Conformationally Mobile Acyclic Cucurbit[n]uril-Type Receptors Derived from an S-shaped Methylene Bridged Glycoluril Pentamer

构象可移动的非环状葫芦脲[n]型受体,源自S形亚甲基桥联的乙二醇脲五聚体

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Abstract

We report the synthesis of the conformationally mobile S-shaped glycoluril pentamer building block 3a and two new acyclic CB[n]-type receptors P1 and P2. P1 (9 mM) and P2 (11 mM) have moderate aqueous solubility but their host•guest complexes are poorly soluble. Host P1 does not undergo intermolecular self-association whereas P2 does (K(s) = 189±27 M(-1)). (1)H NMR titrations show that P1 and P2 are poor hosts toward hydrophobic (di)cations 6 - 11 (P1: K(a) = 375-1400 M(-1); P2: K(a) = 1950-19800 M(-1)) compared to Tet1 and Tet2 (Tet1: K(a) = 3.09 × 10(6) to 4.69 × 10(8) M(-1); Tet2: K(a) = 4.59 × 10(8) to 1.30 × 10(10) M(-1)). Molecular modelling shows that P1 and P2 exist as a mixture of three different conformers due to the two S-shaped methylene bridged glycoluril dimer subunits that each possess two different conformations. The lowest energy conformers of P1 and P2 do not feature a well-defined central cavity. In the presence of guests, P2 adapts its conformation to form 1:1 P2•guest complexes; the binding free energy pays the energetic price of conformer selection. This energetically unfavorable conformer selection results in significantly decreased K(a) values of P1 and P2 compared to Tet1 and Tet2.

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