Self-assembly of an Octa-uranate Cage Complex with a Rigid bis-Catechol Ligand |
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Authors: | PIERRE THUÉRY BERNARDO MASCI |
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Affiliation: | 1. CEA/Saclay , DSM/DRECAM/SCM (CNRS URA 331) , Bat. 125, Gif-sur-Yvette , 91191 , France;2. Dipartimento di Chimica and ICCOM-CNR , Universita 'La Sapienza' , Box 34, Roma 62, P.le Aldo Moro 5, Roma , 00185 , Italy |
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Abstract: | While the terminally protected tripeptide Boc-Phe-Gly-m-ABA-OMe I (m-ABA, meta-amino benzoic acid) is an excellent gelator of aromatic organic solvents, another similar tripeptide Boc-Leu-Gly-m-ABA-OMe II, where the Phe residue of peptide I is replaced by Leu, cannot form gels with the same solvents. The morphology of the gels of peptide I, characterised by the field-emission scanning electron microscopy and high-resolution transmission electron microscopy, reveals the formation of nanofibrous networks which are known to encapsulate solvent molecules to form gels. The wide-angle X-ray scattering studies of the gels suggest the β-sheet-mediated self-assembly of peptide I in the formation of a nanofibrous network, where π-stacking interactions of Phe play an important role in the self-assembly and gel formation. The dried gel of peptide I observed between crossed polarisers after binding with a physiological dye, Congo red, shows a bluish-green birefringence, a characteristic of amyloid fibrils. |
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Keywords: | Uranyl ion Cage complex Catechol Crystal structure |
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