Supramolecular Systems Containing B–N Frustrated Lewis Pairs of Tris(pentafluorophenyl)borane and Triphenylamine Derivatives

P. Chidchob, S. Jansen, S. Meskers, E. Weyandt, N. P. van Leest, B. de Bruin, A. Palmans, G. Vantomme, E. Meijer
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引用次数: 5

Abstract

Abstract The introduction of a chemical additive to supramolecular polymers holds high potential in the development of new structures and functions. In this regard, various donor- and acceptor-based molecules have been applied in the design of these noncovalent polymers. However, the incorporation of boron–nitrogen frustrated Lewis pairs in such architectures is still rare despite their many intriguing properties in catalysis and materials science. The limited choices of suitable boron derivatives represent one of the main limitations for the advancement in this direction. Here, we examine the use of the commercially available tris(pentafluorophenyl)borane with various triphenylamine derivatives to create supramolecular B–N charge transfer systems. Our results highlight the importance of a proper balance between the donor/acceptor strength and the driving force for supramolecular polymerization to achieve stable, long-range ordered B–N systems. Detailed analyses using electron paramagnetic resonance and optical spectroscopy suggest that tris(pentafluorophenyl)borane displays complex behavior with the amide-based triphenylamine supramolecular polymers and may interact in dimers or larger chiral aggregates, depending on the specific structure of the triphenylamines.
含有三(五氟苯基)硼烷和三苯胺衍生物的B–N受挫Lewis对的超分子体系
摘要在超分子聚合物中引入化学添加剂在开发新的结构和功能方面具有很高的潜力。在这方面,各种基于供体和受体的分子已经被应用于这些非共价聚合物的设计中。然而,尽管硼-氮挫败的路易斯对在催化和材料科学中具有许多有趣的性质,但在这种结构中掺入硼-氮挫折的路易斯对仍然很少见。合适的硼衍生物的有限选择代表了该方向发展的主要限制之一。在这里,我们研究了商用三(五氟苯基)硼烷与各种三苯胺衍生物的用途,以创建超分子B–N电荷转移系统。我们的研究结果强调了在供体/受体强度和超分子聚合驱动力之间保持适当平衡的重要性,以实现稳定、长程有序的B–N体系。使用电子顺磁共振和光谱的详细分析表明,三(五氟苯基)硼烷与酰胺基三苯胺超分子聚合物表现出复杂的行为,并可能以二聚体或更大的手性聚集体相互作用,这取决于三苯胺的具体结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.70
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12 weeks
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