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New zinc complexes derived from “self-adaptable” acyclic diiminodipyrromethanes as potent catalysts for the reduction of curing temperature of bisphenol-A/F benzoxazines

The simple modification of the Schiff-base ligands often brings significant changes in the coordination properties of the metal-complexes, providing newer prospects for their unexplored applications. In this context, the present work utilized the “self-adaptable” acyclic diiminodipyrromethane Schiff...

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Autores principales: Loke, Shiva K., Pagadala, Eswar, Devaraju, S., Srinivasadesikan, V., Kottalanka, Ravi K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9057005/
https://www.ncbi.nlm.nih.gov/pubmed/35517922
http://dx.doi.org/10.1039/d0ra07837a
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author Loke, Shiva K.
Pagadala, Eswar
Devaraju, S.
Srinivasadesikan, V.
Kottalanka, Ravi K.
author_facet Loke, Shiva K.
Pagadala, Eswar
Devaraju, S.
Srinivasadesikan, V.
Kottalanka, Ravi K.
author_sort Loke, Shiva K.
collection PubMed
description The simple modification of the Schiff-base ligands often brings significant changes in the coordination properties of the metal-complexes, providing newer prospects for their unexplored applications. In this context, the present work utilized the “self-adaptable” acyclic diiminodipyrromethane Schiff's bases (2a and 2b) for the synthesis of their Zn-based complexes and explored their potential in the ring-opening polymerization of benzoxazines. The two zinc complexes of composition [Zn{(Ph)(CH(3))C(2,6-(i)Pr(2)C(6)H(3)–N[double bond, length as m-dash]CH–C(4)H(2)N)(2,6-(i)Pr(2)C(6)H(3)–N[double bond, length as m-dash]CH–C(4)H(2)NH)}(2)] (3) and [ZnCl(2){(Ph)(CH(3))C(Ph(3)C–NH[double bond, length as m-dash]CH–C(4)H(2)N)(2)}] (4) were synthesized in good yields, and the structures were confirmed by single crystal X-ray diffraction (XRD). Later, zinc complexes (3 & 4) were used as catalysts to reduce the curing (ring-opening polymerization) temperature of benzoxazine monomers such as Bisphenol-A (BA-a) and Bisphenol-F (BF-a) benzoxazines. Dynamic scanning calorimetry (DSC) studies revealed that the on-set curing (T(p)) temperatures were reasonably decreased upto 20% for the benzoxazines. Furthermore, the thermal stabilities of the polybenzoxazines (PBzs) derived in the presence of zinc catalysts (3 and 4) were compared with PBz obtained in the absence of catalyst under similar conditions. The thermal studies reveled that there is no significant changes in the initial degradation of polymers. However, the thermal stability in terms of char yields at 800 °C improved upto 10–21% for the bisphenol-A/F benzoxazines.
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spelling pubmed-90570052022-05-04 New zinc complexes derived from “self-adaptable” acyclic diiminodipyrromethanes as potent catalysts for the reduction of curing temperature of bisphenol-A/F benzoxazines Loke, Shiva K. Pagadala, Eswar Devaraju, S. Srinivasadesikan, V. Kottalanka, Ravi K. RSC Adv Chemistry The simple modification of the Schiff-base ligands often brings significant changes in the coordination properties of the metal-complexes, providing newer prospects for their unexplored applications. In this context, the present work utilized the “self-adaptable” acyclic diiminodipyrromethane Schiff's bases (2a and 2b) for the synthesis of their Zn-based complexes and explored their potential in the ring-opening polymerization of benzoxazines. The two zinc complexes of composition [Zn{(Ph)(CH(3))C(2,6-(i)Pr(2)C(6)H(3)–N[double bond, length as m-dash]CH–C(4)H(2)N)(2,6-(i)Pr(2)C(6)H(3)–N[double bond, length as m-dash]CH–C(4)H(2)NH)}(2)] (3) and [ZnCl(2){(Ph)(CH(3))C(Ph(3)C–NH[double bond, length as m-dash]CH–C(4)H(2)N)(2)}] (4) were synthesized in good yields, and the structures were confirmed by single crystal X-ray diffraction (XRD). Later, zinc complexes (3 & 4) were used as catalysts to reduce the curing (ring-opening polymerization) temperature of benzoxazine monomers such as Bisphenol-A (BA-a) and Bisphenol-F (BF-a) benzoxazines. Dynamic scanning calorimetry (DSC) studies revealed that the on-set curing (T(p)) temperatures were reasonably decreased upto 20% for the benzoxazines. Furthermore, the thermal stabilities of the polybenzoxazines (PBzs) derived in the presence of zinc catalysts (3 and 4) were compared with PBz obtained in the absence of catalyst under similar conditions. The thermal studies reveled that there is no significant changes in the initial degradation of polymers. However, the thermal stability in terms of char yields at 800 °C improved upto 10–21% for the bisphenol-A/F benzoxazines. The Royal Society of Chemistry 2020-10-01 /pmc/articles/PMC9057005/ /pubmed/35517922 http://dx.doi.org/10.1039/d0ra07837a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Loke, Shiva K.
Pagadala, Eswar
Devaraju, S.
Srinivasadesikan, V.
Kottalanka, Ravi K.
New zinc complexes derived from “self-adaptable” acyclic diiminodipyrromethanes as potent catalysts for the reduction of curing temperature of bisphenol-A/F benzoxazines
title New zinc complexes derived from “self-adaptable” acyclic diiminodipyrromethanes as potent catalysts for the reduction of curing temperature of bisphenol-A/F benzoxazines
title_full New zinc complexes derived from “self-adaptable” acyclic diiminodipyrromethanes as potent catalysts for the reduction of curing temperature of bisphenol-A/F benzoxazines
title_fullStr New zinc complexes derived from “self-adaptable” acyclic diiminodipyrromethanes as potent catalysts for the reduction of curing temperature of bisphenol-A/F benzoxazines
title_full_unstemmed New zinc complexes derived from “self-adaptable” acyclic diiminodipyrromethanes as potent catalysts for the reduction of curing temperature of bisphenol-A/F benzoxazines
title_short New zinc complexes derived from “self-adaptable” acyclic diiminodipyrromethanes as potent catalysts for the reduction of curing temperature of bisphenol-A/F benzoxazines
title_sort new zinc complexes derived from “self-adaptable” acyclic diiminodipyrromethanes as potent catalysts for the reduction of curing temperature of bisphenol-a/f benzoxazines
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9057005/
https://www.ncbi.nlm.nih.gov/pubmed/35517922
http://dx.doi.org/10.1039/d0ra07837a
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