Cargando…

1D and 2D hybrid polymers based on zinc phenylphosphates: synthesis, characterization and applications in electroactive materials

The synthesis, structure and properties of three hybrid polymers based on zinc arylphosphates are described in this study. Zinc bis(diphenylphosphate) (ZnDPhP) was obtained as needle-like crystals containing hexagonally packed, homochiral (1)(∞)[Zn(DPhP)(2/2)] helical chains. The XRD and DSC studies...

Descripción completa

Detalles Bibliográficos
Autores principales: Dębowski, Maciej, Florjańczyk, Zbigniew, Ostrowski, Andrzej, Guńka, Piotr A., Zachara, Janusz, Krztoń-Maziopa, Anna, Chazarkiewicz, Jakub, Iuliano, Anna, Plichta, Andrzej
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8695067/
https://www.ncbi.nlm.nih.gov/pubmed/35423336
http://dx.doi.org/10.1039/d0ra09493e
_version_ 1784619499453939712
author Dębowski, Maciej
Florjańczyk, Zbigniew
Ostrowski, Andrzej
Guńka, Piotr A.
Zachara, Janusz
Krztoń-Maziopa, Anna
Chazarkiewicz, Jakub
Iuliano, Anna
Plichta, Andrzej
author_facet Dębowski, Maciej
Florjańczyk, Zbigniew
Ostrowski, Andrzej
Guńka, Piotr A.
Zachara, Janusz
Krztoń-Maziopa, Anna
Chazarkiewicz, Jakub
Iuliano, Anna
Plichta, Andrzej
author_sort Dębowski, Maciej
collection PubMed
description The synthesis, structure and properties of three hybrid polymers based on zinc arylphosphates are described in this study. Zinc bis(diphenylphosphate) (ZnDPhP) was obtained as needle-like crystals containing hexagonally packed, homochiral (1)(∞)[Zn(DPhP)(2/2)] helical chains. The XRD and DSC studies revealed that upon heating, ZnDPhP undergoes a reversible thermal transition at ca. 160 °C with expansion mainly perpendicular to its c-axis. Zinc phenylphosphate hydrate (ZnMPhP-H) formed plate-like particles with an average thickness of less than 1 μm and much thinner nanolayers with a basal spacing of 15.5 Å. ZnMPhP-H was easily and reversibly dehydrated to its anhydrous form, ZnMPhP-A, which exhibited a somewhat larger basal spacing of 16.5 Å and the capacity for amine intercalation. The thermal decomposition of ZnDPhP or ZnMPhP-A began around 250 °C, resulting in the formation of solid mixtures of zinc phosphates and electron-conducting carbonaceous phases. The bulk electrical conductivities of the poly(vinylidene fluoride)-based composites containing the ZnDPhP pyrolyzates reached 0.1–0.2 S cm(−1). Upon mixing with silicone oil, all the synthesized hybrid polymers formed fluids that exhibit significant negative electrorheological effects and have potential for application in electroresponsive smart materials. The application of an electric field during the crosslinking of such systems affected the viscoelastic properties of the resultant solid composites, while the cured systems showed rather small electrorheological effects.
format Online
Article
Text
id pubmed-8695067
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-86950672022-04-13 1D and 2D hybrid polymers based on zinc phenylphosphates: synthesis, characterization and applications in electroactive materials Dębowski, Maciej Florjańczyk, Zbigniew Ostrowski, Andrzej Guńka, Piotr A. Zachara, Janusz Krztoń-Maziopa, Anna Chazarkiewicz, Jakub Iuliano, Anna Plichta, Andrzej RSC Adv Chemistry The synthesis, structure and properties of three hybrid polymers based on zinc arylphosphates are described in this study. Zinc bis(diphenylphosphate) (ZnDPhP) was obtained as needle-like crystals containing hexagonally packed, homochiral (1)(∞)[Zn(DPhP)(2/2)] helical chains. The XRD and DSC studies revealed that upon heating, ZnDPhP undergoes a reversible thermal transition at ca. 160 °C with expansion mainly perpendicular to its c-axis. Zinc phenylphosphate hydrate (ZnMPhP-H) formed plate-like particles with an average thickness of less than 1 μm and much thinner nanolayers with a basal spacing of 15.5 Å. ZnMPhP-H was easily and reversibly dehydrated to its anhydrous form, ZnMPhP-A, which exhibited a somewhat larger basal spacing of 16.5 Å and the capacity for amine intercalation. The thermal decomposition of ZnDPhP or ZnMPhP-A began around 250 °C, resulting in the formation of solid mixtures of zinc phosphates and electron-conducting carbonaceous phases. The bulk electrical conductivities of the poly(vinylidene fluoride)-based composites containing the ZnDPhP pyrolyzates reached 0.1–0.2 S cm(−1). Upon mixing with silicone oil, all the synthesized hybrid polymers formed fluids that exhibit significant negative electrorheological effects and have potential for application in electroresponsive smart materials. The application of an electric field during the crosslinking of such systems affected the viscoelastic properties of the resultant solid composites, while the cured systems showed rather small electrorheological effects. The Royal Society of Chemistry 2021-02-18 /pmc/articles/PMC8695067/ /pubmed/35423336 http://dx.doi.org/10.1039/d0ra09493e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Dębowski, Maciej
Florjańczyk, Zbigniew
Ostrowski, Andrzej
Guńka, Piotr A.
Zachara, Janusz
Krztoń-Maziopa, Anna
Chazarkiewicz, Jakub
Iuliano, Anna
Plichta, Andrzej
1D and 2D hybrid polymers based on zinc phenylphosphates: synthesis, characterization and applications in electroactive materials
title 1D and 2D hybrid polymers based on zinc phenylphosphates: synthesis, characterization and applications in electroactive materials
title_full 1D and 2D hybrid polymers based on zinc phenylphosphates: synthesis, characterization and applications in electroactive materials
title_fullStr 1D and 2D hybrid polymers based on zinc phenylphosphates: synthesis, characterization and applications in electroactive materials
title_full_unstemmed 1D and 2D hybrid polymers based on zinc phenylphosphates: synthesis, characterization and applications in electroactive materials
title_short 1D and 2D hybrid polymers based on zinc phenylphosphates: synthesis, characterization and applications in electroactive materials
title_sort 1d and 2d hybrid polymers based on zinc phenylphosphates: synthesis, characterization and applications in electroactive materials
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8695067/
https://www.ncbi.nlm.nih.gov/pubmed/35423336
http://dx.doi.org/10.1039/d0ra09493e
work_keys_str_mv AT debowskimaciej 1dand2dhybridpolymersbasedonzincphenylphosphatessynthesischaracterizationandapplicationsinelectroactivematerials
AT florjanczykzbigniew 1dand2dhybridpolymersbasedonzincphenylphosphatessynthesischaracterizationandapplicationsinelectroactivematerials
AT ostrowskiandrzej 1dand2dhybridpolymersbasedonzincphenylphosphatessynthesischaracterizationandapplicationsinelectroactivematerials
AT gunkapiotra 1dand2dhybridpolymersbasedonzincphenylphosphatessynthesischaracterizationandapplicationsinelectroactivematerials
AT zacharajanusz 1dand2dhybridpolymersbasedonzincphenylphosphatessynthesischaracterizationandapplicationsinelectroactivematerials
AT krztonmaziopaanna 1dand2dhybridpolymersbasedonzincphenylphosphatessynthesischaracterizationandapplicationsinelectroactivematerials
AT chazarkiewiczjakub 1dand2dhybridpolymersbasedonzincphenylphosphatessynthesischaracterizationandapplicationsinelectroactivematerials
AT iulianoanna 1dand2dhybridpolymersbasedonzincphenylphosphatessynthesischaracterizationandapplicationsinelectroactivematerials
AT plichtaandrzej 1dand2dhybridpolymersbasedonzincphenylphosphatessynthesischaracterizationandapplicationsinelectroactivematerials