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Tantalum Nitride-Decorated Titanium with Enhanced Resistance to Microbiologically Induced Corrosion and Mechanical Property for Dental Application

Microbiologically induced corrosion (MIC) of metallic devices/implants in the oral region is one major cause of implant failure and metal allergy in patients. Therefore, it is crucial to develop practical approaches which can effectively prevent MIC for broad clinical applications of these materials...

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Autores principales: Zhang, Yifei, Zheng, Yunfei, Li, Yongliang, Wang, Lixin, Bai, Yanjie, Zhao, Qiang, Xiong, Xiaoling, Cheng, Yan, Tang, Zhihui, Deng, Yi, Wei, Shicheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4479376/
https://www.ncbi.nlm.nih.gov/pubmed/26107177
http://dx.doi.org/10.1371/journal.pone.0130774
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author Zhang, Yifei
Zheng, Yunfei
Li, Yongliang
Wang, Lixin
Bai, Yanjie
Zhao, Qiang
Xiong, Xiaoling
Cheng, Yan
Tang, Zhihui
Deng, Yi
Wei, Shicheng
author_facet Zhang, Yifei
Zheng, Yunfei
Li, Yongliang
Wang, Lixin
Bai, Yanjie
Zhao, Qiang
Xiong, Xiaoling
Cheng, Yan
Tang, Zhihui
Deng, Yi
Wei, Shicheng
author_sort Zhang, Yifei
collection PubMed
description Microbiologically induced corrosion (MIC) of metallic devices/implants in the oral region is one major cause of implant failure and metal allergy in patients. Therefore, it is crucial to develop practical approaches which can effectively prevent MIC for broad clinical applications of these materials. In the present work, tantalum nitride (TaN)-decorated titanium with promoted bio-corrosion and mechanical property was firstly developed via depositing TaN layer onto pure Ti using magnetron sputtering. The microstructure and chemical constituent of TaN coatings were characterized, and were found to consist of a hard fcc-TaN outer layer. Besides, the addition of TaN coatings greatly increased the hardness and modulus of pristine Ti from 2.54 ± 0.20 to 29.88 ± 2.59 GPa, and from 107.19 ± 6.98 to 295.46 ± 19.36 GPa, respectively. Potentiodynamic polarization and electrochemical impedance spectroscopy studies indicated that TaN coating exhibited higher MIC resistance in comparison to bare Ti and TiN-coated coating in two bacteria-containing artificial saliva solutions. Moreover, the biofilm experiment showed that the TaN-decorated Ti sample possessed good antibacterial performance. The SEM and XPS results after biofilm removal demonstrated that TaN film remained its integrity and stability, while TiN layer detached from Ti surface in the bio-corrosion tests, demonstrating the anti-MIC behavior and the strong binding property of TaN coating to Ti substrate. Considering all these results, TaN-decorated Ti material exhibits the optimal comprehensive performance and holds great potential as implant material for dental applications.
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spelling pubmed-44793762015-06-29 Tantalum Nitride-Decorated Titanium with Enhanced Resistance to Microbiologically Induced Corrosion and Mechanical Property for Dental Application Zhang, Yifei Zheng, Yunfei Li, Yongliang Wang, Lixin Bai, Yanjie Zhao, Qiang Xiong, Xiaoling Cheng, Yan Tang, Zhihui Deng, Yi Wei, Shicheng PLoS One Research Article Microbiologically induced corrosion (MIC) of metallic devices/implants in the oral region is one major cause of implant failure and metal allergy in patients. Therefore, it is crucial to develop practical approaches which can effectively prevent MIC for broad clinical applications of these materials. In the present work, tantalum nitride (TaN)-decorated titanium with promoted bio-corrosion and mechanical property was firstly developed via depositing TaN layer onto pure Ti using magnetron sputtering. The microstructure and chemical constituent of TaN coatings were characterized, and were found to consist of a hard fcc-TaN outer layer. Besides, the addition of TaN coatings greatly increased the hardness and modulus of pristine Ti from 2.54 ± 0.20 to 29.88 ± 2.59 GPa, and from 107.19 ± 6.98 to 295.46 ± 19.36 GPa, respectively. Potentiodynamic polarization and electrochemical impedance spectroscopy studies indicated that TaN coating exhibited higher MIC resistance in comparison to bare Ti and TiN-coated coating in two bacteria-containing artificial saliva solutions. Moreover, the biofilm experiment showed that the TaN-decorated Ti sample possessed good antibacterial performance. The SEM and XPS results after biofilm removal demonstrated that TaN film remained its integrity and stability, while TiN layer detached from Ti surface in the bio-corrosion tests, demonstrating the anti-MIC behavior and the strong binding property of TaN coating to Ti substrate. Considering all these results, TaN-decorated Ti material exhibits the optimal comprehensive performance and holds great potential as implant material for dental applications. Public Library of Science 2015-06-24 /pmc/articles/PMC4479376/ /pubmed/26107177 http://dx.doi.org/10.1371/journal.pone.0130774 Text en © 2015 Zhang et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Zhang, Yifei
Zheng, Yunfei
Li, Yongliang
Wang, Lixin
Bai, Yanjie
Zhao, Qiang
Xiong, Xiaoling
Cheng, Yan
Tang, Zhihui
Deng, Yi
Wei, Shicheng
Tantalum Nitride-Decorated Titanium with Enhanced Resistance to Microbiologically Induced Corrosion and Mechanical Property for Dental Application
title Tantalum Nitride-Decorated Titanium with Enhanced Resistance to Microbiologically Induced Corrosion and Mechanical Property for Dental Application
title_full Tantalum Nitride-Decorated Titanium with Enhanced Resistance to Microbiologically Induced Corrosion and Mechanical Property for Dental Application
title_fullStr Tantalum Nitride-Decorated Titanium with Enhanced Resistance to Microbiologically Induced Corrosion and Mechanical Property for Dental Application
title_full_unstemmed Tantalum Nitride-Decorated Titanium with Enhanced Resistance to Microbiologically Induced Corrosion and Mechanical Property for Dental Application
title_short Tantalum Nitride-Decorated Titanium with Enhanced Resistance to Microbiologically Induced Corrosion and Mechanical Property for Dental Application
title_sort tantalum nitride-decorated titanium with enhanced resistance to microbiologically induced corrosion and mechanical property for dental application
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4479376/
https://www.ncbi.nlm.nih.gov/pubmed/26107177
http://dx.doi.org/10.1371/journal.pone.0130774
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