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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Intramolecular Lewis pairs with two acid sites - reactivity differences between P- and N-based systems
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Intramolecular Lewis pairs with two acid sites - reactivity differences between P- and N-based systems

机译:具有两个酸位点的分子内路易斯对-P和N基体系之间的反应性差异

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The doubly acid-functionalised aniline PhN[(CH2)(3)B(C6F5)(2)](2) shows rapidly exchanging boron acid groups at the central base function and is an active frustrated Lewis pair due to cooperative hydride binding by both Lewis acids. Here we report investigations on the effect of different substituents at the central nitrogen atom and on the effect of exchanging nitrogen by phosphorus. Treatment of diallyl-tert-butylaniline with one equivalent of HB(C6F5)(2) led to formation of a seven-membered iminium hydridoborate ring; after mono-hydroboration the intermediately formed frustrated Lewis pair reacts with the second allylamine function under ring closure. Phosphorus based Lewis pairs with two acid sites were prepared by hydroboration of diallylphenylphosphane and diallyl-tert-butylphosphane. Unlike the aniline PhN[(CH2)(3)B(C6F5)(2)](2) the doubly hydroborated species (Bu-t/Ph)P[(CH2)(3)-B(C6F5)(2)](2) show no dynamic exchange of the boron Lewis acid functions in solution and are not catalytically active in terms of H/D-scrambling as well as hydrogenation reactions. Quantum-chemical investigations revealed the B-P bond dissociation Gibbs free energy to be much larger than those of the nitrogen analogue. The absence of an active open form in solution prevents an activity in heterolytic hydrogen splitting.
机译:双酸官能化的苯胺PhN [(CH2)(3)B(C6F5)(2)](2)在中心碱基功能处显示快速交换的硼酸基团,并且由于两个化合物之间的配合氢键结合而成为活性受阻的路易斯对路易斯酸。在这里,我们报告了对中心氮原子上不同取代基的影响以及磷与氮交换的影响的研究。用一当量的HB(C6F5)(2)处理二烯丙基-叔丁基苯胺导致形成七元氢硼化亚胺基环;单氢硼化后,在闭环作用下,中间形成的受阻的路易斯对与第二烯丙基胺官能团反应。通过二烯丙基苯基膦和二烯丙基叔丁基膦的氢硼化制备具有两个酸位的基于磷的路易斯对。与苯胺PhN [(CH2)(3)B(C6F5)(2)](2)不同,双硼氢化物(Bu-t / Ph)P [(CH2)(3)-B(C6F5)(2)] (2)显示出溶液中硼路易斯酸官能团没有动态交换,并且在H / D加扰以及氢化反应方面没有催化活性。量子化学研究表明,B-P键解离的吉布斯自由能比氮类似物大。溶液中不存在活性开放形式会阻止杂化氢分裂的活性。

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