Dumitrescu Dan, Legrand Yves-Marie, Petit Eddy, van der Lee Arie, Barboiu Mihail
Adaptive Supramolecular Nanosystems Group , Institut Européen des Membranes , ENSCM/UMII/UMR-CNRS 5635 , Pl. Eugène Bataillon , CC 047 , 34095 Montpellier, Cedex 5 , France . Email:
Chem Sci. 2015 Mar 1;6(3):2079-2086. doi: 10.1039/c4sc03945a. Epub 2015 Jan 12.
Guest molecules confined inside hollow molecular assemblies and thus protected from their environment can show unexpected structural behavior or special reactivity compared to their behavior in a bulk, unprotected environment. A special case is the coiling behavior of variable-length alkane chains in rigid hydrogen-bonded molecular cages. It has been found before that coiling may occur in such circumstances, but no experimental evidence concerning the exact conformation of the chains has yet been presented. We reveal in this study the self-assembly of a molecular cage in water and the crystalline state from three distinct components in which linear 1,ω-diammonium-alkanes chains are confined with different degrees of compression. The exact coiling behavior is determined from atomic resolution X-ray diffraction showing crenel-like conformations in the compressed state. Chemical selection can be obtained from mixtures of alkane chains the encapsulation of kinetically stable conformations observed during the encapsulation of pure components. Moreover, it was found that uncompressed and compressed chains can be competitively trapped inside the capsule. These findings may provide insight in areas to a better understanding of biological processes, such as the fatty acid metabolism.
被限制在中空分子聚集体内部并因此免受周围环境影响的客体分子,与它们在未受保护的本体环境中的行为相比,可能会表现出意想不到的结构行为或特殊反应性。一个特殊的例子是刚性氢键分子笼中可变长度烷烃链的卷曲行为。此前已经发现,在这种情况下可能会发生卷曲,但尚未有关于链的确切构象的实验证据。在本研究中,我们揭示了一种分子笼在水中和晶体状态下由三种不同组分自组装而成,其中线性1,ω - 二铵基烷烃链以不同程度的压缩被限制在其中。通过原子分辨率X射线衍射确定了确切的卷曲行为,显示出压缩状态下类似城垛的构象。从烷烃链混合物中可以实现化学选择——在纯组分包封过程中观察到的动力学稳定构象的包封。此外,还发现未压缩和压缩的链可以竞争性地被困在胶囊内部。这些发现可能为更好地理解生物过程(如脂肪酸代谢)等领域提供见解。