| Literature DB >> 29619197 |
Claudio Bomio1, Mikhail A Kabeshov1, Arthur R Lit1, Shing-Hing Lau1, Janna Ehlert1, Claudio Battilocchio1, Steven V Ley1.
Abstract
By means of computational and experimental mechanistic studies the fundamental role of boroxines in the reaction between diazo compounds and boronic acids was elucidated. Consequently, a selective metal-free carbon-carbon homologation of aryl and vinyl boroxines using TMSCHN2, giving access to TMS-pinacol boronic ester products, was developed.Entities:
Year: 2017 PMID: 29619197 PMCID: PMC5859889 DOI: 10.1039/c7sc02264f
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Reactions of the boronic acid 1 and boroxine 4 with TMS diazomethane 2.
Fig. 1The computed reaction pathway for the coupling between boronic species and TMS diazomethane (R = Ph).
Experimental homologation studies with boronic acid 1 and boroxine 4 using TMSCHN2 (2)
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| Entry | R-BX2 | TMSCHN2 | Time | DIPEA | H2O | Yield |
| 1 | RB(OH)2 | 1.03 eq. | 1 h | — | — | 1% : 43% : 48% |
| 2 | (RBO)3 | 3.10 eq. | 29 h | — | — | 75% : 0% : 10% |
| 3 | RB(OH)2 | 1.03 eq. | 15 h | 2.1 eq. | — | 2% : 40% : 51% |
| 4 | RB(OH)2 | 1.03 eq. | 10 h | 2.1 eq. | 2.0 eq. | 0% : 14% : 83% |
| 5 | RB(OH)2 | 1.03 eq. | 65 h | 6.0 eq. | — | 2% : 42% : 47% |
| 6 | RB(OH)2 | 1.03 eq. | 23 h | 6.0 eq. | 2.0 eq. | 0% : 16% : 80% |
| 7 | RB(OH)2 | 1.03 eq. | 1 h | — | 2.0 eq. | 0% : 19% : 78% |
| 8 | (RBO)3 | 3.10 eq. | 67 | 6.0 eq. | — | 80% : 0% : 17% |
NMR yields. R = 4-MeOPh.
Time required for full disappearance of TMSCHN2.
TMSCHN2 not fully consumed.
Fig. 2Computed reactivities of organoboron reagents towards TMS diazomethane.
Optimisation of the TMS homologation with boroxines
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| Entry | Solvent |
| Time | DIPEA | Yield |
| 1 | CH2Cl2/THF (4 : 1) | 24 °C | 29 h | — | 75 |
| 2 | Toluene | 60 °C | 3 h | — | 78 |
| 3 | Toluene | 60 °C | 3 h | 3.0 eq. | 88% |
| 4 | Toluene | 85 °C | 1 h | 3.0 eq. | 87% |
| 5 | Toluene | 85 °C | 1 h | 3.6 eq. | 93% |
| 6 | Toluene | 85 °C | 1 h | 3.6 eq. | 50 |
1.03 eq. TMSCHN2 per boron atom.
NMR yield.
Aldehyde formation observed.
Reaction performed with boronic acid 1.
Scheme 2Scope table of the homologation reaction using TMSCHN2 and boroxines. Reaction performed without DIPEA. General comment: TMS-boroxine intermediates are prone to protodeboration and oxidation and can therefore not be isolated.
Fig. 3Yields of scaled up reactions (0.1 mol). Reaction performed without DIPEA.