| Literature DB >> 32110316 |
Gianpiero Cera1, Nicola Della Ca'1, Giovanni Maestri1.
Abstract
The combination of a Pd(0) complex with benzoic acid in the presence of D2O enables the synthesis of valuable families of highly deuterated organics through elaborate sequential reactions. The catalytic system can convert 2-butyne fragments into the corresponding d-dienamides, which can then readily deliver labeled polycyclic quinone motifs. Propargylated tryptamines lead to formation of highly enriched tetrahydrocarbolines through the C-H activation of their unprotected indole ring. Mechanistic studies reveal the ordered series of events that regulate the outcome of these complex reactions, which include multiple, sequential and selective H/D scrambling from the cheapest and safest deuterium source. This journal is © The Royal Society of Chemistry 2019.Entities:
Year: 2019 PMID: 32110316 PMCID: PMC6979390 DOI: 10.1039/c9sc03682b
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Present one-pot approach to complex, polydeuterated organics.
Scheme 2Redox neutral strategies for the deuteration of C(sp2)–H bonds.
Optimization of reaction conditions
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| Entry | Ligand | Acid (eq.) | [D]- | D |
| 1 | PCy3 | AcOD (5) | 78 | 34, 42, 58, 50 |
| 2 | PCy3 | AcOD (10) | 72 | 32, 43, 64, 50 |
| 3 | PCy3 | AcOD (20) | 66 | 27, 68, 83, 79 |
| 4 | PCy3 | AcOD (35) | <10 | — |
| 5 | PCy3 | BzOH (0.1) | 65 | 7, 75, 91, 63 |
| 6 | A | BzOH (0.1) | <10 | — |
| 7 | B | BzOH (0.1) | — | — |
| 8 | PCy3 | BzOH (0.1) | 39 | 4, 65, 87, 50 |
| 9 | PCy3 | BzOH (0.1) | 68 | 12, 88, 89, 93 |
| 10 | PCy3 | BzOH (0.1) | 72 | 8, 75, 88, 77 |
| 11 | PCy3 | BzOH (0.1) | 53 | 6, 41, 91, 33 |
| 12 | PCy3 | BzOH (0.1) | — | — |
| 13 | PCy3 | — | — | — |
Conditions: 1a (0.2 mmol), Pd(PPh3)4 (0.01 mmol), ligand (0.02 mmol), toluene (2.0 ml), 100 °C, yields of isolated product.
With D2O as D source (50 equiv.).
With tetrabutylammonium benzoate (0.7 mmol).
120 °C.
Pd(PPh3)4 (0.02 mmol), PCy3 (0.04 mmol).
In 1,4-dioxane.
Without [Pd]. A = sodium 3-(diphenylphosphaneyl)benzenesulfonate. B = 2-(diphenylphosphaneyl)benzenesulfonic acid.
Fig. 1Catalytic synthesis of d-dienes 2.
Scheme 3Directionality of the dual isomerization to d-2.
Scheme 4Access to polycycles d-8via Diels–Alder cycloaddition from d-2.
Fig. 2Catalytic synthesis of d-carbolines 4.
Fig. 3Key 1H-NMR resonances through time.
Scheme 5Reactivity of unlabeled products under reaction conditions.
Scheme 6Deuteration of substituted styrenes.
Scheme 7Proposed mechanistic rationale.