Synthetic, spectroscopic, computational and structural studies of some 13-vertex ruthenacarboranes
Author:
Publisher
Royal Society of Chemistry (RSC)
Subject
Inorganic Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2005/DT/B500944H
Reference43 articles.
1. Probable formation of 13-atom polyhedral complexes containing B10C2H122- and cobalt
2. Discovery of a triangulated thirteen vertex (1,5,6,1) docosahedron from an X-ray diffraction study of (π-C5H5)Co(π-7,9-B10C2H12)
3. Novel 13-vertex metallocarborane complexes formed by polyhedral expansion of 1,2-dicarba-closo-dodecaborane(12) (1,2-B10C2H12)
4. Synthesis and characterization of the first example of a metallacarborane that incorporates an alkaline-earth metal: the molecular structure of closo-1,1,1,1-(MeCN)4-1,2,4-CaC2B10H12
5. Preparation and characterization of [closo-1,1,1-(MeCN)3-1,2,4-SrC2B10H12]n; the first structural characterization of a polymeric self-assembling metallacarborane
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1. Polyhedral Metallaboranes and Metallacarboranes;Comprehensive Organometallic Chemistry IV;2022
2. Chalcogenolato-bridged dinuclear half sandwich complexes of ruthenium and iridium;Inorganica Chimica Acta;2018-11
3. Synthesis and characterization of diruthenaborane analogues of pentaborane(11) and hexaborane(10);Journal of Organometallic Chemistry;2018-06
4. Synthesis of 13-vertex dimetallacarboranes by electrophilic insertion into 12-vertex ruthenacarboranes;Dalton Transactions;2017
5. 14-Vertex Heteroboranes with 14 Skeletal Electron Pairs: An Experimental and Computational Study;Angewandte Chemie International Edition;2016-06-02
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