McGuirk C Michael, Mendez-Arroyo Jose, d'Aquino Andrea I, Stern Charlotte L, Liu Yuan, Mirkin Chad A
Department of Chemistry , International Institute for Nanotechnology , Northwestern University , 2145 Sheridan Road , Evanston , Illinois 60208-3113 , USA . Email:
Chem Sci. 2016 Nov 1;7(11):6674-6683. doi: 10.1039/c6sc01454b. Epub 2016 Jul 18.
Herein, we report the reversible "on-off" allosteric regulation of hydrogen-bond-donating (HBD)-Lewis base co-catalytic activity a concerted two-prong methodology entailing cooperative acid-base chemistry and a structurally addressable coordination complex. Specifically, a heteroligated Pt(ii) weak-link approach (WLA) tweezer complex containing both a hemilabile squaramide-piperidine-based catalytic ligand and a sodium sulfonate hydrogen-bond-accepting (HBA) ligand was synthesized. Due to the hemilabile nature of the catalyst-containing ligand, the heteroligated complex can be reversibly toggled between a flexible, semi-open state and a rigid, fully closed state upon the addition of elemental ion cues. H NMR spectroscopy titration studies show that in the semi-open state interligand hydrogen-bonding prevents substrate recognition by the squaramide unit, while in the fully closed state ligand-ligand interactions are prevented. This results in a catalytically active closed state, whereas in the semi-open state, when the piperidine tertiary amine is deliberately protonated, no catalytic activity is observed. Reversible interconversion between the active fully closed state and the dormant protonated semi-open state is achieved in the presence of substrate upon the concerted addition and abstraction of both a proton and a coordinating elemental anion. In this work, allosteric regulation of catalytic activity is demonstrated for both the Michael addition of nitroethane to β-nitrostyrene and the ring-opening of l-(-)-lactide. Taken together, this work details a potentially generalizable platform for the "on-off" allosteric regulation of a family of HBD-Lewis base co-catalysts capable of catalyzing a broad scope of reactions, including the living ring-opening polymerization of cyclic esters.
在此,我们报道了氢键供体(HBD)-路易斯碱共催化活性的可逆“开-关”变构调节,这是一种协同的双管齐下方法,涉及酸碱协同化学和具有结构可寻址性的配位络合物。具体而言,合成了一种杂配的Pt(ii)弱连接方法(WLA)镊子络合物,其包含一个半不稳定的基于方酰胺-哌啶的催化配体和一个磺酸钠氢键受体(HBA)配体。由于含催化剂配体的半不稳定性质,在添加元素离子线索后,杂配络合物可在柔性、半开放状态和刚性、完全封闭状态之间可逆切换。1H NMR光谱滴定研究表明,在半开放状态下,配体间氢键阻止了方酰胺单元对底物的识别,而在完全封闭状态下,配体-配体相互作用被阻止。这导致了催化活性的封闭状态,而在半开放状态下,当哌啶叔胺被特意质子化时,未观察到催化活性。在底物存在下,通过同时添加和脱去一个质子和一个配位元素阴离子,实现了活性完全封闭状态和休眠质子化半开放状态之间的可逆相互转化。在这项工作中,对于硝基乙烷与β-硝基苯乙烯的迈克尔加成反应以及l-(-)-丙交酯的开环反应,均证明了催化活性的变构调节。综上所述,这项工作详细阐述了一个潜在可推广的平台,用于对一类能够催化广泛反应(包括环状酯的活性开环聚合)的HBD-路易斯碱共催化剂进行“开-关”变构调节。