The role of solvent hydroxyl functional groups on the interaction energy and growth of form I paracetamol crystal facets

The morphology of a crystal grown in a solvent can change depending on the solvent used during the crystallization process. Modification of the morphology of a crystal can be engineered based on information conferred by the functional groups of the facets of interest and the functional groups of the...

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Main Authors: Shahrir, Nurshahzanani, Anuar, Nornizar, Abdul Muttalib, Nur Aisyah, Yusop, Siti Nurul’ain, Abu Bakar, Mohd Rushdi, Adam, Fatmawati, Ibrahim, Siti Fatimah
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Language:English
English
Published: American Chemical Society (ACS Publication) 2022
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https://pubs.acs.org/doi/10.1021/acs.oprd.2c00151
https://doi.org/10.1021/acs.oprd.2c00151
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spelling my.iium.irep.1024202024-05-02T03:22:47Z http://irep.iium.edu.my/102420/ The role of solvent hydroxyl functional groups on the interaction energy and growth of form I paracetamol crystal facets Shahrir, Nurshahzanani Anuar, Nornizar Abdul Muttalib, Nur Aisyah Yusop, Siti Nurul’ain Abu Bakar, Mohd Rushdi Adam, Fatmawati Ibrahim, Siti Fatimah QD Chemistry RS192 Materia Medica-Pharmaceutical Technology TP155 Chemical engineering The morphology of a crystal grown in a solvent can change depending on the solvent used during the crystallization process. Modification of the morphology of a crystal can be engineered based on information conferred by the functional groups of the facets of interest and the functional groups of the solvent. This study aims to predict the effect of the alcoholic functional group of amyl alcohol, benzyl alcohol, and phenol on the {002}, {011}, and {110} facets of Form I paracetamol. Prediction and simulation studies were carried out using an embedded tool available in Material Studio. The interaction between the solvents (phenol, benzyl alcohol, and amyl alcohol) and the surfaces used in this study revealed that the {011} facet had the most negative nonbonded energy, followed by the {110} and {002} facets. Overall, the nonbonded interactions between the solvents and the facets were dominated by Coulombic interactions, accounting for more than 90% of the energies, which is within the range from −2566 to −3613 kcal/mol. The binding energy for amyl and benzyl alcohols on the facets of the crystal, ranked from the strongest to the weakest, was in the order {002} > {110} > {011}, while for phenol, the rank was {002} > {011} > {110}. This result is in line with the observed crystal morphology of Form I paracetamol crystallized in a polar protic solvent, in which the most favorable solvent binding on the {002} facets delayed the growth of the elongated hexagonal morphology along the c-axis and formed prismatic-like morphology. Using benzyl alcohol as a case study, an assessment of synthon formation on facets {002} and {011} showed that synthon B is an important synthon for the growth of units of these facets, while synthon F is an important building block synthon for the {110} facet. American Chemical Society (ACS Publication) 2022-12-16 Article PeerReviewed application/pdf en http://irep.iium.edu.my/102420/1/102420_The%20role%20of%20solvent%20hydroxyl%20functional%20groups.pdf application/pdf en http://irep.iium.edu.my/102420/2/102420_The%20role%20of%20solvent%20hydroxyl%20functional%20groups_SCOPUS.pdf Shahrir, Nurshahzanani and Anuar, Nornizar and Abdul Muttalib, Nur Aisyah and Yusop, Siti Nurul’ain and Abu Bakar, Mohd Rushdi and Adam, Fatmawati and Ibrahim, Siti Fatimah (2022) The role of solvent hydroxyl functional groups on the interaction energy and growth of form I paracetamol crystal facets. Organic Process Research & Development, 26 (12). pp. 3226-3235. ISSN 1083-6160 E-ISSN 1520-586X https://pubs.acs.org/doi/10.1021/acs.oprd.2c00151 https://doi.org/10.1021/acs.oprd.2c00151
institution Universiti Islam Antarabangsa Malaysia
building IIUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider International Islamic University Malaysia
content_source IIUM Repository (IREP)
url_provider http://irep.iium.edu.my/
language English
English
topic QD Chemistry
RS192 Materia Medica-Pharmaceutical Technology
TP155 Chemical engineering
spellingShingle QD Chemistry
RS192 Materia Medica-Pharmaceutical Technology
TP155 Chemical engineering
Shahrir, Nurshahzanani
Anuar, Nornizar
Abdul Muttalib, Nur Aisyah
Yusop, Siti Nurul’ain
Abu Bakar, Mohd Rushdi
Adam, Fatmawati
Ibrahim, Siti Fatimah
The role of solvent hydroxyl functional groups on the interaction energy and growth of form I paracetamol crystal facets
description The morphology of a crystal grown in a solvent can change depending on the solvent used during the crystallization process. Modification of the morphology of a crystal can be engineered based on information conferred by the functional groups of the facets of interest and the functional groups of the solvent. This study aims to predict the effect of the alcoholic functional group of amyl alcohol, benzyl alcohol, and phenol on the {002}, {011}, and {110} facets of Form I paracetamol. Prediction and simulation studies were carried out using an embedded tool available in Material Studio. The interaction between the solvents (phenol, benzyl alcohol, and amyl alcohol) and the surfaces used in this study revealed that the {011} facet had the most negative nonbonded energy, followed by the {110} and {002} facets. Overall, the nonbonded interactions between the solvents and the facets were dominated by Coulombic interactions, accounting for more than 90% of the energies, which is within the range from −2566 to −3613 kcal/mol. The binding energy for amyl and benzyl alcohols on the facets of the crystal, ranked from the strongest to the weakest, was in the order {002} > {110} > {011}, while for phenol, the rank was {002} > {011} > {110}. This result is in line with the observed crystal morphology of Form I paracetamol crystallized in a polar protic solvent, in which the most favorable solvent binding on the {002} facets delayed the growth of the elongated hexagonal morphology along the c-axis and formed prismatic-like morphology. Using benzyl alcohol as a case study, an assessment of synthon formation on facets {002} and {011} showed that synthon B is an important synthon for the growth of units of these facets, while synthon F is an important building block synthon for the {110} facet.
format Article
author Shahrir, Nurshahzanani
Anuar, Nornizar
Abdul Muttalib, Nur Aisyah
Yusop, Siti Nurul’ain
Abu Bakar, Mohd Rushdi
Adam, Fatmawati
Ibrahim, Siti Fatimah
author_facet Shahrir, Nurshahzanani
Anuar, Nornizar
Abdul Muttalib, Nur Aisyah
Yusop, Siti Nurul’ain
Abu Bakar, Mohd Rushdi
Adam, Fatmawati
Ibrahim, Siti Fatimah
author_sort Shahrir, Nurshahzanani
title The role of solvent hydroxyl functional groups on the interaction energy and growth of form I paracetamol crystal facets
title_short The role of solvent hydroxyl functional groups on the interaction energy and growth of form I paracetamol crystal facets
title_full The role of solvent hydroxyl functional groups on the interaction energy and growth of form I paracetamol crystal facets
title_fullStr The role of solvent hydroxyl functional groups on the interaction energy and growth of form I paracetamol crystal facets
title_full_unstemmed The role of solvent hydroxyl functional groups on the interaction energy and growth of form I paracetamol crystal facets
title_sort role of solvent hydroxyl functional groups on the interaction energy and growth of form i paracetamol crystal facets
publisher American Chemical Society (ACS Publication)
publishDate 2022
url http://irep.iium.edu.my/102420/1/102420_The%20role%20of%20solvent%20hydroxyl%20functional%20groups.pdf
http://irep.iium.edu.my/102420/2/102420_The%20role%20of%20solvent%20hydroxyl%20functional%20groups_SCOPUS.pdf
http://irep.iium.edu.my/102420/
https://pubs.acs.org/doi/10.1021/acs.oprd.2c00151
https://doi.org/10.1021/acs.oprd.2c00151
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