首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >The selective activation of a C-F bond with an auxiliary strong Lewis acid: a method to change the activation preference of C-F and C-H bonds
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The selective activation of a C-F bond with an auxiliary strong Lewis acid: a method to change the activation preference of C-F and C-H bonds

机译:用辅助强路易斯酸选择性活化C-F键:一种改变C-F和C-H键活化偏好的方法

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摘要

The selective activation of the C-F bonds in substituted (2,6-difluorophenyl) phenylimines (2,6-F2H3C6-(CvNH)-n'-R-C6H4 (n' = 2, R = H (1); n' = 2, R = Me (2); n' = 4, R = tBu (3))) by Fe(PMe3)(4) with an auxiliary strong Lewis acid (LiBr, LiI, or ZnCl2) was explored. As a result, iron(II) halides ((H5C6-(CvNH)-2-FH3C6) FeX(PMe3)(3) (X = Br (8); Cl (9)) and (n-RH4C6-(CvNH)-2'-FH3C6) FeX(PMe3)(3) (n = 2, R = Me, X = Br (11); n = 4, R = tBu, X = I (12))) were obtained. Under similar reaction conditions, using LiBF4 instead of LiBr or ZnCl2, the reaction of (2,6-difluorophenyl) phenylimine with Fe(PMe3)(4) afforded an ionic complex (2,6F(2)H(3)C(6)-(CvNH)-H4C6) Fe(PMe3)(4)(BF4) (10) via the activation of a C-H bond. The method of C-F bond activation with an auxiliary strong Lewis acid is appropriate for monofluoroarylmethanimines. Without the Lewis acid, iron(II) hydrides ((2-RH4C6-(CvNH)-2'-FH3C6) FeH(PMe3)(3) (R = H (13); Me (14))) were generated from the reactions of Fe(PMe3)(4) with the monofluoroarylmethanimines (2-FH4C6-(CvNH)-2'-RC6H4 (R = H (4); Me (5))); however, in the presence of ZnCl2 or LiBr, iron(II) halides ((2-RH4C6-(CvNH)-H4C6) FeX(PMe3)(3) (R = H, X = Cl (15); R = Me, X = Br (16))) could be obtained through the activation of a C-F bond. Furthermore, a C-F bond activation with good regioselectivity in (pentafluorophenyl) arylmethanimines (F5C6-(C=NH)-2,6-Y2C6H3 (Y = F (6); H (7))) could be realized in the presence of ZnCl2 to produce iron(II) chlorides ((2,6-Y2H3C6-(C=NH)-F4C6) FeCl(PMe3)(3) (Y = F (17); H (18))). This series of iron(II) halides could be used to catalyze the hydrosilylation reaction of aldehydes. Due to the stability of iron(II) halides to high temperature, the reaction mixture was allowed to be heated to 100 degrees C and the reaction could finish within 0.5 h.
机译:探索了Fe(PMe3)(4)与辅助强路易斯酸(LiBr、LiI或ZnCl2)对取代(2,6-二氟苯基)苯亚胺(2,6-F2H3C6-(CvNH)-n'-R-C6H4 (n' = 2, R = H (1); n' = 2, R = Me (2); n' = 4, R = tBu (3)))中C-F键的选择性活化。结果,卤化铁(II)((H5C6-(CvNH)-2-FH3C6)FeX(PMe3)(3)(X = Br(8);Cl (9)) 和 (n-RH4C6-(CvNH)-2'-FH3C6) FeX(PMe3)(3) (n = 2, R = Me, X = Br (11); n = 4, R = tBu, X = I (12))) 得到。在类似的反应条件下,使用LiBF4代替LiBr或ZnCl2,(2,6-二氟苯基)苯胺与Fe(PMe3)(4)反应产生离子络合物[(2,6F(2)H(3)C(6)-(CvNH)-H4C6)Fe(PMe3)(4)](BF4)(10)通过激活C-H键。用辅助强路易斯酸活化 C-F 键的方法适用于单氟芳基甲胺。没有路易斯酸,氢化铁(II)氢化物((2-RH4C6-(CvNH)-2'-FH3C6)FeH(PMe3)(3)(R = H(13);Me (14))) 由 Fe(PMe3)(4) 与单氟芳基甲胺 (2-FH4C6-(CvNH)-2'-RC6H4 (R = H (4);我 (5)));然而,在 ZnCl2 或 LiBr 存在下,卤化铁 (II) ((2-RH4C6-(CvNH)-H4C6) FeX(PMe3)(3) (R = H, X = Cl (15);R = Me, X = Br (16))) 可以通过激活 C-F 键获得。此外,在(五氟苯基)芳基甲胺 (F5C6-(C=NH)-2,6-Y2C6H3 (Y = F (6);H (7))) 可以在 ZnCl2 存在下生成氯化铁 (II) ((2,6-Y2H3C6-(C=NH)-F4C6) FeCl(PMe3)(3) (Y = F (17);H (18)))。该系列卤化铁(II)可用于催化醛的氢化硅烷化反应。由于卤化铁(II)在高温下的稳定性,将反应混合物加热至100°C,反应可在0.5 h内完成。

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