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首页> 外文期刊>Organometallics >ction of [Et4N]2[Te{Cr(CO)5}n] (n = 2, 3) toward Electrophiles: Reactivity Comparison and Theoretical Calculations
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ction of [Et4N]2[Te{Cr(CO)5}n] (n = 2, 3) toward Electrophiles: Reactivity Comparison and Theoretical Calculations

机译:[Et4N] 2 [Te {Cr(CO)5} n](n = 2,3)对亲电试剂的反应性比较和理论计算

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Reactions of [Et4N]2[Te{Cr(CO)5}n] (n = 2, 3) with a series of organic and inorganic electrophiles have been systematically studied and compared. When [Et4N]2[Te{Cr(CO)5}2] was protonated with approx1.0 equiv of HBF4 in MeCN, the monohydrido Te-Cr complex [Et4N][HTe{Cr(CO)5}2] ([Eu4N][1]) was obtained. However, similar protonation of [Et4N]2[Te{Cr(CO)5}3] led to the formation of the decomposition product [Et4N]2[Te2{Cr(CO)5}4]. While methylation of [Et4N]2[Te{Cr(CO)5}2] with CF3SO3Me formed mono- and dimefhylated products [Et4N][MeTe{Cr(CO)5}2] and Me2Te{Cr(CO)5}2 (2) stepwise, a similar reaction with [Et4N]2[Te{Cr(CO)5}3] produced the monomethylated product [Et4N][MeTe{Cr(CO)5}3] (3). Further, when [Et4N]2[Te{Cr(CO)5}] (n = 2, 3) was stirred in CH2C12 at 0 deg C, the Cl-functionalized products [Et4N][ClH2CTe{Cr(CO)5}n] (n = 2, [Et4N][4]; n = 3, [Et4N][5]) were produced, respectively. Similar reactions with CH2Cl2 at room temperature produced corresponding CH2-bridged dimeric products [Et4N]2[CH2Te2{Cr(CO)5}n] (n = 4; 6, [Et4N]2[6]). If the bisbenzyl-containing reagent ClH2C(C6H4)2-CH2Cl reacted with [Et4N]2[Te{Cr(CO)5}n] (n = 2, 3), the corresponding CH2(C6H4)2CH2-bridged dimeric complexes [Et4N]2[H2C(C6H4)2CH2Te2{Cr(CO)5}n] (n = 4, [Et4N]2[7]; n = 6, [Et4N]2[8]) were produced. [Et4N]2[Te{Cr(CO)5}n] (n = 2, 3) could further react with HgCl2 in THF to give corresponding Hg-bridged products [Et4N]2[HgTe2{Cr(CO)5}n] (n = 4, [Et4N]2[9]; n = 6, [Et4N]2[10]). Complex 9 was found to transform to complex 10 upon its reaction with HgCl2 in THF. Interestingly, the novel O2-activation product [Et4N][OTe{Cr(CO)5}2] ([Et4N][11]) was observed when [Et4N]2[Te{Cr(CO)5}2] was bubbled with O2 in MeCN. Complexes 1-11 were fully characterized by elemental analysis, spectroscopic methods, and/or single-crystal X-ray analysis. The nature of [Te{Cr(CO)5}n]~(2-) (n = 2, 3) and the resultant complexes were further investigated by molecular orbital calculations at the B3LYP level of the density functional theory.
机译:[Et4N] 2 [Te {Cr(CO)5} n](n = 2,3)与一系列有机和无机亲电试剂的反应已得到系统地研究和比较。当[Et4N] 2 [Te {Cr(CO)5} 2]在MeCN中用约1.0当量的HBF4质子化时,单氢Te-Cr络合物[Et4N] [HTe {Cr(CO)5} 2]([获得了Eu4N] [1]。然而,[Et4N] 2 [Te {Cr(CO)5} 3]的质子化导致分解产物[Et4N] 2 [Te2 {Cr(CO)5} 4]的形成。虽然[Et4N] 2 [Te {Cr(CO)5} 2]与CF3SO3Me甲基化形成了单和二甲酰化产物[Et4N] [MeTe {Cr(CO)5} 2]和Me2Te {Cr(CO)5} 2 (2)逐步地,与[Et4N] 2 [Te {Cr(CO)5} 3]的类似反应产生单甲基化产物[Et4N] [MeTe {Cr(CO)5} 3](3)。此外,当将[Et4N] 2 [Te {Cr(CO)5}](n = 2,3)在CH2Cl2中于0℃搅拌时,Cl官能化产物[Et4N] [ClH2CTe {Cr(CO)5}分别产生了n](n = 2,[Et4N] [4]; n = 3,[Et4N] [5])。在室温下与CH2Cl2的类似反应产生相应的CH2桥联的二聚产物[Et4N] 2 [CH2Te2 {Cr(CO)5} n](n = 4; 6,[Et4N] 2 [6])。如果含双苄基的试剂ClH2C(C6H4)2-CH2Cl与[Et4N] 2 [Te {Cr(CO)5} n](n = 2,3)反应,则相应的CH2(C6H4)2CH2桥接的二聚配合物[制备了Et 4 N] 2 [H 2 C(C 6 H 4)2 CH 2 Te 2 {Cr(CO)5} n](n = 4,[Et 4 N] 2 [7]; n = 6,[Et 4 N] 2 [8])。 [Et4N] 2 [Te {Cr(CO)5} n](n = 2,3)可以进一步与HgCl2在THF中反应,得到相应的汞桥连产物[Et4N] 2 [HgTe2 {Cr(CO)5} n ](n = 4,[Et4N] 2 [9]; n = 6,[Et4N] 2 [10])。发现配合物9与HgCl2在THF中反应后转化为配合物10。有趣的是,当鼓泡[Et4N] 2 [Te {Cr(CO)5} 2]时,观察到了新型的O2活化产物[Et4N] [OTe {Cr(CO)5} 2]([Et4N] [11])。在MeCN中使用O2。配合物1-11通过元素分析,光谱法和/或单晶X射线分析得到充分表征。 [Te {Cr(CO)5} n]〜(2-)(n = 2,3)的性质和所得配合物在密度泛函理论的B3LYP水平上通过分子轨道计算进一步研究。

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