1156464-25-3Relevant academic research and scientific papers
Fluorinated boroxin-based anion receptors for lithium ion batteries: Fluoride anion binding, ab initio calculations, and ionic conductivity studies
Nair, Nanditha G.,Blanco, Mario,West, William,Weise, F. Christoph,Greenbaum, Steve,Prakash, V. Reddy
, p. 5918 - 5926 (2009)
Novel fluorinated boroxines, tris(2,6-difluorophenyl)boroxin (DF), tris(2,4,6-trifluorophenyl)boroxin (TF), and tris(pentafluorophenyl)boroxin (PF), have been investigated for potential applications in lithium ion batteries through fluoride anion binding,
Polyfluoroorganoboron-oxygen compounds. 1: Polyfluorinated aryl(dihydroxy)boranes and tri(aryl)boroxins
Frohn,Adonin,Bardin,Starichenko
, p. 2827 - 2833 (2008/10/08)
A general preparative procedure for polyfluorinated aryl(dihydroxy)boranes C6H5-nFnB(OH)2 (n = 3 - 5) is described. Polyfluorinated aryl(dihydroxy)boranes are easily dehydrated to the corresponding tri(aryl)boroxins (C6H5-nFnBO)3 by thermal or chemical treatment. The property of the acids C6H5-nFnB(OH)2 to condensate depends on the number and on the position of the fluorine atoms in the aryl group. Examples of both classes of boron compounds were isolated as pure individuals and characterized by multinuclear NMR spectroscopy.
