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Dive into the research topics where Piia Ereth Kasatkin is active.

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Featured researches published by Piia Ereth Kasatkin.


Journal of Solid State Electrochemistry | 2018

The electrochemical activity of two binary alloy catalysts toward oxygen reduction reaction in 0.1 M KOH

Eneli Härk; Rutha Jäger; Piia Ereth Kasatkin; Priit Möller; Rait Kanarbik; Indrek Tallo; Urmas Joost; Jaan Aruväli; Päärn Paiste; Hua Jiang; Tanja Kallio; Kalle Kirsimäe; Enn Lust

The platinum group metals (Pt, Ir and Ru) and the carbide-derived carbon support with the very high specific surface area were used to synthesise the low noble metal loading Pt-C, IrPt-C and RuPt-C alloy catalysts. The alloying of the platinum group metals in the studied catalysts was proved by the several independent physical characterization methods like: the X-ray diffraction, time of flight secondary ion mass-spectrometry, X-ray photoelectron spectroscopy, scanning and transmission electron microscopy. The electrocatalytic activity toward oxygen reduction reaction of the synthesised catalysts in an alkaline solution was studied and compared with the commercially available Pt-Vulcan. The combined and detail approach using the transmission electron microscopy and inductively coupled plasma mass spectrometry for estimation of the surface area of metal particles is provided. The noticeably higher calculated mass corrected and specific kinetic current density values for Pt-C catalyst were established. For IrPt-C and RuPt-C alloy catalysts, mass corrected current density values are comparable with the commercial Pt-Vulcan. The specific kinetic current density values increase in the following sequence: RuPt-C < IrPt-C < Pt-Vulcan < Pt-C.


Electrochemistry Communications | 2013

Oxygen reduction on molybdenum carbide derived micromesoporous carbon electrode in alkaline solution

Rutha Jäger; Piia Ereth Kasatkin; Eneli Härk; Enn Lust


Journal of The Electrochemical Society | 2014

Investigation of a Carbon-Supported Pt Electrode for Oxygen Reduction Reaction in 0.1M KOH Aqueous Solution

Rutha Jäger; Eneli Härk; Piia Ereth Kasatkin; Enn Lust


Electrochemistry Communications | 2017

Fe-N/C catalysts for oxygen reduction based on silicon carbide derived carbon

Piia Ereth Kasatkin; Rutha Jäger; Eneli Härk; P. Teppor; Indrek Tallo; Urmas Joost; K. Šmits; Rait Kanarbik; Enn Lust


ECS Transactions | 2015

Oxygen Electrocatalysis on High-Surface Area Non-Pt Metal Modified Carbon Catalysts

Eneli Härk; Rutha Jäger; Piia Ereth Kasatkin; Vahur Steinberg; Thomas Romann; Priit Möller; Rait Kanarbik; Jaan Aruväli; Kalle Kirsimäe; Enn Lust


Journal of The Electrochemical Society | 2017

Carbide Derived Carbon Supported Pt Nanoparticles with Optimum Size and Amount for Efficient Oxygen Reduction Reaction Kinetics

Rutha Jäger; Eneli Härk; Piia Ereth Kasatkin; P. Pikma; Urmas Joost; Päärn Paiste; Jaan Aruväli; Tanja Kallio; Hua Jiang; Enn Lust


ECS Transactions | 2015

Oxygen Reduction Reaction in Alkaline Solution: Influence of Catalyst Loading and Carbon Support Characteristics

Piia Ereth Kasatkin; Eneli Härk; Rutha Jäger; Enn Lust


Journal of Electroanalytical Chemistry | 2018

The effect of N precursors in Fe-N/C type catalysts based on activated silicon carbide derived carbon for oxygen reduction activity at various pH values

Rutha Jäger; Piia Ereth Kasatkin; E. Härk; P. Teppor; Tavo Romann; R. Härmas; Indrek Tallo; Uno Mäeorg; Urmas Joost; Päärn Paiste; Kalle Kirsimäe; Enn Lust


233rd ECS Meeting (May 13-17, 2018) | 2018

Novel Fe-N/C Type Catalysts Based on Carbide Derived Carbon for Oxygen Reduction Reaction

Rutha Jäger; Piia Ereth Kasatkin; Patrick Teppor; Eneli Härk; Urmas Joost; Tavo Romann; Indrek Tallo; Rait Kanarbik; Päärn Paiste; Kalle Kirsimäe; Enn Lust


231st ECS Meeting (May 28 - June 1, 2017) | 2017

Influence of the Oxygen Partial Pressure on the Oxygen Reduction Reaction Kinetics for the Low Platinum Loading Catalysts

Rutha Jäger; Piia Ereth Kasatkin; Eneli Härk; Indrek Tallo; Tanja Kallio; Hua Jiang; Jaan Aruväli; Urmas Joost; Päärn Paiste; Rait Kanarbik; Kalle Kirsimäe; Enn Lust

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