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N-Heterocyclic Donor- and Acceptor-Type Ligands Based on 2-(1H ...

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Happ et al.<br />

purified by means of gel filtrati<strong>on</strong> <strong>on</strong> silica gel yielding the<br />

desired product as a slight yellow powder (1.06 g, 87%). 1 H<br />

NMR (CDCl 3 , 300 MHz) δ 8.62 (d, J = 1.3 Hz, <strong>1H</strong>), 7.73 (dd,<br />

J = 8.1 Hz, J = 2.1 Hz, <strong>1H</strong>), 7.49-7.42 (m, 3H), 6.91-6.85 (m,<br />

2H), 3.97 (t, 3 J = 6.6 Hz, 2H), 3.25 (s, <strong>1H</strong>), 1.79-1.74 (m, 2H),<br />

1.49-1.30 (m, 6H), 0.91 (t, J = 6.8 Hz, 3H). 13 C NMR (CDCl 3 ,<br />

75 MHz) δ 159.8, 152.2, 140.3, 138.1, 133.2, 126.71, 120.7, 114.7,<br />

114.0, 94.9, 84.5, 82.6, 78.6, 68.1, 31.5, 29.1, 25.7, 22.6, 14.0.<br />

Anal. Calcd for C 21 H 21 NO: C 83.13, H 6.98, N 4.62. Found: C<br />

82.78, H 7.08, N 4.92.<br />

2-(1-Decyl-<strong>1H</strong>-[1,2,3]triazol-4-yl)-5-((4-(hexyloxy)phenyl)-<br />

ethynyl)pyridine (5). A sealed microwave vial with 1-bromodecane<br />

(91 mg, 0.41 mmol) <str<strong>on</strong>g>and</str<strong>on</strong>g> 1.5 equiv of sodium azide (40 mg)<br />

in DMSO (5 mL) was heated under microwave irradiati<strong>on</strong> for<br />

1 h at 100 °C. Water was then added to quench the reacti<strong>on</strong> <str<strong>on</strong>g>and</str<strong>on</strong>g><br />

the product was extracted into diethyl ether, washed with brine,<br />

<str<strong>on</strong>g>and</str<strong>on</strong>g> dried over Na 2 SO 4 . The soluti<strong>on</strong> was subsequently reduced<br />

in vacuo to yield 1-azidodecane (95%). The organic azide,<br />

2-ethynyl-5-((4-(hexyloxy)phenyl)ethynyl)pyridine (4, 127 mg,<br />

0.42 mmol), CuSO 4 (7 mg, 0.042 mmol, dissolved in 0.5 mL<br />

water), <str<strong>on</strong>g>and</str<strong>on</strong>g> sodium ascorbate (42 mg, 0.21 mmol, dissolved in<br />

1 mL water) were dissolved in THF (15 mL) <str<strong>on</strong>g>and</str<strong>on</strong>g> the reacti<strong>on</strong><br />

mixture was stirred for 24 h at room temperature. Subsequently,<br />

ethylenediaminetetraacetic acid-c<strong>on</strong>taining water (60 mL) was<br />

added to the reacti<strong>on</strong> mixture <str<strong>on</strong>g>and</str<strong>on</strong>g> the product was extracted<br />

with CH 2 Cl 2 . Gel filtrati<strong>on</strong> <strong>on</strong> silica (CHCl 3 /EtOAc 1:1 ratio)<br />

<str<strong>on</strong>g>and</str<strong>on</strong>g> subsequent column chromatography (silica, CHCl 3 /EtOAc<br />

20:1 ratio) provided the pure product as white powder (134 mg,<br />

67%). 1 H NMR (CDCl 3 , 300 MHz) δ 8.68 (s, <strong>1H</strong>), 8.13-8.11<br />

(m, 2H), 7.86 (dd, J = 8.2 Hz, J = 2.1 Hz, <strong>1H</strong>), 7.46-7.42 (m,<br />

2H), 6.86-6.82 (m, 2H), 4.4 (t, J = 7.2 Hz, 2H), 3.97 (t, J = 6.5<br />

Hz, 2H), 1.94-1.88 (m, 2H), 1.79-1.76 (m, 2H), 1.48-1.22 (m,<br />

20H), 0.87-0.81 (m, 6H). 13 C NMR (CDCl 3 , 75 MHz) δ 159.5,<br />

151.6, 148.7, 147.8, 139.0, 133.0, 122.0, 119.6, 119.3, 114.5,<br />

114.3, 93.1, 84.8, 68.0, 50.4, 31.7, 31.5, 30.1, 29.3, 29.2, 29.1,<br />

29.0, 28.9, 26.3, 25.6, 22.5, 22.5, 14.0, 13.9. Anal. Calcd for<br />

C 31 H 42 N 4 O: C 76.50, H 8.70, N 11.51. Found: C 76.52, H 8.79,<br />

N 11.71.<br />

4-(6-Ethynylpyridin-3-yl)-2-methylbut-3-yn-2-ol (6). 27 To a<br />

degassed soluti<strong>on</strong> of 5-bromo-2-[(trimethylsilyl)ethynyl]pyridine<br />

(2, 1.5 g, 5.9 mmol), CuI (23 mg, 0.12 mmol), <str<strong>on</strong>g>and</str<strong>on</strong>g> Pd(PPh 3 ) 4 (140<br />

mg, 0.12 mmol) in triethylamine (50 mL) was added 2-methyl-3-<br />

butyn-2-ol (0.58 mL, 5.9 mmol) <str<strong>on</strong>g>and</str<strong>on</strong>g> the reacti<strong>on</strong> mixture was<br />

stirred for 24 h at 55 °C. The mixture was diluted with diethyl<br />

ether, washed <strong>on</strong>ce with brine, <str<strong>on</strong>g>and</str<strong>on</strong>g> dried over MgSO 4 . C<strong>on</strong>centrati<strong>on</strong><br />

in vacuo yielded the crude product, which was purified<br />

by chromatography <strong>on</strong> silica gel (chloroform/ethyl acetate 4:1)<br />

to afford 5-(3-hydroxy-3-methyl-1-butynyl)-2-[(triisopropylsilyl)-<br />

ethynyl]pyridine. To a stirred soluti<strong>on</strong> of the latter product in<br />

methanol (50 mL) was added solid potassium fluoride (1.5 equiv),<br />

<str<strong>on</strong>g>and</str<strong>on</strong>g> the mixture was stirred at room temperature overnight under<br />

an arg<strong>on</strong> atmosphere. Subsequently, the reacti<strong>on</strong> mixture was<br />

filtered by means of gel filtrati<strong>on</strong> <strong>on</strong> silica gel (chloroform/ethyl<br />

acetate 4:1) <str<strong>on</strong>g>and</str<strong>on</strong>g> c<strong>on</strong>centrated in vacuo yielding the desired<br />

product as an orange powder (670 mg, 61%).<br />

5-Bromo-2-ethynylpyridine (7). 28 To a soluti<strong>on</strong> of 2,5-dibromopyridine<br />

(7 g, 30 mmol), CuI (70 mg, 0.37 mmol), <str<strong>on</strong>g>and</str<strong>on</strong>g> Pd-<br />

(PPh 3 ) 4 (260 mg, 0.37 mmol) in degassed NEt 3 /THF (1:1 ratio,<br />

100 mL) was added trimethylsilylacetylene (4.2 mL, 30 mmol).<br />

The mixture was stirred at room temperature overnight under<br />

arg<strong>on</strong> atmosphere. After removal of the solvent under reduced<br />

pressure, the residue was purified by gel filtrati<strong>on</strong> (CHCl 3 ) to yield<br />

2-(trimethylsilyl)ethynyl-5-bromopyridine as off-white powder<br />

(6.95 g, 92%). Subsequently, the compound was dissolved in<br />

(27) Nakano, Y.; Ishizuka, K.; Muraoka, K.; Ohtani, H.; Takayama, Y.;<br />

Sato, F. Org. Lett. 2004, 6, 2373–2376.<br />

(28) Tilley, J. W.; Zawoiski, S. J. Org. Chem. 1988, 53, 386–390.<br />

JOCArticle<br />

methanol (80 mL) <str<strong>on</strong>g>and</str<strong>on</strong>g> treated with aq NaOH (5 M, 12 mL).<br />

The yellow soluti<strong>on</strong> was stirred overnight, whereup<strong>on</strong> the soluti<strong>on</strong><br />

turned black. Subsequent gel filtrati<strong>on</strong> <strong>on</strong> silica (CHCl 3 ) yielded<br />

the product as white powder (3.79 g, 69%).<br />

5-Bromo-2-(1-decyl-<strong>1H</strong>-[1,2,3]triazol-4-yl)pyridine (8). 5-Bromo-<br />

2-ethynylpyridine (7, 1.04 g, 5.45 mmol) <str<strong>on</strong>g>and</str<strong>on</strong>g> 1-azidodecane<br />

(see synthesis of 5, 1.0 g, 5.45 mmol) were dissolved in an<br />

ethanol/water mixture (7:1 ratio, 70 mL), using a roundbottomed<br />

flask (100 mL). Then copper(II) sulfate (80 mg, 0.5 mmol,<br />

dissolved in 3 mL of water) <str<strong>on</strong>g>and</str<strong>on</strong>g> sodium ascorbate (490 mg,<br />

2.5 mmol, dissolved in 4 mL of water) were added. The reacti<strong>on</strong><br />

mixture turned yellow after a while <str<strong>on</strong>g>and</str<strong>on</strong>g> was stirred for 72 h at<br />

25 °C. The yellow precipitate was filtered <str<strong>on</strong>g>and</str<strong>on</strong>g> washed with<br />

ethanol. After recrystallizati<strong>on</strong> from ethanol the pure product<br />

was obtained as colorless crystals (1.35 g, 67%). 1 H NMR<br />

(CDCl 3 , 300 MHz) δ 8.61 (s, <strong>1H</strong>), 8.09-8.07 (m, 2H),<br />

7.89-7.86 (m, <strong>1H</strong>), 4.40 (t, J = 7.2 Hz, 2H), 1.94-1.89 (m,<br />

2H), 1.34-1.24 (m, 14H), 0.87-0.81 (m, 3H).<br />

13 C NMR<br />

(CDCl 3 , 75 MHz) δ 150.3, 148.9, 147.4, 139.4, 121.9, 121.3,<br />

119.3, 50.5, 31.8, 30.2, 29.4, 29.3, 29.2, 28.9, 26.4, 22.6, 14.0.<br />

Anal. Calcd for C 17 H 25 BrN 4 : C 55.89, H 6.90, N 15.34. Found:<br />

C 56.22, H 7.23, N 14.98.<br />

2-(1-Decyl-<strong>1H</strong>-[1,2,3]triazol-4-yl)-5-ethynylpyridine (9, Route 1).<br />

4-(6-Ethynylpyridin-3-yl)-2-methylbut-3-yn-2-ol (6, 300mg,1.58<br />

mmol) <str<strong>on</strong>g>and</str<strong>on</strong>g> 1-azidodecane (see synthesis of 5, 275 mg, 1.5 mmol)<br />

were dissolved in an ethanol/water mixture (7:3 ratio, 30 mL), using<br />

a round-bottomed flask (100 mL). Then copper(II) sulfate (24 mg,<br />

0.15 mmol, dissolved in 1 mL of water) <str<strong>on</strong>g>and</str<strong>on</strong>g> sodium ascorbate<br />

(150 mg, 0.75 mmol, dissolved in 1 mL of water) were added. The<br />

reacti<strong>on</strong> mixture turned green after a while <str<strong>on</strong>g>and</str<strong>on</strong>g> was stirred for 72 h<br />

at 50 °C. Subsequently, an excess of water was poured into the<br />

reacti<strong>on</strong> mixture (100 mL) <str<strong>on</strong>g>and</str<strong>on</strong>g> the crude product precipitated <str<strong>on</strong>g>and</str<strong>on</strong>g><br />

was filtered off. Gel filtrati<strong>on</strong> <strong>on</strong> silica (CHCl 3 /EtOAc 1:1) provided<br />

4-(6-(1-decyl-<strong>1H</strong>-[1,2,3]triazole-4-yl)pyridin-3-yl)-2-methylbut-<br />

3-yn-2-ol as white powder (490 mg, 85%). This intermediate was<br />

dissolved in dry toluene (30 mL). After adding ground NaOH<br />

(200 mg, 5 mmol) <str<strong>on</strong>g>and</str<strong>on</strong>g> KOH (150 mg, 2.6 mmol) the reacti<strong>on</strong><br />

mixture was refluxed for 5 h. Subsequent column chromatography<br />

<strong>on</strong> silica (CHCl 3 /EtOAc 2:1 ratio) yielded 2-(1-decyl-<strong>1H</strong>-[1,2,3]-<br />

triazole-4-yl)-5-ethynylpyridine as transparent crystals (303 mg,<br />

74%). 1 H NMR (CDCl 3 , 300 MHz) δ 8.67 (d, J = 1.6 Hz, <strong>1H</strong>),<br />

8.20-8.14 (m, 2H), 7.89-7.83 (m, <strong>1H</strong>), 4.41 (t, J = 7.2 Hz, 2H),<br />

3.25 (s, <strong>1H</strong>), 1.95-1.89 (m, 2H), 1.34-1.25 (m, 14H), 0.87 (t, J =<br />

6.5 Hz, 3H). 13 C NMR (CDCl 3 ,75MHz)δ 152.4, 149.7, 147.7,<br />

139.9, 122.2, 119.3, 118.0, 80.8, 80.5, 50.5, 31.8, 30.2, 29.4, 29.3,<br />

29.2, 28.9, 26.4, 22.6, 14.0. Anal. Calcd for C 19 H 26 N 4 : C 73.51, H<br />

8.44, N 18.05. Found: C 73.50, H 8.24, N 18.38.<br />

2-(1-Decyl-<strong>1H</strong>-[1,2,3]triazol-4-yl)-5-ethynylpyridine (9, Route<br />

2). To a soluti<strong>on</strong> of 5-bromo-2-(1-decyl-<strong>1H</strong>-[1,2,3]triazol-4-yl)-<br />

pyridine (8, 1.0 g, 2.74 mmol), CuI (13 mg, 0.07 mmol), <str<strong>on</strong>g>and</str<strong>on</strong>g><br />

Pd(PPh 3 ) 4 (80 mg, 0.07 mmol) in degassed NEt 3 /CH 2 Cl 2 (3:1<br />

ratio, 500 mL) was added trimethylsilylacetylene (280 mg, 2.8<br />

mmol). The mixture was stirred 48 h at room temperature under<br />

arg<strong>on</strong> atmosphere. After removal of the solvent under reduced<br />

pressure, the residue was purified by gel filtrati<strong>on</strong> <strong>on</strong> silica<br />

(chloroform). Afterward, the trimethylsilyl-protected product<br />

was dissolved in methanol (40 mL) <str<strong>on</strong>g>and</str<strong>on</strong>g> treated with aq NaOH<br />

(5 M, 1 mL). After 5 h the solvent was removed <str<strong>on</strong>g>and</str<strong>on</strong>g> the crude<br />

product was finally purified by gradient column chromatography<br />

<strong>on</strong> silica (CHCl 3 , CHCl 3 /EtOAc 3:1 ratio) yielding the<br />

product as white powder (470 mg, 55%).<br />

General Procedure of the S<strong>on</strong>ogashira Reacti<strong>on</strong>. 2-(1-Decyl-<br />

<strong>1H</strong>-[1,2,3]triazol-4-yl)-5-ethynylpyridine (0.32 mmol), nitrosubstituted<br />

1-iodobenzene (0.32 mmol), tetrakis(triphenylphosphine)palladium(0)<br />

(16 mg, 0.012 mmol), <str<strong>on</strong>g>and</str<strong>on</strong>g> CuI (8 mg, 0.012<br />

mmol) were dissolved in a degassed NEt 3 /THF mixture (1:1,<br />

10 mL). The soluti<strong>on</strong> was stirred for 48 h at 40 °C under arg<strong>on</strong><br />

atmosphere. The salts formed were filtered off, <str<strong>on</strong>g>and</str<strong>on</strong>g> the soluti<strong>on</strong><br />

J. Org. Chem. Vol. 75, No. 12, 2010 4035

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