Get this from a library! Chemia fizyczna. [Adam Bielański; Andrzej Barański; et al]. Adam Bielanski, Jerzy Haber. A. Golebiewski, Chemia kwantowa Zwiazköw nieorganicznych(Quantum Chemistry of Inorganic Compounds), Państwowe. Catalysis and Solid State Chemistry. Founded in by Professor Adam Bielański. Currently in the group we can define three sub groups: 1.
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Linked Data More info about Linked Data. Would you also like to submit a review for this item? Two main research methods are applied: You already recently rated this item. Advanced Search Find a Library. Cancel Forgot your password? We use also some other methods: Spectroscopic parameters of the postulated surface sites and reactive species are calculated to be directly compared with available experimental data providing quantitative bridge between the molecular structure of investigated species and their spectroscopic fingerprints.
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Please verify that you are not a robot. Biepanski research interest of our Group covers spectroscopy and surface chemistry, molecular modeling, heterogeneous catalysis as well as chemistry of materials and food chemistry. The E-mail Address es field is required.
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Molecular Structure, 67 J. Home About Help Search. Reviews User-contributed reviews Add a review and share your thoughts with other readers. In our methodology we combine computational spectroscopy with reaction modeling and use of functional model systems capable of mimicking desired functionalities of real catalysts.
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Zeolites chemistry Group 3. The name field is required. The main objects of the investigations are various bulk, micro and mesoporous oxide materials, and nanocatalysts, carbonaceous materials and carbon replicas, as well as synthetic and natural polymers. Karolina Tarach PhD students: Find a copy in the library Finding libraries that hold this item The E-mail Address es you entered is are not in a valid format.
The focus is put on i preparation, characterization and reactivity studies of bulk, nanostructured and porous oxide materials that are functionalized by mono- and polinuclear complexes of transition metal ions, for guiding surface reactions along specific pathways ii investigations into quantitative relationships between electronic and magnetic structure of solids and their reactivity, iii mechanistic studies of simple and cyclic surface reactions associated with catalytic chemistry of small molecules O 2NO xCO xH 2 O, VOC application of spectroscopic techniques, with emphasis on electron paramagnetic resonance, to examination of low symmetry functional and catalytic materials, interfacial spins processes and surface reactivity.
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