Mechanism of a New Type of Solvent-Assisted Solid-to-Solid Polymorphic Transition Causing Preferential Enrichment: Prominent Influence of C(sp2)H···O Interaction on the Control of a Crystal Structure
Тип публикации: Journal Article
Дата публикации: 2003-10-22
SCImago Q2
WOS Q1
БС1
SJR: 0.62
CiteScore: 5.5
Impact factor: 3.6
ISSN: 15287483, 15287505
General Chemistry
Condensed Matter Physics
General Materials Science
Краткое описание
A new mode of the solvent-assisted solid-to-solid transformation of the first-formed and least stable γ-polymorphic form into the most stable e-polymorphic one occurring during crystallization from the supersaturated EtOH solution of (±)-[2-[4-(3-ethoxy-2-hydroxypropoxy)phenylcarbamoyl]ethyl]trimethylammonium benzenesulfonate [(±)-2], which shows an unusual enantiomeric resolution phenomenon called Preferential Enrichment, has been revealed. The crystal structure of the new e-form, which was obtained as the monophasic powder sample by exhaustive polymorphic transitions via three other metastable polymorphic forms in contact with the solvent, has been solved from the powder X-ray diffraction data by the direct-space approach employing the Monte Carlo method with the subsequent Rietveld refinement. By comparison of the crystal structure of the least stable γ-form with that of the most stable e-one, the mechanism of this polymorphic transition has been interpreted in terms of a new type of rearrangement of w...
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Fujimoto D. et al. Mechanism of a New Type of Solvent-Assisted Solid-to-Solid Polymorphic Transition Causing Preferential Enrichment: Prominent Influence of C(sp2)H···O Interaction on the Control of a Crystal Structure // Crystal Growth and Design. 2003. Vol. 3. No. 6. pp. 973-979.
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Fujimoto D., Tamura R., Lepp Z., Takahashi H., USHIO T. Mechanism of a New Type of Solvent-Assisted Solid-to-Solid Polymorphic Transition Causing Preferential Enrichment: Prominent Influence of C(sp2)H···O Interaction on the Control of a Crystal Structure // Crystal Growth and Design. 2003. Vol. 3. No. 6. pp. 973-979.
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TY - JOUR
DO - 10.1021/cg034162t
UR - https://doi.org/10.1021/cg034162t
TI - Mechanism of a New Type of Solvent-Assisted Solid-to-Solid Polymorphic Transition Causing Preferential Enrichment: Prominent Influence of C(sp2)H···O Interaction on the Control of a Crystal Structure
T2 - Crystal Growth and Design
AU - Fujimoto, Daisuke
AU - Tamura, Rui
AU - Lepp, Zsolt
AU - Takahashi, Hiroki
AU - USHIO, Takanori
PY - 2003
DA - 2003/10/22
PB - American Chemical Society (ACS)
SP - 973-979
IS - 6
VL - 3
SN - 1528-7483
SN - 1528-7505
ER -
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@article{2003_Fujimoto,
author = {Daisuke Fujimoto and Rui Tamura and Zsolt Lepp and Hiroki Takahashi and Takanori USHIO},
title = {Mechanism of a New Type of Solvent-Assisted Solid-to-Solid Polymorphic Transition Causing Preferential Enrichment: Prominent Influence of C(sp2)H···O Interaction on the Control of a Crystal Structure},
journal = {Crystal Growth and Design},
year = {2003},
volume = {3},
publisher = {American Chemical Society (ACS)},
month = {oct},
url = {https://doi.org/10.1021/cg034162t},
number = {6},
pages = {973--979},
doi = {10.1021/cg034162t}
}
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Fujimoto, Daisuke, et al. “Mechanism of a New Type of Solvent-Assisted Solid-to-Solid Polymorphic Transition Causing Preferential Enrichment: Prominent Influence of C(sp2)H···O Interaction on the Control of a Crystal Structure.” Crystal Growth and Design, vol. 3, no. 6, Oct. 2003, pp. 973-979. https://doi.org/10.1021/cg034162t.
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