Titanium tungsten coatings for bioelectrochemical applications
Publication: Research - peer-review › Article in proceedings – Annual report year: 2011
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Titanium tungsten coatings for bioelectrochemical applications. / Wierzbicki, Rafal; Amato, Letizia; Łopacińska, J.; Heiskanen, Arto; Emnéus, Jenny; Tenje, M.; Schmidt, Michael Stenbæk; Bøggild, Peter; Mølhave, Kristian; Downard, A.; Baronian, K.
In: Technical Proceedings of the 2011 NSTI Nanotechnology Conference and Expo. Vol. 3 Nano Science and Technology Institute, 2011. p. 252-255.Publication: Research - peer-review › Article in proceedings – Annual report year: 2011
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TY - GEN
T1 - Titanium tungsten coatings for bioelectrochemical applications
A1 - Wierzbicki,Rafal
A1 - Amato,Letizia
A1 - Łopacińska,J.
A1 - Heiskanen,Arto
A1 - Emnéus,Jenny
A1 - Tenje,M.
A1 - Schmidt,Michael Stenbæk
A1 - Bøggild,Peter
A1 - Mølhave,Kristian
A1 - Downard,A.
A1 - Baronian,K.
AU - Wierzbicki,Rafal
AU - Amato,Letizia
AU - Łopacińska,J.
AU - Heiskanen,Arto
AU - Emnéus,Jenny
AU - Tenje,M.
AU - Schmidt,Michael Stenbæk
AU - Bøggild,Peter
AU - Mølhave,Kristian
AU - Downard,A.
AU - Baronian,K.
PB - Nano Science and Technology Institute
PY - 2011
Y1 - 2011
N2 - This paper presents an assessment of titanium tungsten (TiW) coatings and their applicability as components of biosensing systems. The focus is put on using TiW as an electromechanical interface layer between carbon nanotube (CNT) forests and silicon nanograss (SiNG) cell scaffolds. Cytotoxicity, applicability to plasma-enhanced chemical vapor deposition (PECVD) of aligned CNT forests, and electrochemical performance are investigated. Experiments include culturing of NIH3T3 mouse embryonic fibroblast cells on TiW coated silicon scaffolds, CNT growth on TiW substrates with nickel catalyst, and cyclic voltammetric investigation with PBS-buffered potassium hexacyanoferrate (II/III).
AB - This paper presents an assessment of titanium tungsten (TiW) coatings and their applicability as components of biosensing systems. The focus is put on using TiW as an electromechanical interface layer between carbon nanotube (CNT) forests and silicon nanograss (SiNG) cell scaffolds. Cytotoxicity, applicability to plasma-enhanced chemical vapor deposition (PECVD) of aligned CNT forests, and electrochemical performance are investigated. Experiments include culturing of NIH3T3 mouse embryonic fibroblast cells on TiW coated silicon scaffolds, CNT growth on TiW substrates with nickel catalyst, and cyclic voltammetric investigation with PBS-buffered potassium hexacyanoferrate (II/III).
KW - Carbon nanotubes
KW - Scaffolds
KW - Voltammetric investigation
KW - Potassium hexacyanoferrate
KW - Plasma deposition
KW - Cell culture
KW - Biosensing systems
KW - Electrochemical performance
KW - Nanotechnology
KW - Tungsten
KW - Cell scaffold
KW - Interface layer
KW - Mouse embryonic fibroblastss;
KW - Titanium tungsten
KW - Plasma enhanced chemical vapor deposition
KW - Intermetallics
KW - Catalysts
KW - Chemical vapor deposition
KW - Silicon nanogras
KW - Forestry
KW - Titanium
KW - Nickel catalyst
KW - Biosensing
KW - Potassium
KW - Fluidics
KW - Medical nanotechnology
KW - Electrochemistry
KW - Coatings
SN - 9781439871386
VL - 3
BT - Technical Proceedings of the 2011 NSTI Nanotechnology Conference and Expo
T2 - Technical Proceedings of the 2011 NSTI Nanotechnology Conference and Expo
SP - 252
EP - 255
ER -