Wood Technology and Wood Chemistry, Dept. Wood Technology and Wood-based Composites, Georg-August-University of Goettingen, 37077, Goettingen, Germany.
NMR-based Structural Biology, Max-Planck-Institute for Biophysical Chemistry, Am Fassberg 4, 37077, Goettingen, Germany.
Angew Chem Int Ed Engl. 2021 Apr 19;60(17):9712-9718. doi: 10.1002/anie.202100153. Epub 2021 Mar 17.
We present the first example of macroscalar helices co-assembled from temperature-responsive carbohydrate-based bolaamphiphiles (CHO-Bolas) and 1,4-benzenediboronic acid (BDBA). The CHO-Bolas contained hydrophilic glucose or mannose moieties and a hydrophobic coumarin dimer. They showed temperature-responsive reversible micelle-to-vesicle transition (MVT) in aqueous solutions. After the binding of carbohydrate moieties with boronic acids of BDBA in their alkaline solutions, right-handed helices were formed via the temperature-driven chirality transfer of d-glucose or d-mannose from the molecular to supramolecular level. These helices were co-assembled by unreacted BDBA, boronate esters (B-O-C bonds) between CHO-Bolas and BDBA, as well as boroxine anhydrides (B-O-B bonds) of self-condensed BDBA. After heating at 300 °C under nitrogen, the helices displayed excellent morphological stability. Moreover, they emitted bright blue luminescence caused by strong self-condensation of BDBA and decomposition of coumarin dimers.
我们首次展示了由温度响应型糖基两亲分子(CHO- bola 型两亲分子)和 1,4-苯二硼酸(BDBA)共组装的宏观螺旋体。CHO- bola 型两亲分子含有亲水性的葡萄糖或甘露糖部分和疏水性的香豆素二聚体。它们在水溶液中表现出温度响应的可逆胶束到囊泡转变(MVT)。在碱性溶液中,CHO- bola 型两亲分子的糖部分与 BDBA 的硼酸部分结合后,通过 d-葡萄糖或 d-甘露糖的分子到超分子水平的手性转移,形成右手螺旋体。这些螺旋体由未反应的 BDBA、CHO- bola 型两亲分子和 BDBA 之间的硼酸酯(B-O-C 键)以及自缩合的 BDBA 的硼氧烷酐(B-O-B 键)共组装而成。在氮气下加热至 300°C 后,这些螺旋体表现出优异的形态稳定性。此外,由于 BDBA 的强烈自缩合和香豆素二聚体的分解,它们发出明亮的蓝色荧光。