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V. Dashevskii, A. Baranov, T. Medved', M. Kabachnik (1979)
Conformational influence of phenyl substituents on the complex-forming capability of alkylenediphosphine dioxidesTheoretical and Experimental Chemistry, 15
L. Pauling (1947)
Atomic Radii and Interatomic Distances in MetalsJournal of the American Chemical Society, 69
P. Binger, R. Köster (1974)
Organo-1,2-PhosphaboreteneJournal of Organometallic Chemistry, 73
J. Brandon, K. Dixon (1981)
Phosphorus-31 nuclear magnetic resonance studies of phosphido-bridged dinuclear complexes of palladium and platinumCanadian Journal of Chemistry, 59
S. Kuribayashi (1973)
The Crystal and Molecular Structure of meso-2,4-Pentanediol BorateBulletin of the Chemical Society of Japan, 46
W. Kliegel, D. Nanninga, S. Rettig, J. Trotter (1984)
Structural studies of organoboron compounds. XVII. Preparation and crystal and molecular structure of 3a-methyl-2,4,9a-triphenyl-1,2,3a,4,9,9a-hexahydro-1,3,9-trioxa-3a-azonia-2-bora-9a-boratacyclopenta[b]naphthaleneCanadian Journal of Chemistry, 62
The crystal structure of 5,6‐benzo‐4‐diphenylphosphino‐2‐phenyl‐1,3,2‐dioxaborinane 1 indicates the occurrence of an interaction between the π‐systems of the 1,3,2‐dioxaborinane ring and the appropriate phenyl group of the diphenylphosphino group. Complexes of compound 1 with PtCl2, PdCl2, and Cul were synthesized. Compound 1 and its complexes are readily hydrolyzed in solution to give diphenylphosphine and its corresponding complexes (NMR).
Heteroatom Chemistry – Wiley
Published: Jan 1, 1994
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