| Literature DB >> 25685312 |
Laura K G Ackerman1, Lukiana L Anka-Lufford1, Marina Naodovic1, Daniel J Weix1.
Abstract
The nickel-catalyzed cross-coupling of aryl halides with alkyl radicals derived from alkyl halides has recently been extended to couplings with carbon radicals generated by a co-catalyst. In this study, a new co-catalyst, cobalt phthalocyanine (Co(Pc)), is introduced and demonstrated to be effective for coupling substrates not prone to homolysis. This is because Co(Pc) reacts with electrophiles by an SN2 mechanism instead of by the electron-transfer or halogen abstraction mechanisms previously explored. Studies demonstrating the orthogonal reactivity of (bpy)Ni and Co(Pc), applying this selectivity to the coupling of benzyl mesylates with aryl halides, and the adaptation of these conditions to the less reactive benzyl phosphate ester and an enantioconvergent reaction are presented.Entities:
Year: 2014 PMID: 25685312 PMCID: PMC4323094 DOI: 10.1039/C4SC03106G
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Fig. 1Comparison of radical co-generation methods in cross-coupling. An electrophile (Ar–X) reacts to form an arylmetal intermediate and the other substrate (R–Y) reacts to form a radical (R˙).
Scheme 1Diarylmethanes from cross-electrophile coupling: problem (A and B) and mechanism-based solution (C).[18] Ligand = 4,4′-di-tert-butyl-2,2′-bipyridine.
Cross-electrophile coupling of Bn-OH with Ar–X
|
| ||||
| Entry | X | Catalyst | Yield |
|
| 1 | Br | [Ni] only | 3 | 1 : 1 |
| 2 | Br | Co(Pc) only | 0 | ND : 3 |
| 3 | Br | [Ni], Co(Pc) | 73 | 1 : ND |
| 4 | Br | [Ni], CoCl2 | 4 | 4 : 1 |
| 5 | Br | [Ni], NaI (25 mol%) | 25 | 1 : 1 |
| 6 | Br | [Ni], Co(Pc), Mn instead of Zn | 64 | 4 : 1 |
| 7 | Br | NiBr2·3H2O, Co(Pc) | 1 | 1 : 6 |
| 8 | Br | No [Ni] and no Co(Pc) | 0 | 0 : 1 |
| 9 | I | [Ni] only | 71 | 7 : 1 |
| 10 | I | Co(Pc) only | 0 | ND : 1 |
| 11 | I | [Ni], Co(Pc) | 83 | 17 : 1 |
| 12 | I | [Ni], Co(Pc) | 83 | 83 : 1 |
| 13 | I | [Ni], NaI (25 mol%) | 64 | 8 : 1 |
| 14 | I | [Ni], Co(Pc), Mn instead of Zn | 42 | 1.4 : 1 |
Reactions run at 0.25 M in DMA. BnOMs was formed in situ from BnOH, Ms2O (1.44 equiv.), and EtN(i-Pr)2 (1.6 equiv.). See ESI.
[Ni] = 7 mol% NiBr2·3H2O and 5 mol% dtbbpy.[19] Co(Pc) = 1 mol% cobalt phthalocyanine.
Yields and ratios reported as GC area%.
Reaction run at 60 °C.
Reaction complete within 1 h.
Scheme 2Nickel and cobalt co-catalyzed arylation of benzyl mesylates. Reactions performed as in Table 2, footnote a with 7 mol% NiBr2·3H2O, 5 mol% dtbbpy, and 1 mol% Co(Pc). Yield is isolated yield of purified product. See ESI† for details on reaction selectivity. ND = not detected. No Co(Pc) was added to this reaction. 3 mol% Co(Pc) was added to this reaction. Reaction was run at 60 °C.
Reaction with benzyl diethyl phosphate, a less reactive electrophile
|
| |||
| Entry | Co(Pc) (mol %) |
| Yield |
| 1 | 3 | rt | ND |
| 2 | 3 | 40 | ND |
| 3 | 1 | 80 | 3 |
| 4 | 3 | 80 | 36 |
| 5 | 6 | 80 | (70) |
Reactions run at 0.25 M in DMA using pre-formed 6 for 15–22 h. See ESI.
Yield of 3a′ from GC area% data. Yields in parentheses are isolated yields of purified product.
Significant amounts of starting materials remain.
Only byproduct observed by GC analysis was small amounts of benzene from hydrodehalogenation of Ph-Br.
Scheme 3Preliminary enantioconvergent coupling of a secondary benzyl chloride with an aryl bromide. Configuration assigned by comparison of the optical rotation to those reported in the literature.