Department of Chemistry, University at Buffalo, the State University of New York, Buffalo, NY 14260, USA.
Org Biomol Chem. 2022 Sep 14;20(35):6962-6978. doi: 10.1039/d2ob01467j.
As a major class of foldamers, aromatic oligoamide foldamers have attracted intense interest. The rigidity of aromatic residues and amide linkages allows the development of foldamers with readily predictable, stable conformations. Aromatic oligoamide foldamers having backbones fully constrained by intramolecular hydrogen bonds have attracted wide attention. Depending on their lengths, such foldamers adopt crescent or helical conformations with highly negative inner cavities. Cyclizing the backbone of the aromatic oligoamides affords the corresponding macrocycles which are characterised by persistent shapes and non-deformable inner cavities. With their defined, inner cavities, such aromatic oligoamide foldamers and macrocycles have served as hosts for cationic and polar guests, and as transmembrane channels for transporting ions and molecules. Recent synthetic progress resulted in the construction of multi-turn hollow helices that offer three-dimensional inner pores with adjustable depth. Reducing the number of backbone-constraining hydrogen bonds leads to oligoamides which, with their partially constrained backbones, undergo either solvent- or guest-dependent folding. One class of such aromatic olgioamide foldamders, which offer multiple backbone amide NH groups as hydrogen-bond donors, are designed to bind anions with adjustable affinities.
作为折叠聚合物的一大类,芳族寡酰胺折叠聚合物引起了人们的浓厚兴趣。芳族残基和酰胺键的刚性允许开发具有易于预测、稳定构象的折叠聚合物。具有完全由分子内氢键约束的骨架的芳族寡酰胺折叠聚合物引起了广泛关注。根据其长度,这些折叠聚合物采用具有高度负内腔的新月形或螺旋形构象。芳族寡酰胺的骨架环化得到相应的大环,其特征为持久的形状和不可变形的内腔。由于其确定的内腔,这些芳族寡酰胺折叠聚合物和大环作为阳离子和极性客体的主体,以及作为离子和分子运输的跨膜通道。最近的合成进展导致了多匝空心螺旋的构建,提供了具有可调深度的三维内孔。减少骨架约束氢键的数量会导致寡酰胺,其部分约束的骨架经历溶剂或客体依赖性折叠。其中一类芳族寡酰胺折叠聚合物,其提供多个骨架酰胺 NH 基团作为氢键供体,被设计用于与阴离子结合,具有可调节的亲和力。