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E. Sarah Cowell
E. Sarah Cowell
Reed College
X-ray crystallography
Inorganic chemistry
Molten salt
Powder diffraction
Perovskite
5
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86
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Probing Molten Salt Flux Reactions Using Time-Resolved in Situ High-Temperature Powder X-ray Diffraction: A New Synthesis Route to the Mixed-Valence NaTi2O4
2004
Chemistry of Materials
Margret J. Geselbracht
Liam D. Noailles
and Lien T. Ngo
Jessica H. Pikul
Richard I. Walton
E. Sarah Cowell
and Franck Millange
Dermot OHare
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Citations (45)
Probing Molten Salt Flux Reactions Using Time-Resolved in situ High-Temperature Powder X-Ray Diffraction: A New Synthesis Route to the Mixed-Valence NaTi2O4.
2004
ChemInform
Margret J. Geselbracht
Liam D. Noailles
Lien T. Ngo
Jessica H. Pikul
Richard I. Walton
E. Sarah Cowell
Franck Millange
Dermot O'Hare
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An Investigation of the Synthesis of the Layered Perovskite RbCa2Nb3O10 Using Time-Resolved in Situ High-Temperature Powder X-ray Diffraction
2002
Chemistry of Materials
Margret J. Geselbracht
Richard I. Walton
E. Sarah Cowell
Franck Millange
Dermot O'Hare
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Citations (17)
An Investigation of the Synthesis of the Layered Perovskite RbCa2Nb3O10 Using Time-Resolved in Situ High-Temperature Powder X-ray Diffraction
2002
Chemistry of Materials
Margret J. Geselbracht
Richard I. Walton
E. Sarah Cowell
Franck Millange
Dermot OHare
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Citations (12)
A furnace for the in situ study of the formation of inorganic solids at high temperature using time-resolved energy-dispersive x-ray diffraction
2000
Review of Scientific Instruments
Margret J. Geselbracht
Richard I. Walton
E. Sarah Cowell
Franck Millange
Dermot OHare
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Citations (12)
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