[en] Nitinol substrates are coated with thin surface films made of carbon nanotubes (CNTs) and tantalum (Ta), with the aim of fostering their osseointegration aptitudes. Exceptional mechanical and chemical characteristics of CNTs combined with the resistance to corrosion and strong bioactive properties of tantalum allow for the generation of adherent, protective and functional layers on metallic biomaterial platforms. The composite coatings are elaborated on Nitinol through a two-step electrochemical protocol; firstly, through the electrophoretic deposition of phosphonate-modified CNTs and, secondly, with electrodeposition of Ta. As a preliminary step, phosphonate groups, acting, in addition, as specific Ta-capture entities, are introduced on the CNT sidewalls by means of diazonium derivatives, which imply no hard oxidative treatment. X-ray photoelectron spectroscopy as well as scanning and transmission electronic microscopies are used to analyse the chemical composition, structure and morphology of the different layers.
Disciplines :
Chemistry
Author, co-author :
Maho, Anthony ; Facultés Universitaires Notre-Dame de la Paix - Namur - FUNDP > Chimie > CES
Detriche, Simon; Facultés Universitaires Notre-Dame de la Paix - Namur - FUNDP > Chimie > CES
Fonder, Grégory; Facultés Universitaires Notre-Dame de la Paix - Namur - FUNDP > Chimie > CES
Delhalle, Joseph; Facultés Universitaires Notre-Dame de la Paix - Namur - FUNDP > Chimie > CES
Mekhalif, Zineb; Facultés Universitaires Notre-Dame de la Paix - Namur - FUNDP > Chimie > CES
Language :
English
Title :
Electrochemical Co-Deposition of Phosphonate-Modified Carbon Nanotubes and Tantalum on Nitinol
scite shows how a scientific paper has been cited by providing the context of the citation, a classification describing whether it supports, mentions, or contrasts the cited claim, and a label indicating in which section the citation was made.
Bibliography
P. J. F. Harris, Int. Mater. Rev. 2004, 49, 31-43.
J. Cho, A. R. Boccaccini, M. S. P. Shaffer, J. Mater. Sci. 2009, 44, 1934-1951.
S. R. Bakshi, D. Lahiri, A. Agarwal, Int. Mater. Rev. 2010, 55, 41-64.
K. Jiang in Cutting Edge Technology (Ed.: D. Vasileska), InTech, Rijeka, 2010, pp.391-412.
D. Mantovani, JOM-J. Min. Met. Mater. S. 2000, 52, 36-44.
S. A. Shabalovskaya, Biomed. Mat. Eng. 2002, 12, 69-109.
M. Geetha, A. K. Singh, R. Asokamani, A. K. Gogia, Prog. Mater. Sci. 2009, 54, 397-425.
M. H. Elahinia, M. Hashemi, M. Tabesh, S. B. Bhaduri, Prog. Mater. Sci. 2012, 57, 911-946.
L. De Nardo, L. Altomare, B. Del Curto, A. Cigada, L. Draghi in Coatings for biomedical applications (Ed.: M. Driver), Woodhead Publishing Limited, Cambridge, 2012, pp.106-142.
J. Black, Clin. Mater. 1994, 16, 167-173.
Y. Cheng, W. Cai, H. T. Li, Y. F. Zheng, J. Mater. Sci. 2006, 41, 4961-4964.
V. K. Balla, S. Bodhak, S. Bose, A. Bandyopadhyay, Acta Biomater. 2010, 6, 3349-3359.
S. Sirivisoot, T. J. Webster, Nanotechnology 2008, 19, 295101.
M. Musiani, Electrochim. Acta 2000, 45, 3397-3402.
C. T. J. Low, R. G. A. Wills, F. C. Walsh, Surf. Coat. Technol. 2006, 201, 371-383.
Y. Bai, M. P. Neupane, I. S. Park, M. H. Lee, T. S. Bae, F. Watari, M. Uo, Mater. Sci. Eng. C 2010, 30, 1043-1049.
M. F. DeRiccardis, D. Carbone, V. Martina, M. Re, D. Meng, J. A. Roether, A. R. Boccaccini, Key Eng. Mater. 2009, 412, 87-92.
L. Besra, M. Liu, Prog. Mater. Sci. 2007, 52, 1-61.
A. R. Boccaccini, J. Cho, J. A. Roether, B. J. C. Thomas, E. J. Minay, M. S. P. Shaffer, Carbon 2006, 44, 3149-3160.
A. R. Boccaccini, C. Kaya, M. S. P. Shaffer in Electrophoretic Deposition of Nanomaterials (Eds.: J.H. Dickerson, A.R. Boccaccini,), Springer, New York, 2012, pp.157-179.
L. P. Bicelli, B. Bozzini, C. Mele, L. D'Urzo, Int. J. Electrochem. Sci. 2008, 3, 356-408.
T. Schubert, S. Zein El Abedin, A. P. Abbott, K. J. McKenzie, K. S. Ryder, F. Endres in Electrodeposition from Ionic Liquids (Eds.: F. Endres, D. MacFarlane, A. Abbott), Wiley-VCH, Weinheim, 2008, pp.83-123.
D. Tasis, N. Tagmatarchis, A. Bianco, M. Prato, Chem. Rev. 2006, 106, 1105-1136.
Y.-P. Sun, K. Fu, Y. Lin, W. Huang, Acc. Chem. Res. 2002, 35, 1096-1104.
S. Detriche, J. B. Nagy, Z. Mekhalif, J. Delhalle, J. Nanosci. Nanotechnol. 2009, 9, 6015-6025.
D. Brovelli, G. Hähner, L. Ruiz, R. Hofer, G. Kraus, A. Waldner, J. Schlösser, P. Oroszlan, M. Ehrat, N. D. Spencer, Langmuir 1999, 15, 4324-4327.
E. Jaehne, S. Oberoi, H.-J. P. Adler, Prog. Org. Coat. 2008, 61, 211-223.
G. Guerrero, J. G. Alauzun, M. Granier, D. Laurencin, H. Mutin, Dalton Trans. 2013, 42, 12569-12585.
T. Sainsbury, D. Fitzmaurice, Chem. Mater. 2004, 16, 3780-3790.
B. Zhao, H. Hu, S. K. Mandal, R. C. Haddon, Chem. Mater. 2005, 17, 3235-3241.
A. Oki, L. Adams, V. Khabashesku, Y. Edigin, P. Biney, Z. Luo, Mater. Lett. 2008, 62, 918-922.
A. Maho, S. Detriche, J. Delhalle, Z. Mekhalif, Mater. Sci. Eng. C 2013, 33, 2686-2697.
V. Datsyuk, M. Kalyva, K. Papagelis, J. Parthenios, D. Tasis, A. Siokou, I. Kallitsis, C. Galiotis, Carbon 2008, 46, 833-840.
J. L. Bahr, J. M. Tour, Chem. Mater. 2001, 13, 3823-3824.
J. Y. Cai, J. Min, J. McDonnell, J. S. Church, C. D. Easton, W. Humphries, S. Lucas, A. L. Woodhead, Carbon 2012, 50, 4655-4662.
M. Raicopol, L. Necula, M. Ionita, L. Pilan, Surf. Interface Anal. 2012, 44, 1081-1085.
J. F. Moulder, W. F. Stickle, P. E. Sobol, K. D. Bomben in Handbook of X-ray Photoelectron Spectroscopy (Ed.: J. Chastain, J.F. Moulder), Perkin-Emler Corporation, Eden Prairie, 1992, pp.33-195.
T. I. T. Okpalugo, P. Papakonstantinou, H. Murphy, J. McLaughlin, N. M. D. Brown, Carbon 2005, 43, 153-161.
I. Milošev, M. Metikos-Hukovic, Z. Petrovic, Mater. Sci. Eng. C 2012, 32, 2604-2616.
C. Arnould, J. Delhalle, Z. Mekhalif, Electrochim. Acta 2008, 53, 5632-5638.
A. Maho, J. Delhalle, Z. Mekhalif, Electrochim. Acta 2013, 89, 346-358.
L. Reclaru, J.-M. Meyer, Biomaterials 1998, 19, 85-92.
R. A. Guirado-Lopez, M. Sanchez, M. E. Rincon, J. Phys. Chem. C 2007, 111, 57-65.
G. Yang, L. Wang, J. Jia, D. Zhou, D. Li, J. Solid State Electrochem. 2012, 16, 2967-2977.
This website uses cookies to improve user experience. Read more
Save & Close
Accept all
Decline all
Show detailsHide details
Cookie declaration
About cookies
Strictly necessary
Performance
Strictly necessary cookies allow core website functionality such as user login and account management. The website cannot be used properly without strictly necessary cookies.
This cookie is used by Cookie-Script.com service to remember visitor cookie consent preferences. It is necessary for Cookie-Script.com cookie banner to work properly.
Performance cookies are used to see how visitors use the website, eg. analytics cookies. Those cookies cannot be used to directly identify a certain visitor.
Used to store the attribution information, the referrer initially used to visit the website
Cookies are small text files that are placed on your computer by websites that you visit. Websites use cookies to help users navigate efficiently and perform certain functions. Cookies that are required for the website to operate properly are allowed to be set without your permission. All other cookies need to be approved before they can be set in the browser.
You can change your consent to cookie usage at any time on our Privacy Policy page.