| Literature DB >> 28737899 |
Anupam Majumdar1, Subhendu Mondal1, Constantin G Daniliuc2, Debashis Sahu3, Bishwajit Ganguly3, Sourav Ghosh4, Utpal Ghosh4, Kumaresh Ghosh1.
Abstract
α-Amino acid derived benzimidazole-linked rhodamines have been synthesized, and their metal ion sensing properties have been evaluated. Experimentally, l-valine- and l-phenylglycine-derived benzimidazole-based rhodamines 1 and 2 selectively recognize Al3+ ion in aqueous CH3CN (CH3CN/H2O 4/1 v/v, 10 mM tris HCl buffer, pH 7.0) over the other cations by exhibiting color and "turn-on" emission changes. In contrast, glycine-derived benzimidazole 3 remains silent in the recognition event and emphasizes the role of α-substitution of amino acid undertaken in the design. The fact has been addressed on the basis of the single-crystal X-ray structures and theoretical calculations. Moreover, pink 1·Al3+ and 2·Al3+ ensembles selectively sensed F- ions over other halides through a discharge of color. Importantly, compounds 1 and 2 are cell permeable and have been used as imaging reagents for the detection of Al3+ uptake in human lung carcinoma cell line A549.Entities:
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Year: 2017 PMID: 28737899 DOI: 10.1021/acs.inorgchem.7b00835
Source DB: PubMed Journal: Inorg Chem ISSN: 0020-1669 Impact factor: 5.165