首页> 外文期刊>Journal of Organometallic Chemistry >NUCLEOPHILIC SUBSTITUTION REACTIONS OF (ETA(6)-FLUOROTOLUENE)CR(CO)(3) AND (ETA(6)-FLUOROANISOLE)CR(CO)(3) TOWARD PHENYLACETYLIDE, FLUORENYL, INDOLINYL AND CARBAZOLINYL LITHIUM - CRYSTAL STRUCTURES OF TRICARBONYL[ETA(6)-(1,2-DIPHENYLETHYNYL)BENZENE]C
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NUCLEOPHILIC SUBSTITUTION REACTIONS OF (ETA(6)-FLUOROTOLUENE)CR(CO)(3) AND (ETA(6)-FLUOROANISOLE)CR(CO)(3) TOWARD PHENYLACETYLIDE, FLUORENYL, INDOLINYL AND CARBAZOLINYL LITHIUM - CRYSTAL STRUCTURES OF TRICARBONYL[ETA(6)-(1,2-DIPHENYLETHYNYL)BENZENE]C

机译:(ETA(6)-Fluorotoluene)CR(CO)(3)和(ETA(6)-Fluoruninisole)CR(CO)(3)的亲核取代反应对苯乙酰,氟乙烯,吲哚基和羧甲基锂-晶体结构的结晶ETA(6)-(1,2-二苯乙炔基)苯] C

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Tricarbonyl [eta(6)-(1,2-diphenylethynyl)benzene]chromium (8a) was obtained along with tricarbonyl[eta(6)-(2-phenylethynyl)anisole]chromium (7b) and tricarbonyl[eta(6)-(3-phenylethynyl)anisole]chromium (7a) from the reaction of tricarbonyl(eta(6)-2-fluoroanisole)chromium (4c) with lithium phenylacetylide (3). The formation of ortho- and meta-products, 7b, 8a and 7a, produced in the above reaction demonstrates that the reaction was by no means through a straightforward nucleophilic substitution mechanism. These results provided support for the mechanism proposed by Pauson and Brookhart, in which the nucleophile attacked the carbon atom of the phenyl ring not bearing the leaving group, followed by hydrogen migration and finally elimination of the leaving group to achieve aromaticity. 8a was obtained presumably from the reaction of 7b with excess 3. Compounds were characterized by mass, infrared,H-1,C-13 NMR spectra. The molecular structure of 8a has been determined by X-ray diffraction studies, Crystal data are as follows: orthorhombic, P-BCA, a = 18.690(2) Angstrom, b = 10.666(2) Angstrom, c = 20.463(2) Angstrom, V = 4079.3(8) Angstrom(3), Z = 8, R = 4.41%, R(w) = 5.56%. Tricarbonyl(eta(6)4-fluorenyltoluene)chromium (10) was obtained as the only separated product from the reaction of tricarbonyl(eta(6)-4-fluorotoluene)chromium (5) with fluorenyl lithium. The X-ray crystal structure of 10 was determined: monoclinic, P2(1)/c, a = 12.318(1) Angstrom, b = 11.498(1) Angstrom, c = 13.585(2) Angstrom, beta = 100.35(1)degrees, V = 1892.8(5) Angstrom(3), Z = 4, R = 3.63%, R(w), = 5.65%. Tricarbonyl(eta(6)-4-fluorenylanisole)chromium (11a), tricarbonyl(eta(6)-3-fluorenylanisole)chromium (11b) and tricarbonyl(eta(6)-2-fluorenylanisole)chromium (11c) were also produced in moderate to good yields. Moreover, tricarbonyl(eta(6)-4-indolinyltoluene)chromium (12) and tricarbonyl(eta(6)-4-carbazolinyltoluene)chromium (14) were synthesized from the reaction of 5 with indolinyl and carbazolinyl lithium, respectively. Tricarbonyl(eta(6)-4-indolinylanisole)chromium (13a), tricarbonyl(eta(6)-3-indolinylanisole)chromium (13b) and tricarbonyl(eta(6)-2-indolinylanisole)chromium (13c) were obtained in high yields from the direct nucleophilic substitution reactions of related compounds. [References: 40]
机译:获得三羰基[η(6)-(1,2-二苯基乙炔基)苯]铬(8a)以及三羰基[η(6)-(2-苯基乙炔基)苯甲醚]铬(7b)和三羰基[η(6)- (3-苯基乙炔基)茴香醚]铬(7a),是由三羰基(η(6)-2-氟茴香醚)铬(4c)与苯基乙炔锂(3)反应制得的。在上述反应中生成的邻位和间位产物7b,8a和7a的形成表明,该反应绝不是通过直接的亲核取代机理进行的。这些结果为Pauson和Brookhart提出的机理提供了支持,其中亲核试剂攻击不带有离去基团的苯环的碳原子,随后氢迁移并最终消除离去基团以获得芳香性。推测是由7b与过量3的反应得到8a。化合物经质量,红外,H-1,C-13 NMR光谱表征。 8a的分子结构已通过X射线衍射研究确定,晶体数据如下:正交晶体,P-BCA,a = 18.690(2)埃,b = 10.666(2)埃,c = 20.463(2)埃,V = 4079.3(8)埃(3),Z = 8,R = 4.41%,R(w)= 5.56%。三羰基(η(6)-4-芴基甲苯)铬(10)是三羰基(η(6)-4-氟甲苯)铬(5)与芴基锂反应的唯一分离产物。确定了10的X射线晶体结构:单斜晶,P2(1)/ c,a = 12.318(1)埃,b = 11.498(1)埃,c = 13.585(2)埃,beta = 100.35(1)度,V = 1892.8(5)埃(3),Z = 4,R = 3.63%,R(w),= 5.65%。还生产了三羰基(η(6)-4-芴基茴香醚)铬(11a),三羰基(η(6)-3-芴基茴香醚)铬(11b)和三羰基(η(6)-2-芴基茴香醚)铬(11c)产量中等至良好。此外,分别由5与吲哚基锂和咔唑啉基锂的反应合成三羰基(η(6)-4-吲哚基甲苯)铬(12)和三羰基(η(6)-4-咔唑啉基甲苯)铬(14)。三羰基(η(6)-4-吲哚基苯甲醚)铬(13a),三羰基(η(6)-3-吲哚基苯甲醚)铬(13b)和三羰基(η(6)-2-吲哚基苯甲醚)铬(13c)在相关化合物的直接亲核取代反应可产生高收率。 [参考:40]

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