Research groups

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Group

Atomic Energy of Canada Limited (AECL)

Chalk River Laboratories

Fuel safety Branch

(Chalk River, Canada)

Commissariat à l'énergie atomique et aux énergies alternatives (CEA)

(Gif sur Yvette, France)

Contact person

Interests/research

Contact

Eötvös Loránd University

Dr. C. Thiriet

Dr. S. Chatain

A. Prof. L. Bencze

Actinides compounds, fission products release behaviour in nuclear fuel

Institute of Chemistry

Dept. of Physical Chemistry

(Budapest, Hungary).

European commission, JRC,

Institute for Transuranium Elements

(Karlsruhe, Germany)

J.Y. Colle

Dr. O. Benes

Forschungszentrum Jülich,

Institute for energy and climat research (IEK-2)

Dr. M. Müller

Dr. D. Sergeev

Dr. D. Kobertz

- Gas phase chemistry, molecules, clusters, and vaporization

- Interface processes (e.g. corrosion, oxidation)

- Synthesis of advanced high temperature bulk materials, composites, and coatings

- Thermodynamic and kinetic measurements (e.g. phase equilibria, thermodynamic data, diffusion coefficients)

- High temperature devices (light sources, combustion, fuel cells)

- Thermodynamic data bases and their use in materials and process modeling

(Jülich, Germany)

IM2NP, CNRS

(Marseille, France)

Indira Gandi Centre for Atomic research

(Kalpakkan, India)

INP Grenoble, SMHT

(Grenoble, France)

Institute Jozef Stefan

(Ljubljana, Slovenia)

Dr. P. Benigni

High Temperature Mass Spectrometry coupled with a multiple cell device for activity measurements.

Thermodynamics of condensed and gaseous phases in the high temperature field: alloys, salts and ceramics.

Recent developments of the method applied to Organo-Metallic compounds for transport and cracking in the microelectronic industry.

Metals and alloys with volatile components (like lead-free solders)

Vaporization and thermodynamic properties of oxides, oxyacid salts, oxide systems and materials (glasses, ceramics and coatings). Optimization of structures of the gaseous salts is carried out with the calculation of their thermodynamic functions. Modeling of thermodynamic properties of melts of oxide systems is developed using semi-empirical and statistical thermodynamic approaches.

Gas circulation in cement industry processes

Multifunctional organics / particulate air pollution

Prof. Dr R. Viswanathan

Dr. T. S. Lakshmi Narasimhan

Dr. I. Nuta

L. Artaud

Dr. A Popovic

Ivanovo State University of Chemistry and Technology

(Ivanovo, Russian Federation)

Masaryk University

Faculty of Science

Department of Chemistry

(Brno, Czech Republic)

Prof. Dr. L. Kudin

Prof. Dr. M. Butman

http://www.isuct.ru/htms/en/

Moscow State University

(Moscow, Russian Federation)

NASA, Glenn Research Center

(Cleveland, United States)

Dr. P. Broz

Prof. L. Sidorov

Dr. N. Jacobson

Sapienza - University of Rome

Prof. G. Gigli

(Rome, Italy)

St. Petersburg State University

(St. Petersburg, Russian Federation)

Technische Universität Clausthal,

Institut für Nichtmetallische Werkstoffe, Bindemittel und Baustoffe

(Clausthal-Zellerfeld, Germany)

University of Manchester

(Manchester, United Kingdom)

University of Tokyo

Institute of Industrial Science

(Tokyo, Japan)

Wroclaw University of Technology

(Wroklaw, Poland)

Prof. V. Stolyarova

Prof. Dr. A. Wolter

Dr. M. Booth

Dr. T. Nagai

Prof. Dr. M. Miller