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Heterotelechelic Silicones: Facile Synthesis and Functionalization Using Silane-Based Initiators

[Image: see text] The synthetic utility of heterotelechelic polydimethylsiloxane (PDMS) derivatives is limited due to challenges in preparing materials with high chain-end fidelity. In this study, anionic ring-opening polymerization (AROP) of hexamethylcyclotrisiloxane (D(3)) monomers using a specif...

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Autores principales: Okayama, Yoichi, Eom, Taejun, Czuczola, Michael, Abdilla, Allison, Blankenship, Jacob R., Albanese, Kaitlin R., de Alaniz, Javier Read, Bates, Christopher M., Hawker, Craig J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10653272/
https://www.ncbi.nlm.nih.gov/pubmed/38024157
http://dx.doi.org/10.1021/acs.macromol.3c01802
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author Okayama, Yoichi
Eom, Taejun
Czuczola, Michael
Abdilla, Allison
Blankenship, Jacob R.
Albanese, Kaitlin R.
de Alaniz, Javier Read
Bates, Christopher M.
Hawker, Craig J.
author_facet Okayama, Yoichi
Eom, Taejun
Czuczola, Michael
Abdilla, Allison
Blankenship, Jacob R.
Albanese, Kaitlin R.
de Alaniz, Javier Read
Bates, Christopher M.
Hawker, Craig J.
author_sort Okayama, Yoichi
collection PubMed
description [Image: see text] The synthetic utility of heterotelechelic polydimethylsiloxane (PDMS) derivatives is limited due to challenges in preparing materials with high chain-end fidelity. In this study, anionic ring-opening polymerization (AROP) of hexamethylcyclotrisiloxane (D(3)) monomers using a specifically designed silyl hydride (Si–H)-based initiator provides a versatile approach toward a library of heterotelechelic PDMS polymers. A novel initiator, where the Si–H terminal group is connected to a C atom (H–Si–C) and not an O atom (H–Si–O) as in traditional systems, suppresses intermolecular transfer of the Si–H group, leading to heterotelechelic PDMS derivatives with a high degree of control over chain ends. In situ termination of the D(3) propagating chain end with commercially available chlorosilanes (alkyl chlorides, methacrylates, and norbornenes) yields an array of chain-end-functionalized PDMS derivatives. This diversity can be further increased by hydrosilylation with functionalized alkenes (alcohols, esters, and epoxides) to generate a library of heterotelechelic PDMS polymers. Due to the living nature of ring-opening polymerization and efficient initiation, narrow-dispersity (Đ < 1.2) polymers spanning a wide range of molar masses (2–11 kg mol(–1)) were synthesized. With facile access to α-Si–H and ω-norbornene functionalized PDMS macromonomers (H–PDMS–Nb), the synthesis of well-defined supersoft (G′ = 30 kPa) PDMS bottlebrush networks, which are difficult to prepare using established strategies, was demonstrated.
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spelling pubmed-106532722023-11-16 Heterotelechelic Silicones: Facile Synthesis and Functionalization Using Silane-Based Initiators Okayama, Yoichi Eom, Taejun Czuczola, Michael Abdilla, Allison Blankenship, Jacob R. Albanese, Kaitlin R. de Alaniz, Javier Read Bates, Christopher M. Hawker, Craig J. Macromolecules [Image: see text] The synthetic utility of heterotelechelic polydimethylsiloxane (PDMS) derivatives is limited due to challenges in preparing materials with high chain-end fidelity. In this study, anionic ring-opening polymerization (AROP) of hexamethylcyclotrisiloxane (D(3)) monomers using a specifically designed silyl hydride (Si–H)-based initiator provides a versatile approach toward a library of heterotelechelic PDMS polymers. A novel initiator, where the Si–H terminal group is connected to a C atom (H–Si–C) and not an O atom (H–Si–O) as in traditional systems, suppresses intermolecular transfer of the Si–H group, leading to heterotelechelic PDMS derivatives with a high degree of control over chain ends. In situ termination of the D(3) propagating chain end with commercially available chlorosilanes (alkyl chlorides, methacrylates, and norbornenes) yields an array of chain-end-functionalized PDMS derivatives. This diversity can be further increased by hydrosilylation with functionalized alkenes (alcohols, esters, and epoxides) to generate a library of heterotelechelic PDMS polymers. Due to the living nature of ring-opening polymerization and efficient initiation, narrow-dispersity (Đ < 1.2) polymers spanning a wide range of molar masses (2–11 kg mol(–1)) were synthesized. With facile access to α-Si–H and ω-norbornene functionalized PDMS macromonomers (H–PDMS–Nb), the synthesis of well-defined supersoft (G′ = 30 kPa) PDMS bottlebrush networks, which are difficult to prepare using established strategies, was demonstrated. American Chemical Society 2023-10-29 /pmc/articles/PMC10653272/ /pubmed/38024157 http://dx.doi.org/10.1021/acs.macromol.3c01802 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Okayama, Yoichi
Eom, Taejun
Czuczola, Michael
Abdilla, Allison
Blankenship, Jacob R.
Albanese, Kaitlin R.
de Alaniz, Javier Read
Bates, Christopher M.
Hawker, Craig J.
Heterotelechelic Silicones: Facile Synthesis and Functionalization Using Silane-Based Initiators
title Heterotelechelic Silicones: Facile Synthesis and Functionalization Using Silane-Based Initiators
title_full Heterotelechelic Silicones: Facile Synthesis and Functionalization Using Silane-Based Initiators
title_fullStr Heterotelechelic Silicones: Facile Synthesis and Functionalization Using Silane-Based Initiators
title_full_unstemmed Heterotelechelic Silicones: Facile Synthesis and Functionalization Using Silane-Based Initiators
title_short Heterotelechelic Silicones: Facile Synthesis and Functionalization Using Silane-Based Initiators
title_sort heterotelechelic silicones: facile synthesis and functionalization using silane-based initiators
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10653272/
https://www.ncbi.nlm.nih.gov/pubmed/38024157
http://dx.doi.org/10.1021/acs.macromol.3c01802
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