Tresca Blakely W, Hansen Ryan J, Chau Calvin V, Hay Benjamin P, Zakharov Lev N, Haley Michael M, Johnson Darren W
Department of Chemistry & Biochemistry and the Materials Science Institute, University of Oregon , Eugene, Oregon 97403-1253, United States.
Supramolecular Design Institute , 127 Chestnut Hill Road, Oak Ridge, Tennessee 37830-7185, United States.
J Am Chem Soc. 2015 Dec 2;137(47):14959-67. doi: 10.1021/jacs.5b08767. Epub 2015 Nov 19.
Aryl CH hydrogen bonds (HBs) are now commonly recognized as important factors in a number of fields, including molecular biology, stereoselective catalysis, and anion supramolecular chemistry. As the utility of CH HBs has grown, so to has the need to understand the structure-activity relationship for tuning both their strength and selectivity. Although there has been significant computational effort in this area, an experimental study of the substituent effects on CH HBs has not been previously undertaken. Herein we disclose a systematic study of a single CH HB by using traditional urea donors as directing groups in a supramolecular binding cavity. Experimentally determined association constants are examined by a combination of computational (electrostatic potential) and empirical (σm and σp) values for substituent effects. The dominance of electrostatic parameters, as observed in a computational DFT study, is consistent with current CH HB theory; however, a novel anion dependence of the substituent effects is revealed in solution.
芳基碳氢键(CH氢键)如今在包括分子生物学、立体选择性催化和阴离子超分子化学等多个领域中被普遍认为是重要因素。随着碳氢键实用性的不断增强,理解用于调节其强度和选择性的构效关系的需求也日益增长。尽管在该领域已有大量计算工作,但此前尚未对取代基对碳氢键的影响进行实验研究。在此,我们通过在超分子结合腔中使用传统尿素供体作为导向基团,公开了对单个碳氢键的系统研究。通过计算(静电势)和经验(σm和σp)取代基效应值相结合的方式,对实验测定的缔合常数进行了考察。如在计算密度泛函理论(DFT)研究中所观察到的,静电参数的主导作用与当前碳氢键理论一致;然而,在溶液中揭示了取代基效应的一种新型阴离子依赖性。