| Literature DB >> 36014475 |
Na Hye Shin1, Yoo Jin Lim1, Chorong Kim1, Ye Eun Kim1, Yu Ra Jeong1, Hyunsung Cho1, Myung-Sook Park1, Sang Hyup Lee1.
Abstract
The studies on the selective synthesis of dialkyl selenide compounds 1 were presented. Overcoming the complexity and difficulty of selenides (R-Se-R) and/or multiselenides (R-Sen-R; n ≥ 2), we aimed to optimize the reaction condition for the tolerable preparation of sodium selenide (Na2Se) by reducing Se with NaBH4, and then to achieve selective syntheses of dialkyl selenides 1 by subsequently treating the obtained sodium selenide with alkyl halides (RX). Consequently, various dialkyl selenides 1 were efficiently synthesized in good-to-moderate yields. The investigations on reaction pathways and solvent studies were also described.Entities:
Keywords: diorganyl selenide; organoselenium; selenium reduction; sodium borohydride; sodium selenide
Mesh:
Substances:
Year: 2022 PMID: 36014475 PMCID: PMC9414418 DOI: 10.3390/molecules27165224
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.927
Scheme 1Formation of sodium selenide and dibenzyl selenide (1a).
Optimization of the reaction conditions for sodium selenide and dibenzyl selenide 1a a.
|
| |||||
|---|---|---|---|---|---|
| Entry | Na2Se Formation | 1a Formation | Product | Side Product | |
| NaBH4
| Time | Time | 1a | 2a | |
| 1 | 1.0 | 1 | 2 | 25 | 40 |
| 2 | 1.5 | 1 | 2 | 27 | 40 |
| 3 | 2.0 | 0.5 | 1 | 59 | 8 |
| 4 | 1 | 2 | 44 | 34 | |
| 5 | 2 | 2 | 49 | 25 | |
| 6 | 4 | 2 | 28 | 56 | |
| 7 | 8 | 2 | c | 34 | |
| 8 | 3.0 | 0.5 | 1 | 80 | c |
| 9 | 1 | 2 | 87 | 2 | |
| 10 | 2 | 2 | 76 | c | |
| 11 | 4 | 2 | 79 | c | |
| 12 | 8 | 2 | 80 | c | |
a All reactions were run on 1.3 mmol scale of Se (1.0 eq, [c] = 640 mM) in H2O (2 mL) at 25 °C for formation of Na2Se; BnBr (2.4 eq, [c] = 130 mM) in THF (8 mL) at 25 °C for formation of 1a; b Isolated yields; c Trace amount.
Scheme 2The proposed reaction pathways for products 1, and side products 2 and 3.
Synthesis of dialkyl selenides 1a a.
|
| ||||||
|---|---|---|---|---|---|---|
| Entry | Reaction with RX | Product | Yields | |||
| RX | RX | Time | Temp | |||
| 1 b | BnBr | 2.4 | 2 | rt |
| 87 |
| 2 | PhCH2CHBr | 2.4 | 5 | rt |
| 66 |
| 3 | allylBr | 2.4 | 25 | rt |
| 66 |
| 4 | 2.4 | 3 | rt | 93 | ||
| 5 | 2.4 | 3 | rt | 82 | ||
| 6 | 2.4 | 5 | rt | 85 | ||
| 7 | 2.4 | 5 | rt | 85 | ||
| 8 |
| 2.4 | 3 | 50 |
| 50 |
| 9 |
| 2.4 | 8 | 50 |
| 48 |
| 10 |
| 2.4 | 5 | 50 |
| 31 |
| 11 |
| 2.4 | 25 | 50 |
| 35 |
| 12 b |
| 1.0 | 24 | rt |
| 65 |
| 13 b |
| 1.0 | 48 | rt |
| 51 |
a All reactions were run on 1.3 mmol scale of Se (1.0 eq, [c] = 640 mM) in H2O (2 mL) and NaBH4 (3.0 eq) for 1 h at 25 °C for formation of Na2Se; RBr ([c] = 127 mM) in THF (8 mL) for formation of 1; b [c] = 64 mM for formation of 1l and 1m.
Solvent test a.
|
| ||||||
|---|---|---|---|---|---|---|
| Entry | Na2Se Formation | Reaction with BnBr | Product | Side Product | ||
| Solvent | Temp | Time | Time | 1a | 2a | |
| 1 | H2O-THF | 25 | 1 | 2 | 87 | 2 |
| 2 | EtOH | 25 | 1 | 2 | 81 | c |
| 3 | MeCN | 25 | 2 | 2 | 80 | c |
| 4 | THF | 50 | 1 | 48 | 50 | c |
| 5 | DME | 25 | 1 | 47 | 30 | 22 |
a All reactions were run on 1.3 mmol scale of Se (1.0 eq, [c] = 640 mM) and NaBH4 (3.0 eq) at 25 °C for formation of Na2Se; BnBr ([c] = 127 mM) for formation of 1a; b Isolated yields; c Trace amount.
Comparison of the results under H2O-THF and MeCN solvents a.
|
| ||||
|---|---|---|---|---|
| Entry | RX | Product | Yields (%) b | |
| Solvent | Solvent | |||
| 1 | BnBr |
| 87% | 80% |
| 2 | BnCl | 79% | 70% | |
| 3 | PhCH2CH2Br |
| 66% | 20% |
| 4 | PhCH2CH2Cl | 32% | 38% | |
| 5 | 85% | 63% | ||
| 6 | 21% | 21% | ||
| 7 | 85% | 56% | ||
| 8 | 24% | 21% | ||
| 9 |
| 48% | 24% | |
| 10 | 3% | c % | ||
a All reactions were run on 1.3 mmol scale of Se (1.0 eq, [c] = 640 mM) and NaBH4 (3.0 eq) for 1 h at 25 °C for formation of Na2Se; RX ([c] = 127 mM) for formation of 1; b Isolated yields; c Trace amount.