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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >NUCLEOPHILIC SUBSTITUTION REACTIONS OF CYCLOPENTADIENYL AND ITS RELATED CARBANIONS ON TRICARBONYL(ETA(6)-4-FLUOROTOLUENE)CHROMIUM - MOLECULAR STRUCTURES OF 1,4-BIS [TRICARBONYL(ETA(6)-4-TOLUENE)CHROMIUM] CYCLOPENTADIENE, 3-[TRICARBONYL(ETA(6)-4-TOLUE
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NUCLEOPHILIC SUBSTITUTION REACTIONS OF CYCLOPENTADIENYL AND ITS RELATED CARBANIONS ON TRICARBONYL(ETA(6)-4-FLUOROTOLUENE)CHROMIUM - MOLECULAR STRUCTURES OF 1,4-BIS [TRICARBONYL(ETA(6)-4-TOLUENE)CHROMIUM] CYCLOPENTADIENE, 3-[TRICARBONYL(ETA(6)-4-TOLUE

机译:环戊二烯基及其相关碳原子的核亲取代反应在三碳烷基(ETA(6)-4-氟甲苯)铬上的分子结构-1,4-双[三羰基(乙基(ETA(6)-4-甲苯)铬[3-]环戊烷])的分子结构三苯甲酰基(ETA(6)-4-TOLUE

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3-[Tricarbonyl(eta(6)-4-toluene)chromium]indene (4) was obtained as the only separated product from the nucleophilic substitution of tricarbonyl(eta(6)-4-fluorotoluene)chromium (1) with indenyl lithium. Presumably, a 1,3-shift of benzylic proton takes place after the attack of (1) by indenyl lithium during the formation of (4). Under similar reaction conditions, 1,4-bis[tricarbonyl(eta(6)-4-toluene)chromium] (3) was detected as the only separated bimetallic product from continuous nucleophilic substitutions of cyclopentadienyl by (1). In this case, a 1,2-shift of the benzylic proton was observed during the formation of (3). Also, 9,9-bis[tricarbonyl(eta(6)-4-toluene)chromium]fluorene (7) was obtained from the consecutive nucleophilic substitutions of fluorenyl by (1). No proton shift is possible after the formation of (7). Presumably, the nucleophilic substitutions take place directly on the fluorine-bearing carbon in all these cases. Compounds were characterized by mass, infrared, H-1, C-13 NMR spectra. The molecular structures of 3, 4, and 7 have been determined by X-ray diffraction. (C) 1997 Elsevier Science Ltd. [References: 26]
机译:3- [三羰基(η(6)-4-甲苯)铬]茚(4)是三羰基(η(6)-4-氟甲苯)铬(1)被茚基锂亲核取代的唯一分离产物。 。据推测,在(4)的形成过程中(1)被茚基锂攻击(1)之后,苄基质子发生了1,3-移位。在相似的反应条件下,检测到1,4-双[三羰基(η(6)-4-甲苯)铬](3)是由(1)从环戊二烯基的连续亲核取代中分离出的唯一双金属产物。在这种情况下,在(3)的形成过程中观察到苄基质子的1,2-移位。同样,由芴基被(1)连续的亲核取代得到9,9-双[三羰基(η(6)-4-甲苯)铬]芴(7)。形成(7)后,质子移位是不可能的。据推测,在所有这些情况下,亲核取代直接发生在含氟碳上。通过质谱,红外,H-1,C-13 NMR光谱对化合物进行表征。通过X射线衍射确定了3、4和7的分子结构。 (C)1997 Elsevier Science Ltd. [参考:26]

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