Supramolecular "sergeants": in situ and multi-level induction of chirality in helical assemblies of triarylamine trisamide monomers.

IF 7.6 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Antoine Perennes, Quentin Sallembien, Weiwei Fang, Stéphane Grass, Jérôme Lacour, Laurent Bouteiller, Matthieu Raynal
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Abstract

The induction and transmission of chirality across multiple length scales is fundamental to many (bio)chemical processes. For the majority of macromolecular and supramolecular structures adopting a helical configuration, this is harnessed by means of a monomer embedding a stereogenic element, also called a "sergeant" because of its ability to transfer its chirality preference to achiral monomers. Herein, we devise a triarylamine trisamide (TATA) monomer embedding a (thio)urea unit able to interact with a chiral phosphate anion through hydrogen bonding. Thanks to the orthogonal nature of the amide and (thio)urea functions, the anion specifically binds to the (thio)urea unit, thus yielding a supramolecular monomer acting as a "sergeant" i.e. allowing efficient chirality induction in amide-bonded TATA helical copolymers composed of various types of achiral TATA monomers. Unlike covalent "sergeants", chirality can be induced in situ by binding of the chiral anion to pre-formed coassemblies. In addition, the catalytic performance of TATA coassemblies embedding intrinsically achiral phosphine-functionalized TATA monomers has been evaluated: higher enantioselectivities are reached with the supramolecular versus covalent "sergeant". Our work may facilitate the design and development of supramolecular "sergeants" as a modular approach to induce chirality in supramolecular helical copolymers and catalysts.

超分子“中士”:原位和多层次诱导手性在螺旋组装的三芳胺三酰胺单体。
手性在多个长度尺度上的诱导和传递是许多(生物)化学过程的基础。对于大多数采用螺旋构型的大分子和超分子结构,这是通过单体嵌入立体元素来实现的,立体元素也被称为“中士”,因为它能够将其手性偏好转移到非手性单体上。在此,我们设计了一种包埋(硫)尿素单元的三芳胺三酰胺(TATA)单体,能够通过氢键与手性磷酸阴离子相互作用。由于酰胺和(硫)尿素功能的正交性质,阴离子特异性地与(硫)尿素单元结合,从而产生一种充当“中士”的超分子单体,即允许在由各种类型的非手性TATA单体组成的酰胺键TATA螺旋共聚物中进行有效的手性诱导。与共价“中士”不同,手性可以通过手性阴离子与预形成的共聚体的结合在原位诱导。此外,还对嵌入非手性膦功能化TATA单体的TATA共聚体的催化性能进行了评价:超分子与共价“中士”相比,具有更高的对映选择性。我们的工作可以促进超分子“中士”的设计和开发,作为一种模块化的方法来诱导超分子螺旋共聚物和催化剂的手性。
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来源期刊
Chemical Science
Chemical Science CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
14.40
自引率
4.80%
发文量
1352
审稿时长
2.1 months
期刊介绍: Chemical Science is a journal that encompasses various disciplines within the chemical sciences. Its scope includes publishing ground-breaking research with significant implications for its respective field, as well as appealing to a wider audience in related areas. To be considered for publication, articles must showcase innovative and original advances in their field of study and be presented in a manner that is understandable to scientists from diverse backgrounds. However, the journal generally does not publish highly specialized research.
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