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Titlebook: Metal-Ligand Interactions; Molecular, Nano-, Mi Nino Russo,Dennis R. Salahub,Malgorzata Witko Conference proceedings 2003 Springer Science+

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Metal-DNA Interactions,, Na., K., Mg., Ca., Fe., Cu. are beneficial and essential for cells and the organism [.–.]. The metals constitute 80% of the elements of the Periodic Table and they are abundant in nature mostly as metal oxides [.].
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DFT-IET Method for Quantum-Classical Systems: Treatment of Solvated Quasiparticles,d electron, singlet bipolaron formation and positronium (electron-positron pair), and their variations caused by changes in temperature, density, and polarity of the solvent. The obtained results are in agreement with available experimental data and simulations.
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Cylindrical-Wave Method in Theory of Pristine and Metal-Doped Nanotubes and Nanowires,nd metal-intercalated carbon and boron-nitrogen nanotubes. Introducing transition-metal atoms into the interior of nanotubes was found to change the character of the conductivity of nanowires, which can be used for creating nanosized heterojunctions.
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Chemical reactivity of free and supported metal clusters,uilding blocks for nanocatalysis. The use of model systems will allow obtaining a fundamental understanding of their physical and chemical properties. Such model systems can consist of free size-selected clusters or clusters stabilized on surfaces. Size selection is important, as the evolution of the cluster’s properties with size is distinct.
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