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通过改变 Gd3+ [15-金属冠-5]侧链来增强客体亲和力和对映选择性。

Enhanced guest affinity and enantioselectivity through variation of the Gd3+ [15-metallacrown-5] side chain.

机构信息

Department of Chemistry, University of Michigan, Ann Arbor, 930 N. University Ave, Ann Arbor, Michigan 48109, United States.

出版信息

Inorg Chem. 2012 Aug 6;51(15):8034-41. doi: 10.1021/ic300110g. Epub 2012 May 2.

Abstract

Supramolecular hosts that bind guests reversibly are investigated for potential catalysis and separations applications. Chiral Ln(3+)[15-Metallacrown-5] metallocavitands bind carboxylate guests in hydrophobic cavities generated by their ligand side chains. A thermodynamic study on Gd(3+)[15-metallacrown-5] hosts with ligands bearing phenyl side chains containing 0, 1, and 2 methylene spacers (1-pgHA, 1-pheHA, 1-hpheHA, respectively) is presented to quantitatively assess how guest affinity and chiral selectivity can be enhanced through changes to the ligand side chain. Guest binding affinity was measured with cyclic voltammetry using ferrocene carboxylate as a redox probe. K(a) values between ferrocene carboxylate and 1-pgHA and 1-pheHA were 4800 ± 400 M(-1) and 4400 ± 700 M(-1), respectively. Significantly stronger binding affinity of 12,100 ± 700 M(-1) was measured with 1-hpheHA, a result of the longer side-chains more completely encapsulating the guest. A similar trend was observed with benzoate. The side chain also influenced enantioselectivity, as K(S)/K(R) values of up to 2.2 ± 0.6 were measured. The side chain dependent guest binding supports the development of highly selective Ln(3+)[15-Metallacrown-5] hosts for use in catalysis and separations through careful ligand design.

摘要

研究了能够可逆结合客体的超分子主体,以探索其在潜在催化和分离应用中的可能性。手性 Ln(3+)[15-金属冠-5]金属穴醚通过其配体侧链在疏水性空腔中结合羧酸类客体。本文介绍了带有苯侧链的 Gd(3+)[15-金属冠-5]主体(分别为 1-pgHA、1-pheHA 和 1-hpheHA)的热力学研究,定量评估了通过改变配体侧链如何增强客体亲和力和手性选择性。使用循环伏安法,以二茂铁羧酸酯作为氧化还原探针,测量客体的结合亲和力。与 1-pgHA 和 1-pheHA 相比,1-hpheHA 与 ferrocene carboxylate 的 K(a)值分别为 4800±400 M(-1)和 4400±700 M(-1),这是由于较长的侧链更完全地包裹了客体,因此结合亲和力更强。与苯甲酸的情况类似。侧链也影响对映选择性,测得的 K(S)/K(R)值高达 2.2±0.6。客体结合的这种侧链依赖性支持通过精心设计配体来开发用于催化和分离的高选择性 Ln(3+)[15-金属冠-5]主体。

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