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持久的双硅基化芳鎓离子。

Persistent bissilylated arenium ions.

作者信息

Meyer Rita, Werner Karla, Müller Thomas

机构信息

Institut für Anorganische Chemie, Goethe Universität-Frankfurt, Marie Curie-Str. 11, 60439 Frankfurt/Main, Germany.

出版信息

Chemistry. 2002 Mar 1;8(5):1163-72. doi: 10.1002/1521-3765(20020301)8:5<1163::aid-chem1163>3.0.co;2-m.

Abstract

A series of bissilylated arenium ions 1 with different substitution patterns on the aryl ring have been synthesized by hydride abstraction from 2-aryl-substituted 2,6-dimethyl-2,6-disilaheptanes (2) via transient silylium ions. The arenium ions have been identified by their characteristic NMR chemical shifts, (delta(29)Si=19.1-25.6, delta(13)C(ipso) =89.0-102.4, delta(13)C(ortho)=160.9-182.0, delta(13)C(meta)=132.5-146.9, delta(13)C(para)=150.2-169.9) supported by quantum mechanical calculations of structures, energies, and magnetic properties at the B3LYP/6-311G(d,p)//B3LYP/6-31G(d) + DeltaZPVE level of theory. The calculations clearly reveal the charge dispersing and stabilizing effect of the silyl substituents in arenium ions 1. The bissilylated benzenium ion 1a is more stable than the parent benzenium ion (C(6)H(7)(+)) by 37.6 kcalmol(-1). The synthesized arenium ions 1 are stable in solution at room temperature for periods ranging from a few hours to days. This unusual stability is attributed to: 1) the thermodynamic stabilization of the arenium ion by two beta-silyl substituents and 2) the essentially non-nucleophilic reaction conditions (the use of the weakly coordinating B(C(6)F(5))(4) anion and aromatic hydrocarbons as solvents). Addition of stronger nucleophiles than aromatic hydrocarbons (for example, acetonitrile) results in desilylation of the arenium ion 1 and recovery of the 2-aryl-2,6-disilaheptane moiety.

摘要

通过从2-芳基取代的2,6-二甲基-2,6-二硅庚烷(2)经由瞬态硅鎓离子进行氢化物提取,合成了一系列芳基环上具有不同取代模式的双硅基化芳鎓离子1。通过其特征性的核磁共振化学位移(δ(29)Si = 19.1 - 25.6,δ(13)C(ipso) = 89.0 - 102.4,δ(13)C(邻位)= 160.9 - 182.0,δ(13)C(间位)= 132.5 - 146.9,δ(13)C(对位)= 150.2 - 169.9)对芳鎓离子进行了鉴定,这些化学位移得到了在B3LYP/6 - 311G(d,p)//B3LYP/6 - 31G(d) + ΔZPVE理论水平下对结构、能量和磁性进行的量子力学计算的支持。计算结果清楚地揭示了硅基取代基在芳鎓离子1中的电荷分散和稳定作用。双硅基化苯鎓离子1a比母体苯鎓离子(C(6)H(7)(+))稳定37.6 kcal/mol(-1)。合成的芳鎓离子1在室温下的溶液中能稳定存在数小时至数天。这种异常的稳定性归因于:1)两个β-硅基取代基对芳鎓离子的热力学稳定作用;2)基本上非亲核的反应条件(使用弱配位的B(C(6)F(5))(4)阴离子和芳烃作为溶剂)。加入比芳烃更强的亲核试剂(例如乙腈)会导致芳鎓离子1脱硅,并回收2-芳基-2,6-二硅庚烷部分。

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