Convenient syntheses of fullerynes for ‘clicking’ into fullerene polymers

Alkyne-functionalized fullerenes (fullerynes) were designed and conveniently synthesized via Bingel reaction in one step with high yields. They were used to react with azido-functionalized polystyrene (PS) via Huisgen [3 + 2] cycloaddition ‘click’ chemistry to form two fullerene polymers: one with C...

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Main Authors: Fu-Ai Teng, Yanli Guo, Jianping He, Yong Zhang, Zhewen Han, Hui Li
Format: Article
Language:English
Published: Taylor & Francis Group 2017-01-01
Series:Designed Monomers and Polymers
Subjects:
Online Access:http://dx.doi.org/10.1080/15685551.2016.1256462
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spelling doaj-5f537c39f02a4a8e888b1c15f229947c2020-11-25T01:48:35ZengTaylor & Francis GroupDesigned Monomers and Polymers1568-55512017-01-0120128329210.1080/15685551.2016.12564621256462Convenient syntheses of fullerynes for ‘clicking’ into fullerene polymersFu-Ai Teng0Yanli Guo1Jianping He2Yong Zhang3Zhewen Han4Hui Li5East China University of Science and TechnologyEast China University of Science and TechnologyEast China University of Science and TechnologyEast China University of Science and TechnologyEast China University of Science and TechnologyEast China University of Science and TechnologyAlkyne-functionalized fullerenes (fullerynes) were designed and conveniently synthesized via Bingel reaction in one step with high yields. They were used to react with azido-functionalized polystyrene (PS) via Huisgen [3 + 2] cycloaddition ‘click’ chemistry to form two fullerene polymers: one with C60 tethered to the end of a PS chain (C60-1PS) and the other with C60 tethered at the junction point of two PS chains of identical molecular weight (C60-2PS). The fullerene polymers were characterized by 1H NMR, 13C NMR, FT-IR, MALDI-TOF mass spectrometry and SEC. The results showed that the fullerene polymers are well-defined with narrow polydispersity and high fullerene functionality. Besides, aggregation of C60 in THF was observed in the SEC traces. The optical properties of the fullerene polymers were studied by UV–Vis absorption spectroscopy, and the results suggested that the PS chain(s) on the fullerene core has no remarkable effect on the optic property of C60. The thermal properties of the fullerene polymers were studied by TGA and DSC, and the results indicated that the two fullerene polymers with different C60 content and distinct molecular topology may have different self-assemble architectures in the solid state. The well-defined fullerene polymers can be used as model compounds to study the self-assemble architecture of shape amphiphiles based on polymer-tethered molecular nanoparticles.http://dx.doi.org/10.1080/15685551.2016.1256462Fullerene polymerBingel reaction‘click’ chemistryshape amphiphiles
collection DOAJ
language English
format Article
sources DOAJ
author Fu-Ai Teng
Yanli Guo
Jianping He
Yong Zhang
Zhewen Han
Hui Li
spellingShingle Fu-Ai Teng
Yanli Guo
Jianping He
Yong Zhang
Zhewen Han
Hui Li
Convenient syntheses of fullerynes for ‘clicking’ into fullerene polymers
Designed Monomers and Polymers
Fullerene polymer
Bingel reaction
‘click’ chemistry
shape amphiphiles
author_facet Fu-Ai Teng
Yanli Guo
Jianping He
Yong Zhang
Zhewen Han
Hui Li
author_sort Fu-Ai Teng
title Convenient syntheses of fullerynes for ‘clicking’ into fullerene polymers
title_short Convenient syntheses of fullerynes for ‘clicking’ into fullerene polymers
title_full Convenient syntheses of fullerynes for ‘clicking’ into fullerene polymers
title_fullStr Convenient syntheses of fullerynes for ‘clicking’ into fullerene polymers
title_full_unstemmed Convenient syntheses of fullerynes for ‘clicking’ into fullerene polymers
title_sort convenient syntheses of fullerynes for ‘clicking’ into fullerene polymers
publisher Taylor & Francis Group
series Designed Monomers and Polymers
issn 1568-5551
publishDate 2017-01-01
description Alkyne-functionalized fullerenes (fullerynes) were designed and conveniently synthesized via Bingel reaction in one step with high yields. They were used to react with azido-functionalized polystyrene (PS) via Huisgen [3 + 2] cycloaddition ‘click’ chemistry to form two fullerene polymers: one with C60 tethered to the end of a PS chain (C60-1PS) and the other with C60 tethered at the junction point of two PS chains of identical molecular weight (C60-2PS). The fullerene polymers were characterized by 1H NMR, 13C NMR, FT-IR, MALDI-TOF mass spectrometry and SEC. The results showed that the fullerene polymers are well-defined with narrow polydispersity and high fullerene functionality. Besides, aggregation of C60 in THF was observed in the SEC traces. The optical properties of the fullerene polymers were studied by UV–Vis absorption spectroscopy, and the results suggested that the PS chain(s) on the fullerene core has no remarkable effect on the optic property of C60. The thermal properties of the fullerene polymers were studied by TGA and DSC, and the results indicated that the two fullerene polymers with different C60 content and distinct molecular topology may have different self-assemble architectures in the solid state. The well-defined fullerene polymers can be used as model compounds to study the self-assemble architecture of shape amphiphiles based on polymer-tethered molecular nanoparticles.
topic Fullerene polymer
Bingel reaction
‘click’ chemistry
shape amphiphiles
url http://dx.doi.org/10.1080/15685551.2016.1256462
work_keys_str_mv AT fuaiteng convenientsynthesesoffullerynesforclickingintofullerenepolymers
AT yanliguo convenientsynthesesoffullerynesforclickingintofullerenepolymers
AT jianpinghe convenientsynthesesoffullerynesforclickingintofullerenepolymers
AT yongzhang convenientsynthesesoffullerynesforclickingintofullerenepolymers
AT zhewenhan convenientsynthesesoffullerynesforclickingintofullerenepolymers
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