4.7 Article

Using frustrated Lewis pairs to explore C-F bond activation

Journal

DALTON TRANSACTIONS
Volume 49, Issue 4, Pages 1319-1324

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c9dt04588k

Keywords

-

Funding

  1. NSERC of Canada

Ask authors/readers for more resources

Our interest in C-F bond activation prompted an investigation of the reactions of PhC(O)CF3 with a superbasic proazaphosphatrane (Verkade's base) and a corresponding FLP. The reaction of PhC(O)CF3 with P(MeNCH2CH2)(3)N in a 2:1 ratio generates [FP(NMeCH2CH2)(3)N][PhC(O)CF2COCF3Ph]. While this salt was not isolable, the anion could be derivatized to allow the isolation of [PhC(O)CF2C(OSiMe(2)tBu)CF3Ph], 1. To further probe this C-F bond activation, the FLP P(MeNCH2CH2)(3)N/BPh3 was allowed to react with PhC(O)CF3, which afforded the salt [PhC(CF2)OP(MeNCH2CH2)(3)N][FBPh3], 2. Insights into the mechanism of the reaction of the proazaphosphatrane with PhC(O)CF3 have emerged from the reactivity of 2 and these have been augmented by DFT computations. Salt 2 could be readily converted to the triflate derivative 3, which was a viable synthon for further C-F bond reactivity. Sequential reaction with Na[HBEt3] afforded the salts [PhC(CF(H))OP(MeNCH2CH2)(3)N][O3SCF3], 4 and [PhC(CH2)OP(MeNCH2CH2)(3)N][O3SCF3], 5. Interestingly, the formation of 5 contrasts with the formation of [HP(MeNCH2CH2)(3)N][PhC(CH2)OB(C6F5)(3)], 6 observed following the reaction of the FLP P(MeNCH2CH2)(3)N/B(C6F5)(3) with PhC(O)Me. Thus these differing FLP protocols provide avenues to salts containing either an enolate derived cation or anion.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.7
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available