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QUALX2.0: a qualitative phase analysis software using the freely available database POW_COD

Academic Article
Publication Date:
2015
abstract:
QUALX2.0 is the new version of QUALX, a computer program for qualitative phase analysis by powder diffraction data. The previous version of QUALX was able to carry out phase identification by querying the PDF-2 commercial database. The main novelty of QUALX2.0 is the possibility of querying also a freely available database, POW_COD. POW_COD has been built up by starting from the structure information contained in the Crystallography Open Database (COD). The latter is a growing collection of diffraction data, freely downloadable from the web, corresponding to inorganic, metal-organic, organic and mineral structures. QUALX2.0 retains the main capabilities of the previous version: (a) automatically estimating and subtracting the background; (b) locating the experimental diffraction peaks; (c) searching the database for single-phase pattern(s) best matching to the experimental powder diffraction data; (d) taking into account suitable restraints in the search; (e) performing a semi-quantitative analysis; (f) enabling the change of default choices and strategies via a user-friendly graphic interface. The advances of QUALX2.0 with respect to QUALX include (i) a wider variety of types of importable ASCII file containing the experimental diffraction pattern and (ii) new search-match options. The program, written in Fortran and C++, runs on PCs under the Windows operating system. The POW_COD database is exported in SQLite3 format.
Iris type:
01.01 Articolo in rivista
Keywords:
qualitative phase analysis; powder diffraction; POW_COD database; computer program
List of contributors:
Falcicchio, Aurelia; Corriero, Nicola; Altomare, Angela; Moliterni, Anna; Rizzi, Rosanna; Cuocci, Corrado
Authors of the University:
ALTOMARE ANGELA
CORRIERO NICOLA
CUOCCI CORRADO
FALCICCHIO AURELIA
MOLITERNI ANNA
RIZZI ROSANNA
Handle:
https://iris.cnr.it/handle/20.500.14243/300071
Published in:
JOURNAL OF APPLIED CRYSTALLOGRAPHY
Journal
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