A pyridoxal-based chemosensor for visual detection of copper ion and its application in bioimaging
摘要:
A pyridoxal-based chemosensor was synthesized by reacting hydrazine hydrate and pyridoxal hydrochloride in ethanol and characterized by NMR and ESI-MS. The optical properties of the compound were investigated in a methanol: HEPES solution. The compound displayed selectivity for Cu2+, as evidenced by a colorless to yellow color change, which was characterized using UV-vis spectroscopy. The fluorescence of the compound can be quenched only by Cu2+, accompanying by a color change from blue to colorless. Furthermore, it can be used in bioimaging. (C) 2014 Fang-Jun Huo. Published by Elsevier B.V. on behalf of Chinese Chemical Society. All rights reserved.
Enhanced chemical sensing for Cu<sup>2+</sup> based on composites of ZIF-8 with small molecules
作者:Jun Zhang、Xiuyang Zhao、Xuefeng Liu、Chuan Dong
DOI:10.1039/c9ra10695b
日期:——
Two organic molecules, pyridoxal hydrazide (PAH) and salicylaldehyde based Rhodamine B hydrazone (RBS) were integrated into zeolitic imidazolate framework-8 (ZIF-8) to give composites, namely PAH/ZIF-8 and RBS/ZIF-8. The organic molecules and ZIF-8 are proposed to be assembled via hydrogen bonds and π–π stacking in the composites. The mass fraction of PAH and RBS in the composites was calculated to
A pyridoxal-based chemosensor for visual detection of copper ion and its application in bioimaging
作者:Cai-Xia Yin、Li-Jun Qu、Fang-Jun Huo
DOI:10.1016/j.cclet.2014.06.017
日期:2014.9
A pyridoxal-based chemosensor was synthesized by reacting hydrazine hydrate and pyridoxal hydrochloride in ethanol and characterized by NMR and ESI-MS. The optical properties of the compound were investigated in a methanol: HEPES solution. The compound displayed selectivity for Cu2+, as evidenced by a colorless to yellow color change, which was characterized using UV-vis spectroscopy. The fluorescence of the compound can be quenched only by Cu2+, accompanying by a color change from blue to colorless. Furthermore, it can be used in bioimaging. (C) 2014 Fang-Jun Huo. Published by Elsevier B.V. on behalf of Chinese Chemical Society. All rights reserved.