Gavette Jesse V, McGrath Jacqueline M, Spuches Anne M, Sargent Andrew L, Allen William E
Department of Chemistry, Science and Technology Building, East Carolina University, Greenville, North Carolina 27858-4353, USA.
J Org Chem. 2009 May 15;74(10):3706-10. doi: 10.1021/jo9000788.
Hybrid receptors designed to recognize both the sulfonate headgroup and the fluorous tail of perfluorooctanesulfonate (CF(3)(CF(2))(7)SO(3)(-), "PFOS") were prepared by coupling fluorinated carboxylic acids onto poly(aminomethyl)benzene scaffolds. Binding to PFOS, CF(3)SO(3)(-), p-TsO(-), and Cl(-) was monitored by (1)H NMR and isothermal titration calorimetry (ITC). In chloroform solvent, hydrogen-bonding to anions is accompanied by downfield shifts in the amide NH protons of the fluorinated receptors and by evolution of heat. Association constants for 1:1 complexation (K(assoc)) are >1000 M(-1). An analogous hydrocarbon receptor binds weakly to anionic guests (K(assoc) < 50 M(-1)). Ab initio calculations indicate that the differences in 1:1 binding strengths between fluorous and nonfluorous hosts cannot be ascribed to differences in NH donor acidities.
通过将氟化羧酸偶联到聚(氨甲基)苯支架上,制备了用于识别全氟辛烷磺酸(CF(3)(CF(2))(7)SO(3)(-),“PFOS”)的磺酸头部基团和氟代尾部的杂化受体。通过(1)H NMR和等温滴定量热法(ITC)监测与PFOS、CF(3)SO(3)(-)、对甲苯磺酸根(p-TsO(-))和氯离子(Cl(-))的结合。在氯仿溶剂中,与阴离子的氢键作用伴随着氟化受体酰胺NH质子的化学位移向低场移动以及热量的释放。1:1络合的缔合常数(K(assoc))>1000 M(-1)。类似的烃类受体与阴离子客体的结合较弱(K(assoc) < 50 M(-1))。从头算计算表明,氟代主体和非氟代主体之间1:1结合强度的差异不能归因于NH供体酸度的差异。