| Literature DB >> 22423268 |
Jens Eckelmann1, Vittorio Saggiomo, Svenja Fischmann, Ulrich Lüning.
Abstract
A bi-macrocycle with an incorporated isophthalamide substructure was synthesized by doubleEntities:
Keywords: anion binding; association constant; estimation of binding constants; macrocycle; molecular recognition
Year: 2012 PMID: 22423268 PMCID: PMC3302070 DOI: 10.3762/bjoc.8.2
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Bi-macrocyclic concave host 1 and its non-macrocyclic model 2.
Scheme 1Synthetic scheme for the syntheses of concave host 1 and non-macrocyclic derivative 2. a) Et3N, THF, 16 h, room temp., 61%; b) Grubbs 1st gen. cat., CH2Cl2, 24 h, room temp.; c) Pd/C, H2, MeOH, 24 h, room temp., 77%; d) Et3N, THF, 18 h, room temp., 97%.
Figure 2Expansion of a part of the 1H NMR spectra (200 MHz, 298 K) of pure 1 and 2 in CD2Cl2 (bottom) and after addition of TBACl, DMSO, pyridine-N-oxide (PyNO), triphenylphosphine oxide (TPPO), from bottom to top, respectively. NH proton (red circles), endo-CH proton (red squares).
Figure 3Normalized 1H NMR CIS (see text) for concave host 1 with different anionic and neutral guests. The deviations of the data points at ca. 5 equivalents, from the straight line connecting the origin and the data points at 20 equivalents, describe the strength of binding. The binding strength decreases from top to bottom. The dashed lines have no physical significance but help to demonstrate the deviation from linearity.
Figure 4Normalized 1H NMR CIS (see text) for concave host 2 with different anionic and neutral guests. The deviations of the data points at ca. 5 equivalents, from the straight line connecting the origin and the data points at 20 equivalents, describe the strength of binding. The binding strength decreases from top to bottom. The dashed lines have no physical significance but help to demonstrate the deviation from linearity.