Zwitterionic guanidinium compounds serve as electroneutral anion hosts

Citation
M. Berger et Fp. Schmidtchen, Zwitterionic guanidinium compounds serve as electroneutral anion hosts, J AM CHEM S, 121(43), 1999, pp. 9986-9993
Citations number
79
Categorie Soggetti
Chemistry & Analysis",Chemistry
Journal title
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
ISSN journal
00027863 → ACNP
Volume
121
Issue
43
Year of publication
1999
Pages
9986 - 9993
Database
ISI
SICI code
0002-7863(19991103)121:43<9986:ZGCSAE>2.0.ZU;2-E
Abstract
The complexation of anions in solvating phases by artificial receptors requ ires the total or at least partial replacement of their solvation shells by the mutual supramolecular interactions. Supplementing well-known approache s that rely on net electrostatic charges or extensive hydrogen bonding for guest complexation the present work focuses on the alternative concept of c harge separation in the host to create a Cationic site suitable for strong interaction with negatively charged guests. An anionic moiety balancing the overall host charge to zero is incorporated in a way to prevent collapsing into an ion pair. Using bicyclic guanidinium anchor groups for direct gues t binding and a closo-borane cluster as an anionic countercharge the ditopi c zwitterionic host 17 was designed and prepared in a convergent synthetic scheme. Despite its electroneutrality 17 binds inorganic and organic oxoani ons such as sulfate, oxalate, squarate and p-nitrophenyl phosphate with aff inity constants reaching 3.1 x 10(4) M-1 in DMSO (squarate(2-)) or 1.1 x 10 (5) M-1 in acetonitrile (p-nitrophenyl phosphate(2-)). Clean 1:1 host-guest stoichiometry is found in dilute solutions, whereas at higher concentratio ns different complex compositions and host dimerization are observed. Titra tion calorimetry reveals the major role of entropy in host-guest associatio n. Tn essence, anion binding by 17 and its congeners in strongly solvating; solvents such as DMSO is favored by massive positive association entropies that in the case of sulfate complexation to 17 override an unfavorable pos itive binding enthalpy constituting an exclusively entropy-driven process.