Please use this identifier to cite or link to this item: http://hdl.handle.net/2080/3614
Title: V IV, VIVO, VVO, and VVO2 Systems: Exploring their Interconversion in Solution, Protein Interactions, and Cytotoxicity
Authors: Dinda, Rupam
Patra, Sushree A.
Sahu, Gurunath
Keywords: Nonoxidovanadium(IV)
Non-Oxido V(IV) system
Protein Interactions
Cytotoxicity
Issue Date: 2021
Citation: 35th Annual conference of OCS andNational Seminar on Frontiers in Chemical Sciences(FCS-2021), MSCB University Baripada, 18-19 December 2021
Abstract: There is a contemporary interest in vanadium chemistry, which stems from the broad range of relevance and application of vanadium in biological as well as industrial processes. Therefore, the development of new vanadium complexes with improved pharmacological activity of current interest. In contrast to the well-known oxidovanadium(IV)/(V)complexes, relatively few non-oxido VIV and VV complexes, the so-called “bare” complexes, have been isolated and structurally characterized. On the other hand, it is well known that, for an oxido and alkoxido vanadium system, the solid-state chemistry may be different from that in solution. In fact, in solution the complexes may undergo ligand exchange, in some cases also redox reactions and/or formation of dimer and oligomers; thus, the main species present in solution may differ from that of the parent solid. Over the past few years, we have been working in the field of vanadium chemistry incorporating several mono and dibasic ligand systems, and have successfully isolated several oxidovanadium(V),1-4 oxido-vanadium(IV),5 mixed valence oxidovanadium(IV,V),3 and some rare stable nonoxido-vanadium(IV) complexes4,6 and accessed their solution chemistry and biological activity. In this presentation I will focus on some of our recent interesting results.
Description: Copyright of this paper is with proceedings publisher
URI: http://hdl.handle.net/2080/3614
Appears in Collections:Conference Papers

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