Novel transition metal-main group hybrid cages: synthesis and characterization of [MoAs2Se10]2- and [W2As2Se13]2-

1991 ◽  
Vol 113 (2) ◽  
pp. 710-712 ◽  
Author(s):  
Samuel C. O'Neal ◽  
William T. Pennington ◽  
Joseph W. Kolis
1997 ◽  
Vol 119 (4) ◽  
pp. 756-760 ◽  
Author(s):  
Lawrence R. Sita ◽  
Rimo Xi ◽  
Glenn P. A. Yap ◽  
Louise M. Liable-Sands ◽  
Arnold L. Rheingold

2019 ◽  
Author(s):  
Oriol Planas ◽  
Feng Wang ◽  
Markus Leutzsch ◽  
Josep Cornella

The ability of bismuth to maneuver between different oxidation states in a catalytic redox cycle, mimicking the canonical organometallic steps associated to a transition metal, is an elusive and unprecedented approach in the field of homogeneous catalysis. Herein we present a catalytic protocol based on bismuth, a benign and sustainable main-group element, capable of performing every organometallic step in the context of oxidative fluorination of boron compounds; a territory reserved to transition metals. A rational ligand design featuring hypervalent coordination together with a mechanistic understanding of the fundamental steps, permitted a catalytic fluorination protocol based on a Bi(III)/Bi(V) redox couple, which represents a unique example where a main-group element is capable of outperforming its transition metal counterparts.<br>A main text and supplementary material have been attached as pdf files containing all the methodology, techniques and characterization of the compounds reported.<br>


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