Detail
Článek
Článek online
FT
Medvik - BMČ
  • Je něco špatně v tomto záznamu ?

A Ru/RuO2-Doped TiO2 Nanotubes as pH Sensors for Biomedical Applications: The Effect of the Amount and Oxidation of Deposited Ru on the Electrochemical Response

. 2021 ; 14 (24) : 7912. [pub] 20211220

Status minimální Jazyk angličtina

Typ dokumentu časopisecké články

Perzistentní odkaz   https://www.medvik.cz/link/bmc25025900

Grantová podpora
NU20-06-00424 MZ0 CEP - Centrální evidence projektů

In the field of orthopedic or dental implants, titanium and its alloys are most commonly used because of their excellent mechanical and corrosion properties and good biocompatibility. After implantation into the patient’s body, there is a high risk of developing bacterial inflammation, which negatively affects the surrounding tissues and the implant itself. Early detection of inflammation could be done with a pH sensor. In this work, pH-sensitive systems based on TiO2-Ru and TiO2-RuO2 combinations were fabricated and investigated. As a base material, Ti-6Al-4V alloy nanostructured by anodic oxidation was used. Ruthenium was successfully deposited on nanotubular TiO2 using cyclic polarization, galvanostatic and potentiostatic mode. Potentiostatic mode proved to be the most suitable. The selected samples were oxidized by cyclic polarization to form a TiO2-RuO2 system. The success of the oxidation was confirmed by XPS analysis. The electrochemical response of the systems to pH change was measured in saline solution using different techniques. The measurement of open circuit potential showed that unoxidized samples (TiO2-Ru) exhibited sub-Nernstian behavior (39.2 and 35.8 mV/pH). The oxidized sample (TiO2-RuO2) containing the highest amount of Ru exhibited super-Nernstian behavior (67.3 mV/pH). The Mott–Schottky analysis proved to be the best method. The use of the electrochemical impedance method can also be considered, provided that greater stability of the samples is achieved.

Citace poskytuje Crossref.org

000      
00000naa a2200000 a 4500
001      
bmc25025900
003      
CZ-PrNML
005      
20251212152602.0
007      
ta
008      
251210s2021 ||| f 000 0|eng||
009      
AR
024    7_
$a 10.3390/ma14247912 $2 doi
040    __
$a ABA008 $b cze $d ABA008 $e AACR2
041    0_
$a eng
100    1_
$a Macháčková, Nikola $u Department of Metals and Corrosion Engineering, Faculty of Chemical Technology, University of Chemistry and Technology in Prague, Technická 5, 166 28 Prague, Czech Republic
245    10
$a A Ru/RuO2-Doped TiO2 Nanotubes as pH Sensors for Biomedical Applications: The Effect of the Amount and Oxidation of Deposited Ru on the Electrochemical Response
520    9_
$a In the field of orthopedic or dental implants, titanium and its alloys are most commonly used because of their excellent mechanical and corrosion properties and good biocompatibility. After implantation into the patient’s body, there is a high risk of developing bacterial inflammation, which negatively affects the surrounding tissues and the implant itself. Early detection of inflammation could be done with a pH sensor. In this work, pH-sensitive systems based on TiO2-Ru and TiO2-RuO2 combinations were fabricated and investigated. As a base material, Ti-6Al-4V alloy nanostructured by anodic oxidation was used. Ruthenium was successfully deposited on nanotubular TiO2 using cyclic polarization, galvanostatic and potentiostatic mode. Potentiostatic mode proved to be the most suitable. The selected samples were oxidized by cyclic polarization to form a TiO2-RuO2 system. The success of the oxidation was confirmed by XPS analysis. The electrochemical response of the systems to pH change was measured in saline solution using different techniques. The measurement of open circuit potential showed that unoxidized samples (TiO2-Ru) exhibited sub-Nernstian behavior (39.2 and 35.8 mV/pH). The oxidized sample (TiO2-RuO2) containing the highest amount of Ru exhibited super-Nernstian behavior (67.3 mV/pH). The Mott–Schottky analysis proved to be the best method. The use of the electrochemical impedance method can also be considered, provided that greater stability of the samples is achieved.
655    _2
$a časopisecké články $7 D016428
700    1_
$a Jírů, Jitřenka $u Department of Metals and Corrosion Engineering, Faculty of Chemical Technology, University of Chemistry and Technology in Prague, Technická 5, 166 28 Prague, Czech Republic $1 https://orcid.org/0000-0003-3949-3626
700    1_
$a Hybášek, Vojtěch $u Department of Metals and Corrosion Engineering, Faculty of Chemical Technology, University of Chemistry and Technology in Prague, Technická 5, 166 28 Prague, Czech Republic
700    1_
$a Fojt, Jaroslav $u Department of Metals and Corrosion Engineering, Faculty of Chemical Technology, University of Chemistry and Technology in Prague, Technická 5, 166 28 Prague, Czech Republic $1 https://orcid.org/0000-0002-1425-5464
773    0_
$w MED00194074 $t Materials $x 1996-1944 $g Roč. 14, č. 24 (2021), s. 7912
910    __
$a ABA008 $b sig $c signa $y -
990    __
$a 20251202 $b ABA008
999    __
$a min $b bmc $g 2446402 $s 1264098
BAS    __
$a 3 $a PreBMC
BMC    __
$a 2021 $b 14 $c 24 $d 7912 $e 20211220 $i 1996-1944 $m Materials $x MED00194074
GRA    __
$a NU20-06-00424 $p MZ0
LZP    __
$a AZV-2023-Crossref-20251210

Najít záznam

Citační ukazatele

Pouze přihlášení uživatelé

Možnosti archivace

Nahrávání dat ...