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Vadim G. Kessler

Researcher at Swedish University of Agricultural Sciences

Publications -  298
Citations -  6199

Vadim G. Kessler is an academic researcher from Swedish University of Agricultural Sciences. The author has contributed to research in topics: Alkoxide & Nanoparticle. The author has an hindex of 39, co-authored 284 publications receiving 5262 citations. Previous affiliations of Vadim G. Kessler include Bar-Ilan University & Center for Advanced Materials.

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The structure of the bismuth ethoxide ethanol solvate. A new structural type for octameric alkoxides

TL;DR: The octanuclear complex of bismuth ethoxide ethanol solvate, [Bi(OEt)3]8·(7+x)EtOH (1) has been isolated on crystallization from the ethanol solution of the products from the BiCl3 metathesis with NaOEt as mentioned in this paper.
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Rhenium Nanochemistry for Catalyst Preparation

TL;DR: In this article, a review of synthetic approaches to modern rhenium-based catalysts is presented, where the authors consider the creation of an active center as a process of obtaining a nanoparticle or a molecule, immobilized within a matrix of the substrate, and trace structure-property relationships for these catalysts in relation to such processes as alkylation and isomerization, olefin metathesis, selective oxidation of olefins, methanol to formaldehyde conversion, etc.
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Geometrical Molecular Structure Design Concept in Approach to Homo- and Heterometallic Precursors of Advanced Materials in Sol–Gel Technology

TL;DR: In this article, the authors describe the principles of the Single Source Precursor approach to inorganic materials and introduce the Geometrical Molecular Structure Design Concept (MSDC) based on the choice of a proper molecular structure type for the desired precursor and completing it with ligands providing both the necessary number of donor atoms and the sterical protection of the chosen core.
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Full Tetragonal Phase Stabilization in ZrO₂ Nanoparticles Using Wet Impregnation: Interplay of Host Structure, Dopant Concentration and Sensitivity of Characterization Technique.

TL;DR: It is shown that wet impregnation of ZrO2 nanoparticles with 10% and 20% Eu oxide followed by thermal anneal in air above 500 °C produces full stabilization of the tetragonal phase of ZRO2 without evidencing any phase separation.
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Oxoalkoxides—True precursors of complex oxides

TL;DR: The most important role of oxo-alkoxides in the processes of formation of oxides has been demonstrated using as an example preparation of BaTiO3 from alkoxides.