Zhao Xin, Wang Xiao-Zhong, Jiang Xi-Kui, Chen Ying-Qi, Li Zhan-Ting, Chen Guang-Ju
Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, 354 Fenglin Lu, Shanghai 200032, China.
J Am Chem Soc. 2003 Dec 10;125(49):15128-39. doi: 10.1021/ja037312x.
This paper describes the synthesis, self-assembly, and characterization of a new class of highly stable hydrazide-based quadruply hydrogen-bonded heterodimers. All of the hydrazide-derived heterodimers possess the complementary ADDA-DAAD hydrogen-bonding sequences. Hydrazide derivatives 1, which has two intramolecular S(6) RO.H-N hydrogen bonds, and 2 complex to afford two fastly exchanging isomeric heterodimers 1.2 and 1.2' in chloroform, as a result of two different conformational arrangements of 2. An average binding constant K(assoc) of 4.7 x 10(4) M(-)(1) was determined for heterodimer 1.2 and 1.2' by (1)H NMR titration of 1 with changing 2 in chloroform-d. In contrast, 1 binds 11 and 12, both of which are introduced with two intramolecular S(6) hydrogen bonds, to exclusively afford heterodimers 1.11 and 1.12, with K(assoc) values of 1.8 x 10(4) and 5.0 x 10(2) M(-)(1), respectively. Fluorine-containing 19, which has a hydrazide skeleton identical to that of 1 but two intramolecular S(6) F.H-N hydrogen bonds, can also complex with 2, 11, and 12, to afford heterodimers 19.2, 19.2', 19.11, and 19.12, with K(assoc) values of of 1.2 x 10(4) (average value for 19.2 and 19.2'), 5.4 x 10(3), and 1.9 x 10(2) M(-)(1), respectively. The structures of the new heterodimers have been proven with NOESY, IR, and VPO (for some of the heterodimers) experiments. Moreover, 1 and 19 can also strongly bind 2,7-dilauroylamido-1,8-naphthyridine 23 to afford dimers 1.23 and 19.23 with K(assoc) values of 6.0 x 10(5) and 1.4 x 10(5) M(-)(1), respectively. Adding 1 to the 1:1 solution of 23 and 1-octyl-3-(4-oxo-3,4-dihydro-pyrido[2,3-d]pyrimidin-2-yl)urea 24 or 1-octyl-3-(4-oxo-1,4-dihydro-pyrimidin-2-yl)urea 25, which had been developed initially by Zimmerman and Meijer, respectively, induces dimers 23.24 and 23.25 to dissociate, leading to the formation of dimers 1.23 and 24.24 or 25.25, respectively. The new hydrazide-based hydrogen-bonding modules described are useful building blocks for self-assembly and open a new avenue to recognition between discrete supramolecular species.
本文描述了一类新型的基于酰肼的高度稳定的四重氢键异二聚体的合成、自组装及表征。所有酰肼衍生的异二聚体都具有互补的ADDA-DAAD氢键序列。具有两个分子内S(6) RO.H-N氢键的酰肼衍生物1与2络合,由于2的两种不同构象排列,在氯仿中形成两个快速交换的异构异二聚体1.2和1.2'。通过在氘代氯仿中用2滴定1的1H NMR滴定法,测定异二聚体1.2和1.2'的平均结合常数K(assoc)为4.7×10(4) M(-)(1)。相比之下,1与均引入两个分子内S(6)氢键的11和12结合,仅形成异二聚体1.11和1.12,其K(assoc)值分别为1.8×10(4)和5.0×10(2) M(-)(1)。含氟的19具有与1相同的酰肼骨架,但有两个分子内S(6) F.H-N氢键,它也能与2、11和12络合,形成异二聚体19.2、19.2'、19.11和19.12,其K(assoc)值分别为1.2×10(4)(19.2和19.2'的平均值)、5.4×10(3)和1.9×10(2) M(-)(1)。通过NOESY、IR和VPO(针对部分异二聚体)实验证实了新异二聚体的结构。此外,1和19还能与2,7 - 二月桂酰氨基 - 1,8 - 萘啶23强烈结合,形成二聚体1.23和19.23,其K(assoc)值分别为6.0×10(5)和1.4×10(5) M(-)(1)。将1加入到最初分别由齐默尔曼和梅杰开发的23与1 - 辛基 - 3 - (4 - 氧代 - 3,4 - 二氢 - 吡啶并[2,3 - d]嘧啶 - 2 - 基)脲24或1 - 辛基 - 3 - (4 - 氧代 - 1,4 - 二氢 - 嘧啶 - 2 - 基)脲25的1:1溶液中,会诱导二聚体23.24和23.25解离,分别导致形成二聚体1.23和24.24或25.25。所描述的新型基于酰肼的氢键模块是自组装的有用构建块,并为离散超分子物种之间的识别开辟了一条新途径。