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Beilstein J. Org. Chem. 2016, 12, 2535–2542, doi:10.3762/bjoc.12.248
Graphical Abstract
Figure 1: Schematic representation of adamantane-substituted squaraine (AdSq) binding as a divalent guest to ...
Figure 2: Absorption spectra of AdSq in acetonitrile. [AdSq] = 7.5 µM. Top: Absorption at different time poin...
Figure 3: Top: Emission spectra (ex: 630 nm) of AdSq immobilized at CDV. [CDV] = 0–100 µM; [AdSq] = 5 µM. Bot...
Figure 4: Confocal fluorescence microscopy of giant unilamellar vesicles (GUVs) of amphiphilic cyclodextrins ...
Figure 5: Top: Absorption spectra at different time points during irradiation of a CDV solution with AdSq imm...
Figure 6: Synthesis of AdSq (I) NaH, DMF, 1,6-dibromohexane, 24 h, rt. (II) benzothiazole, acetonitrile, 12 h...
Beilstein J. Org. Chem. 2012, 8, 1543–1551, doi:10.3762/bjoc.8.175
Figure 1: Mannose–adamantane conjugates 1–4 and amphiphilic cyclodextrin 5.
Figure 2: Integrated peak area (left) and raw titration curves (right) for the ITC measurements of 1–4 with β...
Figure 3: Schematic presentation of the binding between β-cyclodextrin and (A) monovalent guest 1, (B) divale...
Figure 4: (A) Agglutination of β-cyclodextrin vesicles in the presence of monovalent guest 1 and ConA. The su...
Figure 5: (A) Agglutination dependence of β-cyclodextrin vesicles in the presence of guests 2–4. Legend: red ...
Figure 6: (A) Agglutination of β-cyclodextrin vesicles in the presence of guest 2 or 3 and ConA. Legend: red ...
Figure 7: Schematic presentation of the binding of (A) a monovalent, (B) a divalent, or (C) a trivalent guest...
Figure 8: (A) Agglutination of β-cyclodextrin vesicles in the presence of guest 2 or 4 and ConA. Legend: red ...
Figure 9: Schematic presentation of the binding of guest molecules with (A) one or (B) two mannose functions ...