Synthesis of hypergrafted poly[4-(N,N-diphenylamino)methylstyrene] through tandem anionic-radical polymerization of radical-inimer

In this paper, we present a tandem anionic-radical approach for synthesizing hypergrafted polymers. We prepared 4-(N,N-diphenylamino)methylstyrene (DPAMS) as a new radical-based inimer. Linear PDPAMS was prepared through anionic polymerization. Hypergrafted PDPAMS was synthesized through the self-co...

Full description

Bibliographic Details
Main Authors: Minglu Huang, Jianmin Lu, Bingyong Han, Xianhong Zhang, Wantai Yang
Format: Article
Language:English
Published: Taylor & Francis Group 2017-01-01
Series:Designed Monomers and Polymers
Subjects:
Online Access:http://dx.doi.org/10.1080/15685551.2017.1365577
_version_ 1811269372577054720
author Minglu Huang
Jianmin Lu
Bingyong Han
Xianhong Zhang
Wantai Yang
author_facet Minglu Huang
Jianmin Lu
Bingyong Han
Xianhong Zhang
Wantai Yang
author_sort Minglu Huang
collection DOAJ
description In this paper, we present a tandem anionic-radical approach for synthesizing hypergrafted polymers. We prepared 4-(N,N-diphenylamino)methylstyrene (DPAMS) as a new radical-based inimer. Linear PDPAMS was prepared through anionic polymerization. Hypergrafted PDPAMS was synthesized through the self-condensing vinyl polymerization of DPAMS with linear PDPAMS. The linear backbone of PDPAMS, which incorporated latent radical initiating sites, served as a ‘hyperlinker’ to link hyperbranched side chains. The molecular weights of hypergrafted polymers increased as the length of the linear backbone chain increased. The hypergrafted structure of the resulting polymer was confirmed using a conventional gel permeation chromatograph apparatus equipped with a multiangle light scattering detector, nuclear magnetic resonance, differential scanning calorimetry, and thermogravimetric analysis. This strategy can be applied to synthesize other complex architectures based on hyperbranched polymers by changing the structure of a polymer backbone through anionic polymerization.
first_indexed 2024-04-12T21:40:54Z
format Article
id doaj.art-40b7cbf41d294034ad24dd33b33f1a71
institution Directory Open Access Journal
issn 1568-5551
language English
last_indexed 2024-04-12T21:40:54Z
publishDate 2017-01-01
publisher Taylor & Francis Group
record_format Article
series Designed Monomers and Polymers
spelling doaj.art-40b7cbf41d294034ad24dd33b33f1a712022-12-22T03:15:46ZengTaylor & Francis GroupDesigned Monomers and Polymers1568-55512017-01-0120147648410.1080/15685551.2017.13655771365577Synthesis of hypergrafted poly[4-(N,N-diphenylamino)methylstyrene] through tandem anionic-radical polymerization of radical-inimerMinglu Huang0Jianmin Lu1Bingyong Han2Xianhong Zhang3Wantai Yang4Beijing University of Chemical TechnologyBeijing University of Chemical TechnologyBeijing University of Chemical TechnologyBeijing University of Chemical TechnologyBeijing University of Chemical TechnologyIn this paper, we present a tandem anionic-radical approach for synthesizing hypergrafted polymers. We prepared 4-(N,N-diphenylamino)methylstyrene (DPAMS) as a new radical-based inimer. Linear PDPAMS was prepared through anionic polymerization. Hypergrafted PDPAMS was synthesized through the self-condensing vinyl polymerization of DPAMS with linear PDPAMS. The linear backbone of PDPAMS, which incorporated latent radical initiating sites, served as a ‘hyperlinker’ to link hyperbranched side chains. The molecular weights of hypergrafted polymers increased as the length of the linear backbone chain increased. The hypergrafted structure of the resulting polymer was confirmed using a conventional gel permeation chromatograph apparatus equipped with a multiangle light scattering detector, nuclear magnetic resonance, differential scanning calorimetry, and thermogravimetric analysis. This strategy can be applied to synthesize other complex architectures based on hyperbranched polymers by changing the structure of a polymer backbone through anionic polymerization.http://dx.doi.org/10.1080/15685551.2017.1365577Self-condensing vinyl polymerizationhypergrafted polymerpoly(4-(NN-diphenylamino)methylstyrene)
spellingShingle Minglu Huang
Jianmin Lu
Bingyong Han
Xianhong Zhang
Wantai Yang
Synthesis of hypergrafted poly[4-(N,N-diphenylamino)methylstyrene] through tandem anionic-radical polymerization of radical-inimer
Designed Monomers and Polymers
Self-condensing vinyl polymerization
hypergrafted polymer
poly(4-(N
N-diphenylamino)methylstyrene)
title Synthesis of hypergrafted poly[4-(N,N-diphenylamino)methylstyrene] through tandem anionic-radical polymerization of radical-inimer
title_full Synthesis of hypergrafted poly[4-(N,N-diphenylamino)methylstyrene] through tandem anionic-radical polymerization of radical-inimer
title_fullStr Synthesis of hypergrafted poly[4-(N,N-diphenylamino)methylstyrene] through tandem anionic-radical polymerization of radical-inimer
title_full_unstemmed Synthesis of hypergrafted poly[4-(N,N-diphenylamino)methylstyrene] through tandem anionic-radical polymerization of radical-inimer
title_short Synthesis of hypergrafted poly[4-(N,N-diphenylamino)methylstyrene] through tandem anionic-radical polymerization of radical-inimer
title_sort synthesis of hypergrafted poly 4 n n diphenylamino methylstyrene through tandem anionic radical polymerization of radical inimer
topic Self-condensing vinyl polymerization
hypergrafted polymer
poly(4-(N
N-diphenylamino)methylstyrene)
url http://dx.doi.org/10.1080/15685551.2017.1365577
work_keys_str_mv AT mingluhuang synthesisofhypergraftedpoly4nndiphenylaminomethylstyrenethroughtandemanionicradicalpolymerizationofradicalinimer
AT jianminlu synthesisofhypergraftedpoly4nndiphenylaminomethylstyrenethroughtandemanionicradicalpolymerizationofradicalinimer
AT bingyonghan synthesisofhypergraftedpoly4nndiphenylaminomethylstyrenethroughtandemanionicradicalpolymerizationofradicalinimer
AT xianhongzhang synthesisofhypergraftedpoly4nndiphenylaminomethylstyrenethroughtandemanionicradicalpolymerizationofradicalinimer
AT wantaiyang synthesisofhypergraftedpoly4nndiphenylaminomethylstyrenethroughtandemanionicradicalpolymerizationofradicalinimer