Synthesis and Structural Studies of Cp* Rhodium and Cp* Iridium Complexes of Picolinic Hydrazine Ligand
Author:
Affiliation:
1. Centre for Advanced Studies in Chemistry; North-Eastern Hill University; Shillong 793 022 India
2. Department of Chemistry; University of Washington; Seattle WA 98195 USA
Publisher
Wiley
Subject
General Chemistry
Reference29 articles.
1. Study of $\boldsymbol{\eta}^{\bf 6}$ - cyclic $\boldsymbol{\pi} $ -perimeter hydrocarbon ruthenium complexes bearing functionalized pyridyl diketones: Isolation of complexes with $\boldsymbol{\kappa}^\textbf{2}$ -N∩O and $\boldsymbol{\kappa}^\textbf{4}$ -N∩O bonding modes of ligands
2. Study of complexes of platinum group metals containing nitrogen bases derived from pyridine aldehydes: Interesting molecular structures with unpredicted bonding modes of the ligands
3. Synthesis and evaluation of new salicylaldehyde-2-picolinylhydrazone Schiff base compounds of Ru(II), Rh(III) and Ir(III) as in vitro antitumor, antibacterial and fluorescence imaging agents
4. Antibacterial, in vitro antitumor activity and structural studies of rhodium and iridium complexes featuring the two positional isomers of pyridine carbaldehyde picolinic hydrazone ligand
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1. Synthesis, crystal structure and hydrogen bonding of a Cp*Rh(III) complex bearing pyridyl azine ligands: a combined experimental and DFT approach;Journal of Coordination Chemistry;2023-06-18
2. Rh(I)/(III)‐N‐Heterocyclic Carbene Complexes: Effect of Steric Confinement Upon Immobilization on Regio‐ and Stereoselectivity in the Hydrosilylation of Alkynes;Chemistry – A European Journal;2021-11-08
3. Half-sandwich d 6 metal complexes with bis(pyridine carboxamide)benzene ligand: Synthesis and spectral analysis;Journal of Molecular Structure;2017-12
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