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Copper complexes of heterocyclic thioamides and related ligands

Eric S. Raper
- 01 Jan 1994 - 
- Vol. 129, pp 91-156
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TLDR
In this paper, a detailed discussion of the structural aspects of these species based upon X-ray data is presented. But emphasis is placed on detailed discussion on the structural properties of the species.
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Copper complexes as anticancer agents

TL;DR: This overview, collecting the most significant strategies adopted in the last ten years to design promising anticancer copper(I,II) compounds, would be a help to the researchers working in this field.
Journal ArticleDOI

Complexes of heterocyclic thionates. Part 1. Complexes of monodentate and chelating ligands

TL;DR: In this article, the effect of deprotonation and coordination on the dimensions of parent heterocyclic thiones, especially those of pyridine-2-thione and benzo-1,3-thiazoline-2.
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Complexes of heterocyclic thionates Part 2: complexes of bridging ligands

TL;DR: The bridging behavior of deprotonated heterocyclic thiones is described in this paper, where anions are effective bridging ligands among binuclear, trinuclear, tetranuclear hexanuclear and polynuclear metallic species.
Journal ArticleDOI

Recent studies in the coordination chemistry of heterocyclic thiones and thionates

TL;DR: Heterocyclic thioamides usually occurring in their thioketo form are referred to as thiones and their corresponding anions as ‘thionates’.
Journal ArticleDOI

Polynuclear transition metal complexes of metal⋯metal-bridging compartmental pyrazolate ligands

TL;DR: In this paper, the structures and properties of di-, oligo- and polynuclear transition metal complexes of substituted pyrazolate (pz) ligands with ligating side arms are reviewed.
References
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Journal ArticleDOI

Complexes of heterocyclic thione donors

TL;DR: The major ligand abbreviations for heterocyclic thione donors can be found in this paper, where they include triazoline-thiones, trivalines, and trivaline-trivalines.
Journal ArticleDOI

Thiolato-complexes of the transition metals

TL;DR: In this article, the authors define three types of thiolato-complexes: terminal, monomeric, and sterically hindered, and three-dimensional clusters with tetrahedral metal centres.
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