Hierarchical assembly of thermoresponsive helical dendronized poly(phenylacetylene)s through photo-crosslinking of the thermal aggregates

[Display omitted] •Helical dendronized PPA homopolymers were synthesized, which showed characteristic thermoresponsive behavior and tunable helicities.•Thermally-induced assembly of these helical homopolymers was investigated, dependent on their worm-like molecular geometry and radial amphiphilicity...

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Veröffentlicht in:Journal of colloid and interface science 2025-01, Vol.677 (Pt A), p.928-940
Hauptverfasser: Ren, Liangxuan, Lu, Xueting, Yan, Jiatao, Zhang, Afang, Li, Wen
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container_end_page 940
container_issue Pt A
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container_title Journal of colloid and interface science
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creator Ren, Liangxuan
Lu, Xueting
Yan, Jiatao
Zhang, Afang
Li, Wen
description [Display omitted] •Helical dendronized PPA homopolymers were synthesized, which showed characteristic thermoresponsive behavior and tunable helicities.•Thermally-induced assembly of these helical homopolymers was investigated, dependent on their worm-like molecular geometry and radial amphiphilicity.•Hexagonal chain packing was formed through thermal collapse of these dendronized homopolymers in water, simultaneously enhanced the supramolecular chirality.•In situ photo-crosslinking of the thermal aggregates from these dendronized homopolymers afforded hierarchical structures with high stability both in the morphologies and the memorized chiralities.•Photo-crosslinking of the thermal aggregates was happened within individual aggregates due to protection of the dendritic pendants. Supramolecular assembly of helical homopolymers to form stable chiral entities in water is highly valuable for creating chiral nanostructures and fabricating chiral biomaterials. Here we report on thermally induced supramolecular assembly of helical dendronized poly(phenylacetylene)s (PPAs) in aqueous solutions, and their in-situ photo-crosslinking at elevated temperatures to afford crosslinked nano-assemblies with hierarchical structures and stabilized helicities. These helical dendronized homopolymers carry cinnamate-cored dendritic oligoethylene glycol (OEG) pendants, which exhibit characteristic thermoresponsive behavior. Their thermal aggregation confers hexagonal packing of the polymer chains, and simultaneously resulting in enhancement of their chiralities. Assisted by radial amphiphilicity and worm-like molecular geometry, these dendronized PPAs form supramolecular twisted fibers, spheroid particles or toroids via thermal aggregation. Through UV photoirradiation above their cloud points (Tcps), cycloaddition of cinnamate moieties from the dendritic pendants promotes intermolecular crosslinking of dendronized PPA chains within the thermal aggregates, and simultaneously, the dynamic morphologies and supramolecular chirality from the dendronized PPAs through thermally induced aggregation can be fixed. In addition, photo-crosslinking can be occurred solely within individual aggregates due to the protection of densely packed dendritic OEGs. Therefore, various crosslinked assemblies from the dendronized homopolymers with tailorable morphologies and stabilized chirality are fabricated by tuning their thermally induced dynamic aggregations followed by in-situ photo-crosslinking. We
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Supramolecular assembly of helical homopolymers to form stable chiral entities in water is highly valuable for creating chiral nanostructures and fabricating chiral biomaterials. Here we report on thermally induced supramolecular assembly of helical dendronized poly(phenylacetylene)s (PPAs) in aqueous solutions, and their in-situ photo-crosslinking at elevated temperatures to afford crosslinked nano-assemblies with hierarchical structures and stabilized helicities. These helical dendronized homopolymers carry cinnamate-cored dendritic oligoethylene glycol (OEG) pendants, which exhibit characteristic thermoresponsive behavior. Their thermal aggregation confers hexagonal packing of the polymer chains, and simultaneously resulting in enhancement of their chiralities. Assisted by radial amphiphilicity and worm-like molecular geometry, these dendronized PPAs form supramolecular twisted fibers, spheroid particles or toroids via thermal aggregation. Through UV photoirradiation above their cloud points (Tcps), cycloaddition of cinnamate moieties from the dendritic pendants promotes intermolecular crosslinking of dendronized PPA chains within the thermal aggregates, and simultaneously, the dynamic morphologies and supramolecular chirality from the dendronized PPAs through thermally induced aggregation can be fixed. In addition, photo-crosslinking can be occurred solely within individual aggregates due to the protection of densely packed dendritic OEGs. Therefore, various crosslinked assemblies from the dendronized homopolymers with tailorable morphologies and stabilized chirality are fabricated by tuning their thermally induced dynamic aggregations followed by in-situ photo-crosslinking. We believe that this work paves a convenient route to fabricate chiral assemblies with stabilized morphologies and fixed chiralities from dynamic helical homopolymers through intermolecular crosslinking, which can be promising for various chiral applications.</description><identifier>ISSN: 0021-9797</identifier><identifier>ISSN: 1095-7103</identifier><identifier>EISSN: 1095-7103</identifier><identifier>DOI: 10.1016/j.jcis.2024.08.001</identifier><identifier>PMID: 39128287</identifier><language>eng</language><publisher>United States: Elsevier Inc</publisher><subject>biocompatible materials ; Chiral assembly ; crosslinking ; cycloaddition reactions ; Dendronized polymer ; geometry ; Helical polymer ; Homopolymer assembly ; nanomaterials ; optical isomerism ; photoirradiation ; Poly(phenylacetylene) ; polymers ; Thermoresponsive polymer</subject><ispartof>Journal of colloid and interface science, 2025-01, Vol.677 (Pt A), p.928-940</ispartof><rights>2024 Elsevier Inc.</rights><rights>Copyright © 2024 Elsevier Inc. 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Supramolecular assembly of helical homopolymers to form stable chiral entities in water is highly valuable for creating chiral nanostructures and fabricating chiral biomaterials. Here we report on thermally induced supramolecular assembly of helical dendronized poly(phenylacetylene)s (PPAs) in aqueous solutions, and their in-situ photo-crosslinking at elevated temperatures to afford crosslinked nano-assemblies with hierarchical structures and stabilized helicities. These helical dendronized homopolymers carry cinnamate-cored dendritic oligoethylene glycol (OEG) pendants, which exhibit characteristic thermoresponsive behavior. Their thermal aggregation confers hexagonal packing of the polymer chains, and simultaneously resulting in enhancement of their chiralities. Assisted by radial amphiphilicity and worm-like molecular geometry, these dendronized PPAs form supramolecular twisted fibers, spheroid particles or toroids via thermal aggregation. Through UV photoirradiation above their cloud points (Tcps), cycloaddition of cinnamate moieties from the dendritic pendants promotes intermolecular crosslinking of dendronized PPA chains within the thermal aggregates, and simultaneously, the dynamic morphologies and supramolecular chirality from the dendronized PPAs through thermally induced aggregation can be fixed. In addition, photo-crosslinking can be occurred solely within individual aggregates due to the protection of densely packed dendritic OEGs. Therefore, various crosslinked assemblies from the dendronized homopolymers with tailorable morphologies and stabilized chirality are fabricated by tuning their thermally induced dynamic aggregations followed by in-situ photo-crosslinking. We believe that this work paves a convenient route to fabricate chiral assemblies with stabilized morphologies and fixed chiralities from dynamic helical homopolymers through intermolecular crosslinking, which can be promising for various chiral applications.</description><subject>biocompatible materials</subject><subject>Chiral assembly</subject><subject>crosslinking</subject><subject>cycloaddition reactions</subject><subject>Dendronized polymer</subject><subject>geometry</subject><subject>Helical polymer</subject><subject>Homopolymer assembly</subject><subject>nanomaterials</subject><subject>optical isomerism</subject><subject>photoirradiation</subject><subject>Poly(phenylacetylene)</subject><subject>polymers</subject><subject>Thermoresponsive polymer</subject><issn>0021-9797</issn><issn>1095-7103</issn><issn>1095-7103</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2025</creationdate><recordtype>article</recordtype><recordid>eNqFkcFu1DAQhi0EokvhBTigHMshYWwncSxxQVWhSJW4wNlKnEnixbGDna2UvgFvjbe79AinOfj7_9H4I-QthYICrT_si702sWDAygKaAoA-IzsKssoFBf6c7AAYzaWQ4oK8inGfAFpV8iW54JKyhjViR37fGgxt0JPRrc3aGHHu7Jb5IVsnDLMPGBfvornHbEL7CPXo-uCdecA-W7zdrpYJ3WZbjetm0eH7mLLBH8YpWya_-lwHH6M17qdx47n51H7cOI4Bx3bF-Jq8GFob8c15XpIfn2--X9_md9--fL3-dJdrJmDN60EIXtZdKXXFUPBu0DXXddc3sh2EZIJDLWlZIlRDl54pxVpLzWhT9VSXjF-Sq1PvEvyvA8ZVzSZqtLZ16A9RcVpxUfIyjf-iIBlQgLpOKDuhj8cGHNQSzNyGTVFQR1tqr4621NGWgkYlGSn07tx_6GbsnyJ_9STg4wnA9CH3yZSK2qDT2JuAelW9N__q_wOFGqkp</recordid><startdate>202501</startdate><enddate>202501</enddate><creator>Ren, Liangxuan</creator><creator>Lu, Xueting</creator><creator>Yan, Jiatao</creator><creator>Zhang, Afang</creator><creator>Li, Wen</creator><general>Elsevier Inc</general><scope>NPM</scope><scope>AAYXX</scope><scope>CITATION</scope><scope>7X8</scope><scope>7S9</scope><scope>L.6</scope><orcidid>https://orcid.org/0000-0002-0078-3223</orcidid><orcidid>https://orcid.org/0000-0003-1224-366X</orcidid></search><sort><creationdate>202501</creationdate><title>Hierarchical assembly of thermoresponsive helical dendronized poly(phenylacetylene)s through photo-crosslinking of the thermal aggregates</title><author>Ren, Liangxuan ; Lu, Xueting ; Yan, Jiatao ; Zhang, Afang ; Li, Wen</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c270t-6f77346b49c52e73bfc63c6bd89af79273069144e05fb73b11e6c9c2185d1c423</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2025</creationdate><topic>biocompatible materials</topic><topic>Chiral assembly</topic><topic>crosslinking</topic><topic>cycloaddition reactions</topic><topic>Dendronized polymer</topic><topic>geometry</topic><topic>Helical polymer</topic><topic>Homopolymer assembly</topic><topic>nanomaterials</topic><topic>optical isomerism</topic><topic>photoirradiation</topic><topic>Poly(phenylacetylene)</topic><topic>polymers</topic><topic>Thermoresponsive polymer</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Ren, Liangxuan</creatorcontrib><creatorcontrib>Lu, Xueting</creatorcontrib><creatorcontrib>Yan, Jiatao</creatorcontrib><creatorcontrib>Zhang, Afang</creatorcontrib><creatorcontrib>Li, Wen</creatorcontrib><collection>PubMed</collection><collection>CrossRef</collection><collection>MEDLINE - Academic</collection><collection>AGRICOLA</collection><collection>AGRICOLA - Academic</collection><jtitle>Journal of colloid and interface science</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Ren, Liangxuan</au><au>Lu, Xueting</au><au>Yan, Jiatao</au><au>Zhang, Afang</au><au>Li, Wen</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Hierarchical assembly of thermoresponsive helical dendronized poly(phenylacetylene)s through photo-crosslinking of the thermal aggregates</atitle><jtitle>Journal of colloid and interface science</jtitle><addtitle>J Colloid Interface Sci</addtitle><date>2025-01</date><risdate>2025</risdate><volume>677</volume><issue>Pt A</issue><spage>928</spage><epage>940</epage><pages>928-940</pages><issn>0021-9797</issn><issn>1095-7103</issn><eissn>1095-7103</eissn><abstract>[Display omitted] •Helical dendronized PPA homopolymers were synthesized, which showed characteristic thermoresponsive behavior and tunable helicities.•Thermally-induced assembly of these helical homopolymers was investigated, dependent on their worm-like molecular geometry and radial amphiphilicity.•Hexagonal chain packing was formed through thermal collapse of these dendronized homopolymers in water, simultaneously enhanced the supramolecular chirality.•In situ photo-crosslinking of the thermal aggregates from these dendronized homopolymers afforded hierarchical structures with high stability both in the morphologies and the memorized chiralities.•Photo-crosslinking of the thermal aggregates was happened within individual aggregates due to protection of the dendritic pendants. Supramolecular assembly of helical homopolymers to form stable chiral entities in water is highly valuable for creating chiral nanostructures and fabricating chiral biomaterials. Here we report on thermally induced supramolecular assembly of helical dendronized poly(phenylacetylene)s (PPAs) in aqueous solutions, and their in-situ photo-crosslinking at elevated temperatures to afford crosslinked nano-assemblies with hierarchical structures and stabilized helicities. These helical dendronized homopolymers carry cinnamate-cored dendritic oligoethylene glycol (OEG) pendants, which exhibit characteristic thermoresponsive behavior. Their thermal aggregation confers hexagonal packing of the polymer chains, and simultaneously resulting in enhancement of their chiralities. Assisted by radial amphiphilicity and worm-like molecular geometry, these dendronized PPAs form supramolecular twisted fibers, spheroid particles or toroids via thermal aggregation. Through UV photoirradiation above their cloud points (Tcps), cycloaddition of cinnamate moieties from the dendritic pendants promotes intermolecular crosslinking of dendronized PPA chains within the thermal aggregates, and simultaneously, the dynamic morphologies and supramolecular chirality from the dendronized PPAs through thermally induced aggregation can be fixed. In addition, photo-crosslinking can be occurred solely within individual aggregates due to the protection of densely packed dendritic OEGs. Therefore, various crosslinked assemblies from the dendronized homopolymers with tailorable morphologies and stabilized chirality are fabricated by tuning their thermally induced dynamic aggregations followed by in-situ photo-crosslinking. We believe that this work paves a convenient route to fabricate chiral assemblies with stabilized morphologies and fixed chiralities from dynamic helical homopolymers through intermolecular crosslinking, which can be promising for various chiral applications.</abstract><cop>United States</cop><pub>Elsevier Inc</pub><pmid>39128287</pmid><doi>10.1016/j.jcis.2024.08.001</doi><tpages>13</tpages><orcidid>https://orcid.org/0000-0002-0078-3223</orcidid><orcidid>https://orcid.org/0000-0003-1224-366X</orcidid></addata></record>
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ispartof Journal of colloid and interface science, 2025-01, Vol.677 (Pt A), p.928-940
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1095-7103
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source Elsevier ScienceDirect Journals
subjects biocompatible materials
Chiral assembly
crosslinking
cycloaddition reactions
Dendronized polymer
geometry
Helical polymer
Homopolymer assembly
nanomaterials
optical isomerism
photoirradiation
Poly(phenylacetylene)
polymers
Thermoresponsive polymer
title Hierarchical assembly of thermoresponsive helical dendronized poly(phenylacetylene)s through photo-crosslinking of the thermal aggregates
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