Low molecular weight organogelators derived from threefold symmetric tricarbamates |
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Authors: | Xiaodong Hou Jonathan Butz Jiao Chen Zijun D. Wang Julia X. Zhao Tiffany Shiu Qianli Rick Chu |
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Affiliation: | Department of Chemistry, University of North Dakota, Grand Forks, ND 58202, USA |
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Abstract: | A group of new low molecular weight organogelators based on threefold symmetric tricarbamate were synthesized and characterized. The tricarbamates with long alkyl chains were able to gelate a wide range of polar and nonpolar organic solvents such as acetonitrile and cyclohexane, generally at concentrations lower than 20 g/L. The best organogel formation was obtained using a threefold symmetric tricarbamate in n-dodecane, in which a sufficiently transparent gel was formed at the critical gelation concentration 1 g/L. Intermolecular hydrogen bonding by the tricarbamate in a nonpolar solvent benzene-d6 was indicated by 1H NMR spectra. Its maximum UV absorption was 11 nm higher in chloroform than in n-dodecane, and this red shift indicated increased conjugation between the benzene core and the carbamate substituents, which confirmed a change in its conformation from nonpolar to polar solvent. The self-assembling behavior of the tricarbamate in dilute solutions was investigated by TEM. Fiber-like networks were observed in a large range of solution concentrations. |
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Keywords: | Organogel Low molecular weight gelator Threefold symmetry Carbamate Supramolecular atropisomer Hydrogen bond LMOG LMWG |
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