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Surface Induced Phenytoin Polymorph. 2. Structure Validation by Comparing Experimental and Density Functional Theory Raman Spectra.


ABSTRACT: A method for structure solution in thin films that combines grazing incidence X-ray diffraction data analysis and crystal structure prediction was presented in a recent work (Braun et al. Cryst. Growth Des.2019, DOI: 10.1021/acs.cgd.9b00857). Applied to phenytoin form II, which is only detected in films, the approach gave a very reasonable, but not fully confirmed, candidate structure with Z = 4 and Z' = 2. In the present work, we demonstrate how, by calculating and measuring the crystal Raman spectrum in the low wavenumber energy region with the aim of validating the candidate structure, this can be further refined. In fact, we find it to correspond to a saddle point of the energy landscape of the system, from which a minimum of lower symmetry may be reached. With the new structure, with Z = 4 and Z' = 2, we finally obtain an excellent agreement between experimental and calculated Raman spectra.

SUBMITTER: Giunchi A 

PROVIDER: S-EPMC8016182 | biostudies-literature | 2019 Nov

REPOSITORIES: biostudies-literature

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Surface Induced Phenytoin Polymorph. 2. Structure Validation by Comparing Experimental and Density Functional Theory Raman Spectra.

Giunchi Andrea A   Rivalta Arianna A   Bedoya-Martínez Natalia N   Schrode Benedikt B   Braun Doris E DE   Werzer Oliver O   Venuti Elisabetta E   Della Valle Raffaele Guido RG  

Crystal growth & design 20190918 11


A method for structure solution in thin films that combines grazing incidence X-ray diffraction data analysis and crystal structure prediction was presented in a recent work (Braun et al. Cryst. Growth Des.2019, DOI: 10.1021/acs.cgd.9b00857). Applied to phenytoin form II, which is only detected in films, the approach gave a very reasonable, but not fully confirmed, candidate structure with <i>Z</i> = 4 and <i>Z</i>' = 2. In the present work, we demonstrate how, by calculating and measuring the c  ...[more]

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