Tanţa Spătaru
Romanian Academy
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Publication
Featured researches published by Tanţa Spătaru.
Talanta | 2007
Tanţa Spătaru; Nicolae Spătaru; Akira Fujishima
Boron-doped diamond (BDD) electrodes were used to investigate the possibility of detecting aniline by linear-sweep cathodic stripping voltammetry. It was found that the dimeric species (p-aminodiphenylamine and benzidine) formed by anodic oxidation of aniline during the accumulation period are involved in electrochemically reversible redox processes and, in acidic media, the shape of the stripping voltammetric response is suitable for aniline detection in the micromolar concentration range. The low background current of conductive diamond is an advantage compared to other electrode materials and allows a detection limit of 1muM. Weak adsorption properties and the extreme electrochemical stability are additional advantages of BDD and it was found that, even after long-time measurements, the electrode surface can regain its initial activity by an anodic polarization in the potential region of water decomposition.
Journal of Hazardous Materials | 2010
Tanţa Spătaru; Nicolae Spătaru
A composite obtained by depositing platinum nanoparticles in a polytyramine (PTy) matrix, electrochemically formed on graphite substrate, was used as electrode material for the investigation of phenol oxidation by use of anodic voltammetry. The results show that, in acidic media, the measurement of the oxidation peak current can be used as the basis for a simple, rapid method for the determination of phenol within a concentration range of 0.3-10 mM. A much better resistance to fouling during phenol detection (compared both with smooth platinum and with Pt nanoparticles on bare graphite substrate) is the main advantage of the Pt-PTy composite. These results are also noteworthy because they provide a basis for additional experiments devoted to obtaining new composite materials with improved performances for phenol anodic oxidation.
Journal of The Electrochemical Society | 2008
Nicolae Spătaru; Xintong Zhang; Tanţa Spătaru; Donald A. Tryk; Akira Fujishima
Cyclic voltammetry was used in order to directly deposit hydrous ruthenium oxide (RuO x ·nH 2 O) on conductive diamond substrates. It was found that, at the hydrogen-terminated boron-doped diamond (BDD) surface, the overall deposition process is rather slow compared to the case of metal substrates. Nevertheless, the values estimated for the specific charge and specific capacitance by cyclic voltammetric and chronopotentiometric experiments, respectively, compare favorably to those reported in the literature. Additional advantages of using a BDD support are the excellent stability of the response, the extreme robustness even under severe functioning conditions, and, importantly, negligible substrate effects. It was also observed that RuO x ·nH 2 O deposition at a BDD powder surface greatly enhanced both the specific charge and the specific capacitance. These features strongly recommend the use of conductive diamond powder as a substrate for hydrous ruthenium oxide, particularly in view of possible, electrochemical capacitor applications.
Electrochimica Acta | 2006
Diana Dragoe; Nicolae Spătaru; Ryuji Kawasaki; Ayyakkannu Manivannan; Tanţa Spătaru; Donald A. Tryk; Akira Fujishima
Journal of The Electrochemical Society | 2008
Nicolae Spătaru; Xintong Zhang; Tanţa Spătaru; Donald A. Tryk; Akira Fujishima
Electrochimica Acta | 2009
Tanţa Spătaru; Maria Marcu; Alexandra Banu; Eugen Roman; Nicolae Spătaru
Applied Surface Science | 2013
Tanţa Spătaru; Maria Marcu; Nicolae Spătaru
Journal of Solid State Electrochemistry | 2011
Tanţa Spătaru; Maria Marcu; Loredana Preda; Petre Osiceanu; Jose Maria Calderon Moreno; Nicolae Spătaru
Electrochemistry Communications | 2013
Tanţa Spătaru; Mihai Anastasescu; Nicolae Spătaru; Akira Fujishima
Journal of Power Sources | 2014
Tanţa Spătaru; Petre Osiceanu; Mihai Anastasescu; Greta Pătrinoiu; Cornel Munteanu; Nicolae Spătaru; Akira Fujishima