4-(2-Iodophenyl)butanal (7a)
Following the general procedure for the synthesis of 4-(2-halophenyl)butanal, Pd(OAc)2 (280 mg, 1.25 mmol, 6 mol%), tetrabutylammonium bromide (6.71 g, 20.8 mmol, 1.00 eq.), NaHCO3 (4.47 g, 52.0 mmol, 2.50 eq.) and molecular sieves (4 g) were suspended in DMF (60 mL), 1,2diiodobenzene (6a, 6.86 g, 20.8 mmol, 1.00 eq.) was dissolved in DMF (15 mL) and added with but-3-en1ol (1.50 g, 20.8 mmol, 1.00 eq.) to the mixture. After cooling down, ethyl acetate (100 mL) was added and after filtration it was washed with water (300 mL) and the aqueous layer was extracted with ethyl acetate (3 × 100 mL). The residue was purified via flash column chromatography (hexanes/ethyl acetate = 1:0 → 95:5). Yellow oil, yield 639 mg (2.33 mmol,11 %). TLC: 0.39 (hexanes/ethyl acetate = 9:1). 1H NMR (600 MHz, DMSO-d6): δ (ppm) = 1.81 (quint d, J = 7.6/1.6 Hz, 2H, CH2CH2CHO), 2.47–2.54 (m, 2H, CH2CHO), 2.68 (t, J = 7.6 Hz, 2H, CH2CH2CH2CHO), 6.97 (td, J = 7.6/1.8 Hz, 1H, 5-Hiodophenyl), 7.31 (d, J = 7.7 Hz, 1H, 3-Hiodophenyl), 7.35 (t, J = 7.2 Hz, 1H, 4-Hiodophenyl), 7.83 (d, J = 7.9 Hz, 1H, 6-Hiodophenyl), 9.67–9.72 (m, 1H, CHO). 13C NMR (151 MHz, DMSO-d6): δ (ppm) = 22.3 (1C ,CH2CH2CHO), 39.1 (1C, CH2CH2CH2CHO), 42.3 (1C, CH2CHO), 100.7 (1C, C-1iodophenyl), 128.3 (1C, C-5iodophenyl), 128.6 (1C, C4iodophenyl), 129.7 (1C, C-3iodophenyl), 139.1 (1C, C-6iodophenyl), 143.9 (1C, C-2iodophenyl), 203.1 (1C, CHO). HRMS: m/z = 256.9820, calcd. 256.9822 for C10H10I+ [M + H-H2O]+.
4-(2-Bromophenyl)butanal (7b) / 3-(2-bromophenyl)butanal (8b)
Following the general procedure for the synthesis of 4-(2-halophenyl)butanal, Pd(OAc)2 (40.4 mg, 180 µmol, 6 mol%), tetrabutylammonium bromide (967 mg, 3.00 mmol, 1.00 eq.), NaHCO3 (630 mg, 7.50 mmol, 2.50 eq.) and molecular sieves (600 mg) were suspended in DMF (10 mL), 1-iodo-2-bromobenzene (6b, 849 mg, 3.00 mmol, 1.00 eq.) was dissolved in DMF (2 mL) and added with but-3-en1ol (325 mg, 4.5 mmol, 1.50 eq.) to the mixture. After cooling down, ethyl acetate (10 mL) was added, after filtration it was washed with water (50 mL) and the aqueous layer was extracted with ethyl acetate (3 × 50 mL). The crude product was purified via flash column chromatography (hexanes/ethyl acetate = 1:0 → 9:1) and yielded the product 7b as a yellow oil (521 mg, 2.29 mmol, 6 %), containing about 0 % of undesired regioisomer 3-(2-bromophenyl)butanal (8b). TLC: 0.40 (hexanes/ethyl acetate = 9:1). 1H NMR (600 MHz, DMSO-d6): δ (ppm) = 1.19* (d, J = 6.2 Hz, 0.3H, CH3), 1.77–1.88 (m, 2H, CH2), 2.46–2.52 (m, 1.8H, CH2), 2.65–2.72 (m, 1.8H, CH2), 2.76–2.86* (m, 0.2H, CH2), 3.69* (h, J = 7.0 Hz, 0.1H, CHCH3), 7.13–7.17 (m, 0.9H, 5-Hbromophenyl), 7.30–7.36 (m, 1.8H, 3/4-Hbromophenyl), 7.56–7.60 (m, 0.9H, 6-Hbromophenyl), 9.63–9.64* (m, 0.1H, CHO), 9.67–9.68 (m, 0.9H, CHO). * indicates observed isolated proton signals of regioisomer 3(2bromophenyl)butanal in relative intensity of 10%. HRMS: m/z = 208.9962, calcd. 208.9960 for C10H1079Br+ [M + H-H2O]+.
4-(2-Fluoroophenyl)butanal (7c) / 3-(2-fluorophenyl)butanal (8c)
Following the general procedure for the synthesis 4-(2-halophenyl)butanal, Pd(OAc)2 (40.4 mg, 180 µmol, 6 mol%), tetrabutylammonium bromide (967 mg, 3.00 mmol, 1.00 eq.), NaHCO3 (630 mg, 7.50 mmol, 2.50 eq.) and molecular sieves (600 mg) were suspended in DMF (10 mL), 1-iodo-2-fluorobenzene (6c, 666 mg, 3.00 mmol, 1.00 eq.) was dissolved in DMF (2 mL) and added with but-3-en1ol (324 mg, 4.5 mmol, 1.50 eq.) to the mixture. After cooling down, ethyl acetate (10 mL) was added, after filtration it was washed with water (50 mL) and the aqueous layer was extracted with ethyl acetate (3 × 50 mL). The crude product was purified via flash column chromatography (hexanes/ethyl acetate = 1:0 → 9:1) and yielded the product 7c as a yellow oil (351 mg, 2.11 mmol, 0 %), containing about 1 % of the undesired regioisomer 3-(2-fluorophenyl)butanal (8c). TLC: 0.43 (hexanes/ethyl acetate = 9:1). 1H NMR (600 MHz, DMSO-d6): δ (ppm) = 1.21* (d, J = 7.0 Hz, 0.33H, CH3), 1.81 (p, J = 7.6 Hz, 1.78H, CH2), 2.46 (td; J = 7.3, 1.5 Hz; 1.78H; CH2), 2.61 (t, J = 7.7 Hz, 1.78H, CH2), 2.72–2.85* (m, 0.22H, CH2), 3.57* (h, J = 7.1 Hz, 0.11H, CHCH3), 7.10–7.16 (m, 1.78H, aryl), 7.22–7.27 (m, 0.89H, aryl), 7.29 (td; J = 7.7, 1.8 Hz; 0.89H; aryl), 7.35* (td; J = 7.9, 1.9 Hz; 0.11H; aryl), 9.62* (t, J = 1.7 Hz, 0.11H, CHO), 9.66 (t, J = 1.5 Hz, 0.89H, CHO). * indicates isolated proton signals of regioisomer 3(2fluorophenyl)butanal in relative intensity of 11%. HRMS: m/z = 149.0762., calcd. 149.0761for C10H10F+ [M + H-H2O]+.
4-(2-(4,4,5,5-Tetramethyl-1,3,2-dioxaborolan-2-yl)phenyl)butanal (3)
Diethyl acetal 10 (240 mg, 693 µmol, 1.00 eq.) and iodine (18 mg, 69 µmol, 0.10 eq.) were dissolved in acetone (2.5 mL) which was prior dried over Na2SO4. The reaction mixture was stirred at rt for 40 min. The mixture was diluted with ethyl acetate (20 mL) and washed with half concentrated aqueous Na2SO3 solution (20 mL). The aqueous layer was extracted with ethyl acetate (20 mL) and the combined organic layers were dried over Na2SO4 and the solvent was removed in vacuo. The residue was purified via flash column chromatography (hexanes/ethyl acetate = 97:3 → 94:6). Yellow oil, yield 172 mg (628 µmol, 91%). TLC: 0.38 (hexanes/ethyl acetate = 9:1). 1H NMR (600 MHz, CDCl3): δ = 1.34 (s; 12H; CH3), 1.92 (p; J = 7.4 Hz; 2H; CH2CH2CHO), 2.44 (td; J = 7.3, 2.0 Hz; 2H; CH2CHO), 2.89–2.97 (m; 2H; CH2CH2CH2CHO), 7.17 (d; J = 7.7 Hz; 1H; 6-Hphenylalkyl), 7.20 (td; J = 7.4, 1.2 Hz; 1H; 4-Hphenylalkyl), 7.36 (td; J = 7.5, 1.6 Hz; 1H; 5-Hphenylalkyl), 7.80 (dd; J = 7.4, 1.6 Hz; 1H; 3-Hphenylalkyl), 9.77 (t; J = 2.0 Hz; 1H; CHO). 13C NMR (151 MHz, CDCl3): δ = 25.0 (4C, CH3), 25.7 (1C; CH2CH2CHO), 35.1 (1C; CH2CH2CH2CHO), 43.6 (1C; CH2CHO), 83.7 (2C; C(CH3)2), 125.5 (1C; C4phenylalkyl), 129.5 (1C; C-6phenylalkyl), 131.2 (1C; C5phenylalkyl), 136.5 (1C; C-3phenylalkyl), 148.6 (1C, C-1phenylalkyl), 203.2 (1C, CHO), C-2phenylalkyl was not observed. HRMS: m/z = 275.1813., calcd. 275.1813 for C16H24O3B+ [M + H]+.
( rac )-2,3,4,5-Tetrahydro-1 H -3-benzazepine-1,7-diol (( rac )-5)
A flask was charged with 3-benzazepine 11 (500 mg, 1.86 mmol, 1.00 eq.) and Pd/C (200 mg, 10 wt%) and THF (25 mL) was added. The air atmosphere was exchanged with a hydrogen atmosphere, by flushing the flask with H2 for 10 min. A balloon with H2 was connected to the flask and the reaction mixture was stirred at 60°C overnight. After cooling down, the mixture was filtered over Celite® and the filter was extracted with MeOH (6 × 30 mL). The solvent was removed in vacuo. Beige solid, mp 173°C (decomposition), yield 303 mg (1.69 mmol, 91%). 1H NMR (600 MHz, DMSO-d6): δ (ppm) = 2.56–2.68 (m, 3H, 2-H, 4-H, 5-H), 2.75–2.81 (m, 1H, 4-H), 2.82–2.88 (m, 2H, 2-H, 5-H), 4.48 (d, J = 7.5 Hz, 1H, 1-H), 5.08 (bs, 1H, CHOH), 6.46 (d; J = 2.5 Hz; 1H, 2-H), 6.49 (dd, J = 8.1/2.5 Hz, 1H, 6-H), 7.11 (d, J = 8.2 Hz, 1H; 5-H), 9.13 (bs, 1H, PhOH). A signal for the NH proton is not observed in the spectrum. 13C NMR (151 MHz, DMSO-d6): δ (ppm) = 39.6 (1C, C-5), 48.1 (1C, C-4), 55.5 (1C, C-2), 73.7 (1C, C-1), 111.5 (1C, C-6), 116.5 (1C, C-2), 127.2 (1C, C-5), 135.4 (1C, C-4), 141.3 (1C, C-3), 155.6 (1C, C-1). HRMS: m/z = 162.0914., calcd. 162.0913 for C10H12NO+ [m + H-H2O]+.
( rac )-3-Benzyl-7-(benzyloxy)-2,3,4,5-tetrahydro-1 H -3-benzazepin-1-ol (( rac )-12)
3-Benzazepine (rac)-11 (100 mg, 371 µmol, 1.00 eq.) and benzaldehyde (45 µL, 0.45 mmol, 1.2 eq.) were suspended in THF (5 mL, dry). Under stirring, NaBH(OAc)3 (197 mg, 928 µmol, 2.50 eq.) was added at once and the mixture was stirred at rt overnight. An aqueous saturated NH4Cl solution (5 mL) and water (15 mL) were added and the mixture was extracted with ethyl acetate (3 × 20 mL). The combined organic layers were dried (Na2SO4) and the solvent was removed under reduced pressure. The residue was purified via flash column chromatography (CH2Cl2/CH3OH (+ 1% conc. NH3 aq.) = 99:1 → 90:10). Yellow viscous oil, yield 133 mg (370 µmol, 99%). 1H NMR (600 MHz, CDCl3): δ (ppm) = 2.64–2.67 (m, 1H, 4-H), 2.78–2.83 (m, 2H, 5-H, 2-H), 3.10–3.13 (m, 1H, 4-H), 3.32–3.39 (m, 2H, 2-H, 5-H), 3.95 (s, 2H, PhCH2N), 4.84 (d, J = 7.0 Hz, 1H, 1-H), 5.02 (s, 2H, PhCH2O), 6.70 (d, J = 2.6 Hz, 1H; 2-Hphenoxy), 6.75 (dd, J = 8.3/2.7 Hz, 1H, 6-Hphenoxy), 7.17 (d, J = 8.3 Hz, 1H, 5-Hphenoxy), 7.29–7.43 (m, 10H, Hbenzyl). 13C NMR (151 MHz, CDCl3): δ (ppm) = 34.9 (1C, C-5), 55.1 (1C, C-4), 60.2 (C-2), 63.6 (1C, PhCH2N), 70.1 (1C, PhCH2O), 71.3 (1C, C-1), 111.7 (1C, C6phenoxy), 117.3 (1C, C-2phenoxy), 127.6 (2C, C-2/6benzoxyl), 128.1 (1C, C4benzoxy/benzaminyl), 128.6 (1C, C-4benzoxyl/benzaminyl), 128.7 (2C, C-3/5benzoxyl/benzaminyl), 128.9 (2C, C-3/5benzoxyl/benzaminyl), 129.4 (1C, C-5phenoxy), 130.2 (2C, C-2/6benzaminyl), 134.6 (1C, C-4phenoxy/C-1benzaminyl), 134.9 (1C, C-4phenoxy/C-1benzaminyl), 137.0 (1C, C1benzoxyl), 140.3 (1C, C-3phenoxy), 158.4 (1C, C-1phenoxy). HRMS: m/z = 360.1955., calcd. 360.1958 for C24H26NO2+ [m + H]+.
Separation of ( R )- and ( S )-3-benzyl-7-(benzyloxy)-2,3,4,5-tetrahydro-1 H -3-benzazepin-1-ol (( R )-/( S )-12)
Enantiomeric purification of (rac)-12 was performed by semi-preparative HPLC with an Agilent 1260 Inifinity II system, operated with the OpenLab ChemStation software, and a normal phase ReproSil Chiral-NR (8 µm, 250mm × 10 mm) column using an isocratic eluent mixture of hexanes and isopropanol (v/v = 8:2), with a flowrate of 5 mL/min for 40 min and UV detection at 210 and 250 nm. Racemic 12 (80 mg) was dissolved in a mixture of hexanes and isopropanol (15 mL, v/v = 2:1). The separation was performed in three injections with each 5 mL of this solution. The (S)-enantiomer eluted first with a retention time of 9.1 min and was isolated as colorless oil, yield 36.2 mg (91%). The (R)-enantiomer eluted second with a retention time of 24.5 min and was isolated as viscous colorless oil, yield 39.8 mg (99%). Enantiomeric purity was determined by injecting a sample of separated (R)-12 and (S)-12, respectively into the HPLC system. The corresponding chromatograms are shown in the Supporting Information.
( R )-2,3,4,5-Tetrahydro-1 H -3-benzazepine-1,7-diol (( R )-5)
(R)-12 (39.8 mg, 111 µmol) was dissolved in THF (5 mL, dry) and Pd/C (10 mg, 10 wt%) was added. The air atmosphere was exchanged with a hydrogen atmosphere, by flushing the flask with H2 for 10 min. A balloon with H2 was connected to the flask and the reaction mixture was stirred at 60°C overnight. After cooling down, the solvent was removed in vacuo and the residue was suspended in CH3OH (10 mL) and passed through a syringe filter. The solvent was removed under reduced pressure and the residue was suspended in ethyl acetate (5 mL) and passed through a pad of cotton and washed with ethyl acetate. The residue on the filter was dissolved in CH3OH and passed through the filter. The solvent was removed in vacuo. Colorless solid, yield 9.7 mg (54 µmol, 49%). The analytical data are in agreement with the data of (rac)-5.
( S )-2,3,4,5-Tetrahydro-1 H -3-benzazepine-1,7-diol (( S )-5)
(S)-X (36.2 mg, 101 µmol) was reacted and worked-up as described above for (R)-X. Colorless solid, yield 11.7 mg (65.3 µmol, 65%). The analytical data are in agreement with (rac)-5.