Cargando…

A low-temperature operated in situ synthesis of TiC-modified carbon nanotubes with enhanced thermal stability and electrochemical properties

Carbon nanotubes (CNTs) with superior thermal and electrochemical properties are desirable for a large variety of applications. Herein, an in situ synthesis carried out at 1050 °C is proposed for the realization of titanium carbide (TiC) modified CNTs (TiC@CNTs) via a carbothermal treatment of the T...

Descripción completa

Detalles Bibliográficos
Autores principales: Du, Huanhuan, Wang, Yurong, Xiao, Dongyang, Zhang, Yili, Hu, Fangjing, Sun, Leimeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9417096/
https://www.ncbi.nlm.nih.gov/pubmed/36134137
http://dx.doi.org/10.1039/d2na00059h
_version_ 1784776635512258560
author Du, Huanhuan
Wang, Yurong
Xiao, Dongyang
Zhang, Yili
Hu, Fangjing
Sun, Leimeng
author_facet Du, Huanhuan
Wang, Yurong
Xiao, Dongyang
Zhang, Yili
Hu, Fangjing
Sun, Leimeng
author_sort Du, Huanhuan
collection PubMed
description Carbon nanotubes (CNTs) with superior thermal and electrochemical properties are desirable for a large variety of applications. Herein, an in situ synthesis carried out at 1050 °C is proposed for the realization of titanium carbide (TiC) modified CNTs (TiC@CNTs) via a carbothermal treatment of the TiO(2)-coated CNTs deposited by a TALD technology, preserving the structural morphologies of CNT samples. Crystalline and amorphous TiC layers/nanoparticles are observed around the walls of CNTs, serving as a thermal insulation layer to enhance the thermal stability of CNTs. The TiC@CNT sample exhibits a minimal mass loss of 3.1%, which is 20.9% and 82.3% for the TiO(2)@CNT and pristine-CNT samples, respectively. In addition, the TiC@CNT electrode shows good energy storage performances, with a specific capacitance of 2.83 mF cm(−2) at 20 μA cm(−2), which is about 3.5 times higher than that of the pristine-CNT electrode, showing the potential of TiC@CNTs as next-generation electrode materials.
format Online
Article
Text
id pubmed-9417096
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher RSC
record_format MEDLINE/PubMed
spelling pubmed-94170962022-09-20 A low-temperature operated in situ synthesis of TiC-modified carbon nanotubes with enhanced thermal stability and electrochemical properties Du, Huanhuan Wang, Yurong Xiao, Dongyang Zhang, Yili Hu, Fangjing Sun, Leimeng Nanoscale Adv Chemistry Carbon nanotubes (CNTs) with superior thermal and electrochemical properties are desirable for a large variety of applications. Herein, an in situ synthesis carried out at 1050 °C is proposed for the realization of titanium carbide (TiC) modified CNTs (TiC@CNTs) via a carbothermal treatment of the TiO(2)-coated CNTs deposited by a TALD technology, preserving the structural morphologies of CNT samples. Crystalline and amorphous TiC layers/nanoparticles are observed around the walls of CNTs, serving as a thermal insulation layer to enhance the thermal stability of CNTs. The TiC@CNT sample exhibits a minimal mass loss of 3.1%, which is 20.9% and 82.3% for the TiO(2)@CNT and pristine-CNT samples, respectively. In addition, the TiC@CNT electrode shows good energy storage performances, with a specific capacitance of 2.83 mF cm(−2) at 20 μA cm(−2), which is about 3.5 times higher than that of the pristine-CNT electrode, showing the potential of TiC@CNTs as next-generation electrode materials. RSC 2022-05-10 /pmc/articles/PMC9417096/ /pubmed/36134137 http://dx.doi.org/10.1039/d2na00059h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Du, Huanhuan
Wang, Yurong
Xiao, Dongyang
Zhang, Yili
Hu, Fangjing
Sun, Leimeng
A low-temperature operated in situ synthesis of TiC-modified carbon nanotubes with enhanced thermal stability and electrochemical properties
title A low-temperature operated in situ synthesis of TiC-modified carbon nanotubes with enhanced thermal stability and electrochemical properties
title_full A low-temperature operated in situ synthesis of TiC-modified carbon nanotubes with enhanced thermal stability and electrochemical properties
title_fullStr A low-temperature operated in situ synthesis of TiC-modified carbon nanotubes with enhanced thermal stability and electrochemical properties
title_full_unstemmed A low-temperature operated in situ synthesis of TiC-modified carbon nanotubes with enhanced thermal stability and electrochemical properties
title_short A low-temperature operated in situ synthesis of TiC-modified carbon nanotubes with enhanced thermal stability and electrochemical properties
title_sort low-temperature operated in situ synthesis of tic-modified carbon nanotubes with enhanced thermal stability and electrochemical properties
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9417096/
https://www.ncbi.nlm.nih.gov/pubmed/36134137
http://dx.doi.org/10.1039/d2na00059h
work_keys_str_mv AT duhuanhuan alowtemperatureoperatedinsitusynthesisofticmodifiedcarbonnanotubeswithenhancedthermalstabilityandelectrochemicalproperties
AT wangyurong alowtemperatureoperatedinsitusynthesisofticmodifiedcarbonnanotubeswithenhancedthermalstabilityandelectrochemicalproperties
AT xiaodongyang alowtemperatureoperatedinsitusynthesisofticmodifiedcarbonnanotubeswithenhancedthermalstabilityandelectrochemicalproperties
AT zhangyili alowtemperatureoperatedinsitusynthesisofticmodifiedcarbonnanotubeswithenhancedthermalstabilityandelectrochemicalproperties
AT hufangjing alowtemperatureoperatedinsitusynthesisofticmodifiedcarbonnanotubeswithenhancedthermalstabilityandelectrochemicalproperties
AT sunleimeng alowtemperatureoperatedinsitusynthesisofticmodifiedcarbonnanotubeswithenhancedthermalstabilityandelectrochemicalproperties
AT duhuanhuan lowtemperatureoperatedinsitusynthesisofticmodifiedcarbonnanotubeswithenhancedthermalstabilityandelectrochemicalproperties
AT wangyurong lowtemperatureoperatedinsitusynthesisofticmodifiedcarbonnanotubeswithenhancedthermalstabilityandelectrochemicalproperties
AT xiaodongyang lowtemperatureoperatedinsitusynthesisofticmodifiedcarbonnanotubeswithenhancedthermalstabilityandelectrochemicalproperties
AT zhangyili lowtemperatureoperatedinsitusynthesisofticmodifiedcarbonnanotubeswithenhancedthermalstabilityandelectrochemicalproperties
AT hufangjing lowtemperatureoperatedinsitusynthesisofticmodifiedcarbonnanotubeswithenhancedthermalstabilityandelectrochemicalproperties
AT sunleimeng lowtemperatureoperatedinsitusynthesisofticmodifiedcarbonnanotubeswithenhancedthermalstabilityandelectrochemicalproperties