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Dive into the research topics where I. Mintsouli is active.

Publication


Featured researches published by I. Mintsouli.


Journal of Solid State Electrochemistry | 2013

Pt-Ni carbon-supported catalysts for methanol oxidation prepared by Ni electroless deposition and its galvanic replacement by Pt

I. Mintsouli; Jenia Georgieva; E. Valova; S. Armyanov; Alexandros Kakaroglou; A. Hubin; Oscar Steenhaut; Jean Dille; A. Papaderakis; G. Kokkinidis; S. Sotiropoulos

Pt–Ni particles supported on Vulcan XC72R carbon powder have been prepared by a combination of crystalline Ni electroless deposition and its subsequent partial galvanic replacement by Pt upon treatment of the Ni/C precursor by a solution of chloroplatinate ions. The Pt-to-Ni atomic ratio of the prepared catalyst has been confirmed by EDS analysis to be ca. 1.5:1. No shift of Pt XPS peaks has been observed, indicating no significant modification of its electronic properties, whereas the small shift of the corresponding X-ray diffraction (XRD) peaks indicates the formation of a Pt-rich alloy. No Ni XRD peaks have been observed in the XRD pattern, suggesting the existence of very small pockets of Ni in the core of the particles. The surface electrochemistry of electrodes prepared from the catalyst material suggests the existence of a Pt shell. A moderate increase in intrinsic catalytic activity towards methanol oxidation in acid has been observed with respect to a commercial Pt catalyst, but significant mass specific activity has been recorded as a result of Pt preferential confinement to the outer layers of the catalyst nanoparticles.


Journal of Applied Electrochemistry | 2014

Carbon-supported Pt(Cu) electrocatalysts for methanol oxidation prepared by Cu electroless deposition and its galvanic replacement by Pt

Jenia Georgieva; E. Valova; I. Mintsouli; S. Sotiropoulos; S. Armyanov; Alexandros Kakaroglou; A. Hubin; Oscar Steenhaut; Jean Dille

Bimetallic Pt–Cu carbon-supported catalysts (Pt(Cu)/C) were prepared by electroless deposition of Cu on a high surface area carbon powder support, followed by its partial exchange for Pt; the latter was achieved by a galvanic replacement process involving treatment of the Cu/C precursor with a chloroplatinate solution. X-ray diffraction characterization of the Pt(Cu)/C material showed the formation of Pt-rich Pt–Cu alloys. X-ray photoelectron spectroscopy revealed that the outer layers are mainly composed of Pt and residual Cu oxides, while metallic Cu is recessed into the core of the particles. Repetitive cyclic voltammetry in deaerated acid solutions in the potential range between hydrogen and oxygen evolution resulted in steady-state characteristics similar to those of pure Pt, indicating the removal of residual Cu compounds from the surface (due to electrochemical treatment) and the formation of a compact Pt outer shell. The electrocatalytic activity of the thus prepared Pt(Cu)/C material toward methanol oxidation was compared to that of a commercial Pt/C catalyst as well as of similar Pt(Cu)/C catalysts formed by simple Cu chemical reduction. The Pt(Cu)/C catalyst prepared using Cu electroless plating showed more pronounced intrinsic catalytic activity toward methanol oxidation than its counterparts and a similar mass activity when compared to the commercial catalyst. The observed trends were interpreted by interplay between mere surface area effects and modification of Pt electrocatalytic performance in the presence of Cu, both with respect to methanol oxidation and poisonous CO removal.


Catalysis Today | 2011

Rotating disc electrode studies of borohydride oxidation at Pt and bimetallic Pt–Ni and Pt–Co electrodes

A. Tegou; Sofia Papadimitriou; I. Mintsouli; S. Armyanov; E. Valova; G. Kokkinidis; S. Sotiropoulos


Applied Catalysis B-environmental | 2013

Pt-Cu electrocatalysts for methanol oxidation prepared by partial galvanic replacement of Cu/carbon powder precursors

I. Mintsouli; Jenia Georgieva; S. Armyanov; E. Valova; G. Avdeev; A. Hubin; Oscar Steenhaut; Jean Dille; D. Tsiplakides; S. Balomenou; S. Sotiropoulos


Applied Catalysis B-environmental | 2014

Surface and electrochemical characterisation of a Pt-Cu/C nano-structured electrocatalyst, prepared by galvanic displacement

Bart Geboes; I. Mintsouli; Benny Wouters; Jenia Georgieva; Alexandros Kakaroglou; S. Sotiropoulos; E. Valova; S. Armyanov; Annick Hubin; Tom Breugelmans


Journal of Applied Electrochemistry | 2006

Photoelectrochemical characterisation of thermal and particulate titanium dioxide electrodes

I. Mintsouli; N. Philippidis; I. Poulios; S. Sotiropoulos


Catalysts | 2017

Electrocatalysts Prepared by Galvanic Replacement

A. Papaderakis; I. Mintsouli; Jenia Georgieva; S. Sotiropoulos


Journal of Electroanalytical Chemistry | 2015

Pt(Ni) electrocatalysts for methanol oxidation prepared by galvanic replacement on TiO2 and TiO2–C powder supports

J. Georgieva; E. Valova; I. Mintsouli; S. Sotiropoulos; Dragomir Tatchev; S. Armyanov; A. Hubin; Jean Dille; Armin Hoell; Vikram Singh Raghuwanshi; N. Karanasios; L. Malet


Journal of Electrochemical Science and Engineering | 2012

Platinized titanium dioxide electrodes for methanol oxidation and photo-oxidation

Svetlozar Ivanov; I. Mintsouli; Jenia Georgieva; S. Armyanov; E. Valova; G. Kokkinidis; Ioannis Poulios; S. Sotiropoulos


Applied Surface Science | 2017

Silver deposition on stainless steel container surfaces in contact with disinfectant silver aqueous solutions

M. Petala; V. Tsiridis; I. Mintsouli; N. Pliatsikas; Th. Spanos; P. Rebeyre; Efthymios Darakas; P. Patsalas; G. Vourlias; Margaritis Kostoglou; S. Sotiropoulos; Th. Karapantsios

Collaboration


Dive into the I. Mintsouli's collaboration.

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S. Sotiropoulos

Aristotle University of Thessaloniki

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E. Valova

Bulgarian Academy of Sciences

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S. Armyanov

Bulgarian Academy of Sciences

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Jenia Georgieva

Bulgarian Academy of Sciences

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G. Kokkinidis

Aristotle University of Thessaloniki

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Efthymios Darakas

Aristotle University of Thessaloniki

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M. Petala

Aristotle University of Thessaloniki

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Margaritis Kostoglou

Aristotle University of Thessaloniki

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A. Hubin

Vrije Universiteit Brussel

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Jean Dille

Université libre de Bruxelles

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