Molecules 2010, 15
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(C-O); 1H-NMR (400 MHz, CD3CN) δ: 8.47 (d, 1H, Jb,f = 1.6 Hz, H-b), 8.10 (dd, 1H, Jf,b = 1.6 Hz, Jf,e
= 8.1 Hz, H-f), 7.74 (d, 1H, Je,f = 8.1 Hz, H-e), 7.44 (s broad, 1H, NH), 5.45 (s, 2H, -CH2OAc), 4.62
(d, 1H, J1,2 = 3.7 Hz, H-1), 3.85 (d, 1H, J = 4.2 Hz, -OH), 3.65-3.58 (m, 3H, H-2, H-3 or H-4 and -
OH), 3.50-3.45 (m, 1H, H-5), 3.32-3.29 (m, 5H, H-6 or H-6’, -OH and –OCH3), 3.12 (td, 1H, J = 8.9
Hz, J = 4.2 Hz, H-4 or H-3), 2.87 (d, 1H, J6,6’ = 7.7 Hz, H-6’ or H-6), 2.11 (s, 3H, -COCH3); 13C-NMR
(100 MHz, CD3CN) δ: 171.27 (C=O), 166.53 (C=O), 148.46 (C-c), 136.18 (C-d), 136.00 (C-f), 133.16
(C-e), 130.27 (C-a), 124.85 (C-b), 100.84 (C-1), 74.56 (C-3), 73.31 (C-2), 72.57 (C-5), 71.31 (C-4),
63.32 (-CH2OAc), 55.58 (-OCH3), 41.83 (C-6), 20.90 (-COCH3).
4-Bromomethyl-3-nitrobenzamide (7) [13]
Silica gel (0.38 g, MerK Kieselgel 60, particle size 0.063-0.200 mm, 70-230 mesh) was mixed with
a solution of ammonium chloride (0.08 g; 1.5 mmol), in water (5.0 mL). Evaporation of water under
reduced pressure gave a dry white powder, which was used as the amine source [21]. Then, the silica-
supported ammonium salt was transferred to a pestle and mortar and well-ground with 5 [18,19]
(0.20 g; 0.77 mmol) and TsCl (0.15 g; 0.78 mmol). To this mixture was added triethylamine (0.4 g)
and mixed by a spatula. After 5 min, the reaction mixture was washed with 0.02 N solution of HCl
(2 × 15 mL). The aqueous layer was extracted twice with ethyl acetate (20 mL). The combined organic
layers were dried over anhydrous sodium sulfate and the solvent was removed. The crude product was
purified by column chromatography on silica gel using silica gel as the solid support and then eluted
o
with EtOAc/hexane (7:3 v/v) mixture [21]. Yield: 16%; Mp: 117.1-118.7 C; IR (KBr) cm-1: 3406,
1
3178 (N-H),.1653 (C=O), 1531 (ArNO2, N=O assym.), 1343 (ArNO2, N=O sym.); H-NMR
(200 MHz, DMSO-d6) δ: 8.52 (d, 1H, Jb,f = 1.4 Hz, H-b), 8.32 (s broad, 1H, NH), 8.22 (dd, 1H,
Jf,b = 1.4 Hz and Jf,e = 8 Hz, H-f), 7.88 (d, 1H, Je,f = 8 Hz, H-e), 7.74 (s broad, 1H, NH), , 5.08 (s, 2H,
CH2).
N-Benzyl-4-bromomethylbenzamide (8) [13]
A solution of 4-(bromomethyl)benzoic acid [19] (0.40 g; 1.86 mmol) in thionyl chloride (2.2 mL)
and dry chloroform (2 mL) was stirred under reflux for 3 hours. The solvent was removed and the
obtained residue (0.43 g; 1.84 mmol) was dissolved in THF (1 mL) and dichloromethane (1 mL) and
added dropwise to a mixture of benzylamine (0.20 mL; 1.86 mmol) and triethylamine (0.29 mL,
2.10 mmol) in dry THF (1 mL) cooled in an ice bath. The reaction mixture was diluted with
dichloromethane (2 mL) and stirred at room temperature for 3 h. Crushed ice and 6 mol/L HCl solution
were then added to the reaction mixture until pH 1. The resulting solid was filtered and washed with
water. Yield: 50%; Mp: 142.9-144.9 ºC; IR (KBr) cm-1: 3313 (NH); 3059-3029 (Ar-H), 2932
1
(C-H),1639 (C=O); 1548 (N-H); 1259 (CH2-Br); H-NMR (200 MHz, CDCl3) δ: 7.66 (d, 2H,
J
b,c = 8.2 Hz, 2 × H-b), 7.31 (d, 2H, Jc,b = 8.2 Hz, H-c), 7.24 (m, 5H, Ar-H), 6.65 (s broad, 1H, NH),
4.51 (d, 2H, JCH2,NH = 5.7 Hz, -CH2NH-), 4.39 (s, 2H, -CH2Br); 13C-NMR (50 MHz, CDCl3) δ: 166.75
(C=O), 141.14 (C-e), 138.02 (C-d), 134.20 (C-a), 129.14 (2 × C-b), 128.70 (2 × C-c), 127.78 (2 × C-
g), 127.54 (C-h), 127.47 (2 × C-f), 44.03 (-CH2NH-), 32.26 (-CH2Br).