Department of Life Sciences and Chemistry, Jacobs University Bremen, Campus Ring 1, 28759, Bremen, Germany.
Department of Chemistry, Al-Balqa Applied University, 19117, Al-Salt, Jordan.
Chemphyschem. 2020 May 18;21(10):971-976. doi: 10.1002/cphc.201901225. Epub 2020 Apr 7.
The supramolecular recognition of closo,closo-[B H ] by cyclodextrins (CDs) has been studied in aqueous solution by isothermal titration calorimetry and nuclear magnetic resonance spectroscopy. These solution studies follow up on previous mass-spectrometric measurements and computations, which indicated the formation and stability of CD ⋅ B H complexes in the gas phase. The thermodynamic signature of solution-phase binding is exceptional, the association constant for the γ-CD complex with B H reaches 1.8×10 M , which is on the same order of magnitude as the so far highest observed value for the complex between γ-CD and a metallacarborane. The nature of the intermolecular interaction is also examined by quantum-mechanical computational protocols. These suggest that the desolvation penalty, which is particularly low for the B H anion, is the decisive factor for its high binding strength. The results further suggest that the elliptical macropolyhedral boron hydride is another example of a CD binder, whose extraordinary binding affinity is driven by the chaotropic effect, which describes the intrinsic affinity of large polarizable and weakly solvated chaotropic anions to hydrophobic cavities and surfaces in aqueous solution.
通过等温滴定量热法和核磁共振波谱法研究了环糊精(CDs)在水溶液中对 closo,closo-[BH]的超分子识别。这些溶液研究是在先前的质谱测量和计算的基础上进行的,这些测量和计算表明了 CD ⋅ BH 配合物在气相中的形成和稳定性。溶液结合的热力学特征非常特殊,γ-CD 与 BH 的结合常数达到 1.8×10 M,与迄今为止观察到的 γ-CD 与金属碳硼烷之间复合物的最高值相当。通过量子力学计算方案还研究了分子间相互作用的性质。这些结果表明,B H 阴离子的去溶剂化罚没特别低,是其高结合强度的决定性因素。结果还表明,椭圆形的多面体硼氢化物是另一种 CD 配体的例子,其非凡的结合亲和力是由离液效应驱动的,离液效应描述了大的极化和弱溶剂化的离液阴离子在水溶液中对疏水性腔和表面的固有亲和力。