Zhu Jiang, Lin Jian-Bin, Xu Yun-Xiang, Shao Xue-Bin, Jiang Xi-Kui, Li Zhan-Ting
State Key Laboratory of Bio-Organic and Natural Products Chemistry, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, 354 Fenglin Lu, Shanghai 200032, China.
J Am Chem Soc. 2006 Sep 20;128(37):12307-13. doi: 10.1021/ja064218i.
This paper describes the assembly of two new series of self-complementary duplexes by making use of amide units, the simplest assembling units of hydrogen bonding, as binding sites. All the new monomers possess a rigidified anthranilamide skeleton, which is stabilized by intramolecular hydrogen bonding. Amide units are iteratively introduced to one side of the preorganized skeletons to facilitate the formation of intermolecular hydrogen bonding. Compounds 2 and 3 bear two and three CONH(2) units, respectively, while 4, 6, and 7 are incorporated with two, three, and four AcNH units, respectively. For comparison, compound 5, which is similar to 4 but contains one AcNH and one CF(3)CONH unit, is also prepared. X-ray diffraction analysis of 2, 4, and 5 revealed homodimeric motifs in the solid state which are stabilized by two or more intermolecular hydrogen bonds. (1)H NMR investigations in CDCl(3) indicated that all the compounds form hydrogen-bonded homoduplexes. Duplexes 3.3, 6.6, and 7.7 are highly stable in CDCl(3), with a lower K(assoc) limit of 2.3 x 10(5) M(-1). The K(assoc) values of the three duplexes in more polar CDCl(3)/CD(3)CN (9:1, v/v) were determined with the (1)H NMR dilution method. The result opens the way for the development of new polymeric duplexes of well-ordered structures.
本文描述了利用酰胺单元(氢键最简单的组装单元)作为结合位点来组装两个新系列的自互补双链体。所有新单体都具有刚性化的邻氨基苯甲酰胺骨架,该骨架通过分子内氢键得以稳定。酰胺单元被反复引入到预组装骨架的一侧,以促进分子间氢键的形成。化合物2和3分别带有两个和三个CONH₂单元,而化合物4、6和7分别结合有两个、三个和四个AcNH单元。为作比较,还制备了与化合物4相似但含有一个AcNH和一个CF₃CONH单元的化合物5。对化合物2、4和5的X射线衍射分析表明,它们在固态下呈现同二聚体基序,通过两个或更多分子间氢键得以稳定。在CDCl₃中进行的¹H NMR研究表明,所有化合物均形成氢键连接的同双链体。双链体3·3、6·6和7·7在CDCl₃中高度稳定,其缔合常数K(assoc)下限为2.3×10⁵ M⁻¹。利用¹H NMR稀释法测定了这三种双链体在极性更强的CDCl₃/CD₃CN(9:1,v/v)中的K(assoc)值。这一结果为开发具有规整结构的新型聚合物双链体开辟了道路。