Zimmerman S C, Zeng F, Reichert D E, Kolotuchin S V
Department of Chemistry, University of Illinois, Urbana, IL 61801, USA.
Science. 1996 Feb 23;271(5252):1095-8. doi: 10.1126/science.271.5252.1095.
Hydrogen bond-mediated self-assembly is a powerful strategy for generating large structures from smaller subunits. The synthesis of molecules containing two isophthalic acid units covalently attached to a rigid aromatic spacer is described. By normal pairing of carboxylic acids into hydrogen-bonded dimers, these molecules self-assemble in organic solvents to form either a series of linear aggregates or a cyclic hexamer. These molecules were linked to the core of a family of polyether dendrimers, which caused the hexamer to be formed preferentially. The stability of the hexamer depended on the generation number of the dendrimer. The largest of these hydrogen-bonded macromolecular assemblies is roughly disk-shaped with a 9-nanometer diameter and a 2-nanometer thickness. Its size and molecular mass (34,000 daltons) are comparable to that of small proteins.
氢键介导的自组装是一种利用较小亚基生成大型结构的有效策略。本文描述了含有两个与刚性芳族间隔基共价连接的间苯二甲酸单元的分子的合成。通过羧酸正常配对形成氢键二聚体,这些分子在有机溶剂中自组装形成一系列线性聚集体或环状六聚体。这些分子与一族聚醚树枝状大分子的核心相连,这使得六聚体优先形成。六聚体的稳定性取决于树枝状大分子的代数。这些氢键连接的大分子组装体中最大的大致呈盘状,直径为9纳米,厚度为2纳米。其尺寸和分子量(34,000道尔顿)与小蛋白质相当。