IrOx-carbon nanotube hybrids: A nanostructured material for electrodes with increased charge capacity in neural systems

被引:34
作者
Carretero, Nina M. [1 ]
Lichtenstein, Mathieu P. [2 ]
Perez, Estela [1 ]
Cabana, Laura [1 ]
Sunol, Cristina [2 ,3 ]
Casan-Pastor, Nieves [1 ]
机构
[1] ICMAB CSIC, Inst Ciencia Mat Barcelona, E-08193 Barcelona, Spain
[2] CSIC, Inst Invest Biomed Barcelona, Inst Invest Biomed August Pi i Sunyer IDIBAPS, Barcelona 08036, Spain
[3] CIBER Epidemiol & Salud Publ, Madrid, Spain
关键词
Hybrids; Neural electrodes; Coatings; Nanostructuring; Nanoscaffold; IRIDIUM OXIDE-FILMS; WATER OXIDATION; THIN-FILMS; ELECTROCHEMICAL CHARACTERIZATION; STIMULATION ELECTRODES; AQUEOUS-ELECTROLYTES; RAMAN-SPECTROSCOPY; METAL-OXIDES; COMPOSITES; BIOCOMPATIBILITY;
D O I
10.1016/j.actbio.2014.06.019
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Nanostructured iridium oxide-carbon nanotube hybrids (IrOx-CNT) deposited as thin films by dynamic electrochemical methods are suggested as novel materials for neural electrodes. Single-walled carbon nanotubes (SWCNT) serve as scaffolds for growing the oxide, yielding a tridimensional structure with improved physical, chemical and electrical properties, in addition to high biocompatibility. In biological environments, SWCNT encapsulation by IrOx makes more resistant electrodes and prevents the nanotube release to the media, preventing cellular toxicity. Chemical, electrochemical, structural and surface characterization of the hybrids has been accomplished. The high performance of the material in electrochemical measurements and the significant increase in cathodal charge storage capacity obtained for the hybrid in comparison with bare IrOx represent a significant advance in electric field application in biosystems, while its cyclability is also an order of magnitude greater than pure IrOx. Moreover, experiments using in vitro neuronal cultures suggest high biocompatibility for IrOx-CNT coatings and full functionality of neurons, validating this material for use in neural electrodes. (C) 2014 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:4548 / 4558
页数:11
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