Literature DB >> 11405482

Phosphinofenchol or metastable phosphorane? Phosphorus derivatives of fenchol.

B Goldfuss1, T Löschmann, F Rominger.   

Abstract

Not the expected phosphinofenchol 1 but phosphorane 2 is obtained after reaction of 2-lithio(diphenylphosphino)benzene with (-)-fenchone. Surprisingly, ONIOM(B3LYP/6-31G*:UFF) computations of 1 and 2 as well as B3LYP analyses of smaller model systems point to a lower thermodynamic stability of phosphoranes relative to their isomeric alkoxyphosphines. An analogue inherent instability is computed for the methylphosphorane 10, which is also synthesized and characterized by X-ray analysis. Decreasing ring size in cyclic phosphoranes, that is, from five- to four-membered ring systems, destabilizes cyclic phosphoranes even more. This computational prediction is verified experimentally by reaction of lithiomethyl(diphenylphosphine) with (-)-fenchone and subsequent isolation of the corresponding phosphinofenchol. Protonation or alkylation of phosphoranide intermediates can account for the formation of metastable phosphoranes.

Entities:  

Year:  2001        PMID: 11405482     DOI: 10.1002/1521-3765(20010504)7:9<2028::aid-chem2028>3.0.co;2-y

Source DB:  PubMed          Journal:  Chemistry        ISSN: 0947-6539            Impact factor:   5.236


  2 in total

1.  A superior P-H phosphonite: asymmetric allylic substitutions with fenchol-based palladium catalysts.

Authors:  Bernd Goldfuss; Thomas Löschmann; Tina Kop-Weiershausen; Jörg Neudörfl; Frank Rominger
Journal:  Beilstein J Org Chem       Date:  2006-03-30       Impact factor: 2.883

2.  An unusually stable chlorophosphite: What makes BIFOP-Cl so robust against hydrolysis?

Authors:  Roberto Blanco Trillo; Jörg M Neudörfl; Bernd Goldfuss
Journal:  Beilstein J Org Chem       Date:  2015-03-04       Impact factor: 2.883

  2 in total

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