Urea-Functionalized M4L6 Cage Receptors: Anion-Templated Self-Assembly and Selective Guest Exchange in Aqueous Solutions

作者:Custelcean Radu*; Bonnesen Peter V; Duncan Nathan C; Zhang Xiaohua; Watson Lori A; Van Berkel Gary; Parson Whitney B; Hay Benjamin P
来源:Journal of the American Chemical Society, 2012, 134(20): 8525-8534.
DOI:10.1021/ja300677w

摘要

We present an extensive study of a novel class of de novo designed tetrahedral M4L6 (M = Ni, Zn) cage receptors, wherein internal decoration of the cage cavities with urea anion-binding groups, via functionalization of the organic components L, led to selective encapsulation of tetrahedral oxoanions EO4n- (E = S, Se, Cr, Mo, W, n = 2; E = P, n = 3) from aqueous solutions, based on shape, size, and charge recognition. External functionalization with tBu groups led to enhanced solubility of the cages in aqueous methanol solutions, thereby allowing for their thorough characterization by multinuclear (H-1, C-13, Se-77) and diffusion NMR spectroscopies. Additional experimental characterization by electrospray ionization mass spectrometry, UV-vis spectroscopy, and single-crystal X-ray diffraction, as well as theoretical calculations, led to a detailed understanding of the cage structures, self-assembly, and anion encapsulation. We found that the cage self-assembly is templated by EO4n- oxoanions (n >= 2), and upon removal of the templating anion the tetrahedral M4L6 cages rearrange into different coordination assemblies. The exchange selectivity among EO4n- oxoanions has been investigated with Se-77 NMR spectroscopy using (SeO42-)-Se-77 as an anionic probe, which found the following selectivity trend: PO43- >> CrO42- > SO42- > SeO42- > MoO42- > WO42-. In addition to the complementarity and flexibility of the cage receptor, a combination of factors have been found to contribute to the observed anion selectivity, including the anions' charge, size, hydration, basicity, and hydrogen-bond acceptor abilities.

  • 出版日期2012-5-23