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Featured researches published by Fabrice Morelle.


CrystEngComm | 2018

Exploring Polymorphism and Stoichiometric Diversity in Naproxen/Proline Cocrystals

Natalia Tumanova; Nikolay Tumanov; Franziska Fischer; Fabrice Morelle; Voraksmy Ban; Koen Robeyns; Yaroslav Filinchuk; Johan Wouters; Franziska Emmerling; Tom Leyssens

We present naproxen/proline cocrystals discovered when combining enantiopure and racemic naproxen and proline. Using liquid-assisted grinding as the main method to explore the variety of crystal forms in this system, we found 17 cocrystals, of which the structures of only four of them were previously known. The naproxen/proline system exhibited multiple polymorphs of 1 : 1 stoichiometry as well as more rare cocrystals with 1 : 2 and 2 : 3 stoichiometries, two cocrystal hydrates and one cocrystal solvate. In situ ball-milling, used to monitor liquid-assisted grinding reactions, revealed that the solvent dictates the reaction intermediates even if the final reaction product stays the same. Synchrotron X-ray diffraction data collected in situ upon heating allowed us to monitor directly the phase changes upon heating and gave access to pure diffraction patterns of several cocrystals, thus enabling their structure determination from powder X-ray diffraction data; this method also confirmed the formation of a conglomerate in the RS-naproxen/DL-proline system. Proline in cocrystals kept its ability to form charge-assisted head-to-tail N–H⋯O hydrogen bonds, typical of pure crystalline amino acids, thus increasing the percentage of strong charge-assisted interactions in the structure and consequently providing some of the cocrystals with higher melting points as compared to pure naproxen. The majority of drugs are chiral, and hence, these data are of importance to the pharmaceutical industry as they provide insight into the challenges of chiral cocrystallization.


Journal of Physical Chemistry C | 2016

Reaction Pathways in Ca(BH4)2–NaNH2 and Mg(BH4)2–NaNH2 Hydrogen-Rich Systems

Fabrice Morelle; Lars H. Jepsen; Torben R. Jensen; Manish Sharma; Hans-Rudolf Hagemann; Yaroslav Filinchuk


Energies | 2015

Increasing Hydrogen Density with the Cation-Anion Pair BH 4 − -NH 4 + in Perovskite-Type NH 4 Ca(BH 4 ) 3

Pascal Schouwink; Fabrice Morelle; Yolanda Sadikin; Yaroslav Filinchuk; Radovan Černý


Crystal Growth & Design | 2018

Opening Pandora’s Box: Chirality, Polymorphism, and Stoichiometric Diversity in Flurbiprofen/Proline Cocrystals

Natalia Tumanova; Nikolay Tumanov; Koen Robeyns; Franziska Fischer; Luca Fusaro; Fabrice Morelle; Voraksmy Ban; Geoffroy Hautier; Yaroslav Filinchuk; Johan Wouters; Tom Leyssens; Franziska Emmerling


Chemsuschem | 2017

Solid Aluminum Borohydrides for Prospective Hydrogen Storage

Iurii Dovgaliuk; Damir A. Safin; Nikolay Tumanov; Fabrice Morelle; Adel Moulai; Radovan Cerny; Z. Lodziana; Michel Devillers; Yaroslav Filinchuk


Gordon Research Conference (GRC) on Hydrogen-Metal Systems | 2017

Ultrafast H motion in lithium benzoimidozolate-borohydride Li2(bIm)(BH4) (poster)

Alexander V. Skripov; Alexei V. Soloninin; Olga A. Babanova; Roman V. Skoryunov; Fabrice Morelle; Yaroslav Filinchuk; M. Dimitrievska; W. Zhou; T. J. Udovic


Gordon Research Conference (GRC) on Hydrogen-Metal Systems | 2017

Hydrogen dynamics in novel complex hydrides (poster)

Olga A. Babanova; Roman V. Skoryunov; Alexei V. Soloninin; Fabrice Morelle; Alexander V. Skripov; Yaroslav Filinchuk


Gordon Research Conference (GRC) on Hydrogen-Metal Systems | 2017

Hydrogen dynamics in novel complex hydrides

Olga A. Babanova; Roman V. Skoryunov; Alexei V. Soloninin; Fabrice Morelle; Alexander V. Skripov; Yaroslav Filinchuk


Chemsuschem | 2017

Cover Feature: Solid Aluminum Borohydrides for Prospective Hydrogen Storage (ChemSusChem 23/2017)

Iurii Dovgaliuk; Damir A. Safin; Nikolay Tumanov; Fabrice Morelle; Adel Moulai; Radovan Černý; Zbigniew Łodziana; Michel Devillers; Yaroslav Filinchuk


International Symposium on Metal-Hydrogen systems (MH2016) | 2016

Coordination compounds of LiBH4 with bridging nitrogen-based ligands

Fabrice Morelle; Yaroslav Filinchuk

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Yaroslav Filinchuk

Université catholique de Louvain

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Voraksmy Ban

Université catholique de Louvain

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Nikolay Tumanov

Université catholique de Louvain

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Iurii Dovgaliuk

European Synchrotron Radiation Facility

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Roman V. Skoryunov

Russian Academy of Sciences

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Damir A. Safin

Université catholique de Louvain

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Geoffroy Hautier

Université catholique de Louvain

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Koen Robeyns

Université catholique de Louvain

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Damir Safin

University of Wrocław

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