Beijing National Laboratory for Molecular Science, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, PR China.
Langmuir. 2011 Nov 15;27(22):13847-53. doi: 10.1021/la203110z. Epub 2011 Oct 24.
Self-assembly of several low-molecular-weight L-glutamic acid-based gelators, which individually formed helical nanotube or nanofiber structures, was investigated in the presence of Cu(2+) ion. It was found that, when Cu(2+) was added into the system, the self-assembly manner changed significantly. Only in the case of bolaamphiphilic glutamic acid, N,N'-hexadecanedioyl-di-L-glutamic acid (L-HDGA), were the hydrogel formation as well as the nanotube structures maintained. The addition of Cu(2+) ion caused a transition from monolayer nanotube of L-HDGA to a multilayer nanotube with the thickness of the tubular wall about 10 nm. For the other amphiphiles, the gel was destroyed and nanofiber structures were mainly formed. The formed Cu(2+)-containing nanostructures can function as an asymmetric catalyst for Diels-Alder cycloaddition between cyclopentadiene and aza-chalcone. In comparison with the other Cu(2+)-containing nanostructures, the Cu(2+)-mediated nanotube structure showed not only accelerated reaction rate, but enhanced enantiomeric selectivity. It was suggested that, through the Cu(2+) mediated nanotube formation, the substrate molecules could be anchored on the nanotube surfaces and produced a stereochemically favored alignment. When adducts reacted with the substrate, both the enantiomeric selectivity and the reaction rate were increased. Since the Cu(2+)-mediated nanotube can be fabricated easily and in large amount, the work opened a new way to perform efficient chiral catalysis through the supramolecular gel.
几种低分子量 L-谷氨酸基凝胶剂的自组装,它们各自形成螺旋纳米管或纳米纤维结构,在 Cu(2+)离子存在下进行了研究。结果发现,当 Cu(2+)加入到体系中时,自组装方式发生了显著变化。只有在双脂族谷氨酸,N,N'-十六烷二酰基-二-L-谷氨酸(L-HDGA)的情况下,才保持了水凝胶的形成以及纳米管结构。Cu(2+)离子的加入导致 L-HDGA 的单层纳米管向厚度约为 10nm 的多层纳米管转变。对于其他两亲分子,凝胶被破坏,主要形成纳米纤维结构。形成的含 Cu(2+)纳米结构可以作为 Diels-Alder 环加成反应 between cyclopentadiene 和 aza-chalcone 的不对称催化剂。与其他含 Cu(2+)的纳米结构相比,Cu(2+)介导的纳米管结构不仅表现出加速的反应速率,而且提高了对映体选择性。据推测,通过 Cu(2+)介导的纳米管形成,底物分子可以锚定在纳米管表面,并产生立体化学有利的排列。当加合物与底物反应时,对映体选择性和反应速率都得到了提高。由于 Cu(2+)介导的纳米管可以很容易地大量制备,这项工作为通过超分子凝胶进行高效手性催化开辟了一条新途径。