Cargando…

Polyoxometalate steric hindrance driven chirality-selective separation of subnanometer carbon nanotubes

Subnanometer single-chirality single-walled carbon nanotubes (SWCNTs) are of particular interest in multiple applications. Inspired by the interdisciplinary combination of redox active polyoxometalates and SWCNTs, here we report a cluster steric hindrance strategy by assembling polyoxometalates on t...

Descripción completa

Detalles Bibliográficos
Autores principales: Yang, Xusheng, Zhu, Chao, Zeng, Lianduan, Xue, Weiyang, Zhang, Luyao, Zhang, Lei, Zhao, Kaitong, Lyu, Min, Wang, Lei, Zhang, Yuan-Zhu, Wang, Xiao, Li, Yan, Yang, Feng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9132071/
https://www.ncbi.nlm.nih.gov/pubmed/35685796
http://dx.doi.org/10.1039/d2sc01160c
_version_ 1784713304442142720
author Yang, Xusheng
Zhu, Chao
Zeng, Lianduan
Xue, Weiyang
Zhang, Luyao
Zhang, Lei
Zhao, Kaitong
Lyu, Min
Wang, Lei
Zhang, Yuan-Zhu
Wang, Xiao
Li, Yan
Yang, Feng
author_facet Yang, Xusheng
Zhu, Chao
Zeng, Lianduan
Xue, Weiyang
Zhang, Luyao
Zhang, Lei
Zhao, Kaitong
Lyu, Min
Wang, Lei
Zhang, Yuan-Zhu
Wang, Xiao
Li, Yan
Yang, Feng
author_sort Yang, Xusheng
collection PubMed
description Subnanometer single-chirality single-walled carbon nanotubes (SWCNTs) are of particular interest in multiple applications. Inspired by the interdisciplinary combination of redox active polyoxometalates and SWCNTs, here we report a cluster steric hindrance strategy by assembling polyoxometalates on the outer surface of subnanometer SWCNTs via electron transfer and demonstrate the selective separation of monochiral (6,5) SWCNTs with a diameter of 0.75 nm by a commercially available conjugated polymer. The combined use of DFT calculations, TEM, and XPS unveils the mechanism that selective separation is associated with tube diameter-dependent interactions between the tube and clusters. Sonication drives the preferential detachment of polyoxometalate clusters from small-diameter (6,5) SWCNTs, attributable to weak tube–cluster interactions, which enables the polymer wrapping and separation of the released SWCNTs, while strong binding clusters with large-diameter SWCNTs provide steric hindrance and block the polymer wrapping. The polyoxometalate-assisted modulation, which can be rationally customized, provides a universal and robust pathway for the separation of SWCNTs.
format Online
Article
Text
id pubmed-9132071
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-91320712022-06-08 Polyoxometalate steric hindrance driven chirality-selective separation of subnanometer carbon nanotubes Yang, Xusheng Zhu, Chao Zeng, Lianduan Xue, Weiyang Zhang, Luyao Zhang, Lei Zhao, Kaitong Lyu, Min Wang, Lei Zhang, Yuan-Zhu Wang, Xiao Li, Yan Yang, Feng Chem Sci Chemistry Subnanometer single-chirality single-walled carbon nanotubes (SWCNTs) are of particular interest in multiple applications. Inspired by the interdisciplinary combination of redox active polyoxometalates and SWCNTs, here we report a cluster steric hindrance strategy by assembling polyoxometalates on the outer surface of subnanometer SWCNTs via electron transfer and demonstrate the selective separation of monochiral (6,5) SWCNTs with a diameter of 0.75 nm by a commercially available conjugated polymer. The combined use of DFT calculations, TEM, and XPS unveils the mechanism that selective separation is associated with tube diameter-dependent interactions between the tube and clusters. Sonication drives the preferential detachment of polyoxometalate clusters from small-diameter (6,5) SWCNTs, attributable to weak tube–cluster interactions, which enables the polymer wrapping and separation of the released SWCNTs, while strong binding clusters with large-diameter SWCNTs provide steric hindrance and block the polymer wrapping. The polyoxometalate-assisted modulation, which can be rationally customized, provides a universal and robust pathway for the separation of SWCNTs. The Royal Society of Chemistry 2022-04-25 /pmc/articles/PMC9132071/ /pubmed/35685796 http://dx.doi.org/10.1039/d2sc01160c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Yang, Xusheng
Zhu, Chao
Zeng, Lianduan
Xue, Weiyang
Zhang, Luyao
Zhang, Lei
Zhao, Kaitong
Lyu, Min
Wang, Lei
Zhang, Yuan-Zhu
Wang, Xiao
Li, Yan
Yang, Feng
Polyoxometalate steric hindrance driven chirality-selective separation of subnanometer carbon nanotubes
title Polyoxometalate steric hindrance driven chirality-selective separation of subnanometer carbon nanotubes
title_full Polyoxometalate steric hindrance driven chirality-selective separation of subnanometer carbon nanotubes
title_fullStr Polyoxometalate steric hindrance driven chirality-selective separation of subnanometer carbon nanotubes
title_full_unstemmed Polyoxometalate steric hindrance driven chirality-selective separation of subnanometer carbon nanotubes
title_short Polyoxometalate steric hindrance driven chirality-selective separation of subnanometer carbon nanotubes
title_sort polyoxometalate steric hindrance driven chirality-selective separation of subnanometer carbon nanotubes
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9132071/
https://www.ncbi.nlm.nih.gov/pubmed/35685796
http://dx.doi.org/10.1039/d2sc01160c
work_keys_str_mv AT yangxusheng polyoxometalatesterichindrancedrivenchiralityselectiveseparationofsubnanometercarbonnanotubes
AT zhuchao polyoxometalatesterichindrancedrivenchiralityselectiveseparationofsubnanometercarbonnanotubes
AT zenglianduan polyoxometalatesterichindrancedrivenchiralityselectiveseparationofsubnanometercarbonnanotubes
AT xueweiyang polyoxometalatesterichindrancedrivenchiralityselectiveseparationofsubnanometercarbonnanotubes
AT zhangluyao polyoxometalatesterichindrancedrivenchiralityselectiveseparationofsubnanometercarbonnanotubes
AT zhanglei polyoxometalatesterichindrancedrivenchiralityselectiveseparationofsubnanometercarbonnanotubes
AT zhaokaitong polyoxometalatesterichindrancedrivenchiralityselectiveseparationofsubnanometercarbonnanotubes
AT lyumin polyoxometalatesterichindrancedrivenchiralityselectiveseparationofsubnanometercarbonnanotubes
AT wanglei polyoxometalatesterichindrancedrivenchiralityselectiveseparationofsubnanometercarbonnanotubes
AT zhangyuanzhu polyoxometalatesterichindrancedrivenchiralityselectiveseparationofsubnanometercarbonnanotubes
AT wangxiao polyoxometalatesterichindrancedrivenchiralityselectiveseparationofsubnanometercarbonnanotubes
AT liyan polyoxometalatesterichindrancedrivenchiralityselectiveseparationofsubnanometercarbonnanotubes
AT yangfeng polyoxometalatesterichindrancedrivenchiralityselectiveseparationofsubnanometercarbonnanotubes