| Literature DB >> 28684972 |
Adrián A Heredia1, Alicia B Peñéñory1.
Abstract
Alkynyl selenides were synthesized by a straightforward one-pot and three-step methodology, without the need of diselenides as starting reagents, under an oxygen atmosphere and using PEG 200 as the solvent. This procedure involves the in situ generation of dialkyl diselenides through a K3PO4-assisted reaction of an alkyl selenocyanate obtained by a nucleophilic substitution reaction between KSeCN and alkyl halides. Successive reaction with terminal alkynes in the presence of t-BuOK affords the corresponding alkyl alkynyl selenide in moderate to good yields. Finally, this methodology allowed the synthesis of 2-alkylselanyl-substituted benzofuran and indole derivatives starting from convenient 2-substituted acetylenes.Entities:
Keywords: alkynyl selenide; electrophilic cyclization; nucleophilic substitution; potassium selenocyanate; terminal alkynes
Year: 2017 PMID: 28684972 PMCID: PMC5480365 DOI: 10.3762/bjoc.13.92
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1One-pot synthesis of vinyl and alkynyl selenides.
Scheme 2Effect of t-BuOK on the formation of n-octyl alkynyl selenide 5a.
Solvent screening for the one-pot synthesis of selenide 5a.a
| entry | solvent | yield % |
| 1 | DMF | 71 |
| 2c | DMF | 38 |
| 3d | DMF | 41 |
| 4 | MeCN | 47 |
| 5 | NMP | 9 |
| 6 | DMSO | 10 |
| 7 | dioxane | <5 |
| 8 | toluene | 18 |
| 9 | ethanol | 43 |
| 10 | isopropanol | 65 |
| 11 | water | nd |
| 12 | PEG 300 | 63 |
aThe reaction was performed by using: 0.25 mmol of 6a, 1.35 equiv of 2, 3a and K3PO4 and 1.1 equiv of t-BuOK in 2 mL of solvent under O2 atmosphere, unless otherwise indicated. bQuantified by GC with internal standard. nd: not detected. cUnder N2. dOpen to air.
Concentration effects and base screening for the one-pot synthesis of selenide 5a.a
| entry | base | PEG 200 (mL) | yield % |
| 1 | 1 | 61 | |
| 2 | 2 | 71 | |
| 3 | 3 | 84 | |
| 4 | 4 | 80 | |
| 5 | KOH | 3 | 37 |
| 6 | NaOMe | 3 | 55 |
| 7c | CuI/Et3N | 3 | 31 |
| 9d,f | 3 | (56)e,g | |
| 10f,h | 3 | 26i | |
aThe reaction was performed by using: 0.25 mmol of 6a, 1.35 equiv of 2, 3a and K3PO4 and 1.1 equiv of t-BuOK in PEG 200 as solvent under O2 atmosphere, unless otherwise indicated. bQuantified by GC with internal standard. cCuI (10 mol %), 1.1 equiv of Et3N at 100 °C for 24 h under N2 atmosphere. d0.25 mmol of 6a, 1.0 equiv of 2, 3a and K3PO4, and 2.0 equiv of t-BuOK; 6a and t-BuOK were added in the last step. eIsolated yield. fWithout addition of K3PO4. gTogether with R2Se and R2Se2 (35% with a ratio of 1:6). hn-Octyl selenocyanate, prepared by reaction of 3a (0.25 mmol) and 2 (0.25 mmol) in 1 mL of PEG 200, was dropped to a solution of alkynyl anion, obtained by reaction of 6a (0.25 mmol) and t-BuOK (0.25 mmol) in 2 mL of PEG 200 under N2 atmosphere, and heated at 100 °C for 2 h. iTogether with a mixture of R2Se and R2Se2 (74% with a ratio of 1:3).
Scheme 3Effect of reactants concentration on alkynyl selenide formation.
One-pot synthesis of alkynyl selenides 5.a
| entry | R–X | yield % | |
| 1 | 78 | ||
| 2 | 67 | ||
| 3 | MeI | 77 | |
| 4 | 79 | ||
| 5 | 41 | ||
| 6 | 56 | ||
| 7 | nd | ||
| 8 | nd | ||
| 9 | PhCH2Br | nd | |
aThe reaction was performed by using: 0.25 mmol of 6a, 1.0 equiv of 2, 3 and K3PO4 and 2.0 equiv of t-BuOK, in 3 mL PEG 200 as solvent under an O2 atmosphere; 6a and t-BuOK were added in the last step. bIsolated yield, nd: not detected.
One-pot synthesis of alkynyl selenide 5.a
| entry | R, | product | yield %b |
| 1 | Ph | 78 | |
| 2 | 81 | ||
| 3 | 52 | ||
| 4 | 64 | ||
| 5 | 61 | ||
| 6 | nd | ||
| 7 | 53 | ||
| 8 | nd | ||
| 9c | <5d | ||
| 10c | 51 | ||
aThe reaction was performed by using: 0.25 mmol of 6, 1.0 equiv of 2, 3a and K3PO4 and 2.0 equiv of t-BuOK, in 3 mL of PEG 200 as solvent under an O2 atmosphere; 6 and t-BuOK were added in the last step. bIsolated yield, nd: not detected. c3.0 equiv of t-BuOK and stirring at 100 °C for 6 h were used in the last step. dThe main product was 1-ethyl-2-(octylselanyl)-1H-indole (9) in 62% isolated yield.
Scheme 4Synthesis of N-ethyl-2-(n-octylselanyl)-1H-indole (9) and 3-iodo-2-(n-octylselanyl)benzofuran (10).
Comparison of the present method with other reported procedures for the synthesis of 5c from 6a and n-Bu2Se2.
| entry | conditions | yield % | reference |
| 1 | NpsFe3O4 (10 mol %), K2CO3, DMF, 80 °C, 14 h | 51 | [ |
| 2 | NpsCuO (10 mol %), K2CO3, DMSO, 80 °C, 14 h | 79 | [ |
| 3 | InCl3 (10 mol %), Cs2CO3, DMSO, 80 °C, 12 h | 64 | [ |
| 4b | CuI (1 equiv), HMPA, N2, rt, 2 h | 70 | [ |
| 5b | BuSeLi, THF, N2, 0 °C, 1 h | 60 | [ |
| 6c | K3PO4, | 79 | this work |
aIsolated yield. bThe reaction was performed by using 1-bromo-2-phenylacetylene as starting material. cThe reaction was performed by using KSeCN (1.0 equiv) and n-BuBr (1.0 equiv) for the in situ generation of n-Bu2Se2.
Scheme 5Control reactions and mechanistic study.
Scheme 6Proposed mechanism for the formation of selenides 5.
Scheme 7Proposed mechanism for the formation of indole 9.