten salt ele...
We present new time-resolved powder diffraction data measured in situ during the hydrothermal crysta...
Understanding the driving forces controlling crystallisation has important consequences ranging ...
Large scale synthesis of metal–organic frameworks (MOFs) is of high interest, due to their potential...
This paper reports the results of time-resolved synchrotron powder diffraction experiments where jar...
Synchrotron radiation XRPD is a powerful tool for the in situ investigation of phase transformation ...
Inorganic materials formation is the result of a complicated interplay between thermodynamics and ki...
The study of the chemical processes that occur during the synthesis of inorganic solids has attracte...