A quick and selective rhodamine based "smart probe" for "signal-on" optical detection of Cu2+ and Al3+ in water, cell imaging, computational studies and solid state analysis

被引:63
作者
Rai, Abhishek [1 ]
Singh, Alok Kumar [2 ]
Tripathi, Kamini [1 ]
Sonkar, Avinash Kumar [1 ]
Chauhan, Brijesh Singh [3 ]
Srikrishna, S. [3 ]
James, Tony D. [4 ]
Mishra, Lallan [1 ]
机构
[1] Banaras Hindu Univ, Inst Sci, Dept Chem, Varanasi, Uttar Pradesh, India
[2] Babasaheb Bhimrao Ambedkar Univ, Dept Appl Chem, Lucknow, Uttar Pradesh, India
[3] Banaras Hindu Univ, Inst Sci, Dept Biochem, Varanasi, Uttar Pradesh, India
[4] Univ Bath, Dept Chem, Bath BA2 7AY, Avon, England
关键词
Chemosensor; Rhodamine; DFT; Real sample analysis; Photoluminescence; FLUORESCENT CHEMOSENSOR; FLUOROGENIC PROBE; RECOGNITION; CHEMODOSIMETER; COPPER; IONS;
D O I
10.1016/j.snb.2018.02.019
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A novel rhodamine hydrazone 1 has been synthesized by the condensation of rhodamine B hydrazide with allylsalicylaldehyde and has been fully characterized using various physicochemical techniques including single crystal XRD. Probe 1 can detect Cu2+ and Al3+ ions in aqueous media and displays a turn-on response in absorbance with a high degree of selectivity amongst other common interfering analytes. Al3+ ions lead to fluorescence enhancementby the opening of the spirolactum ring resulting in chelation enhanced fluorescence. DFT and TDDFT calculations support the experimental results. The 1-Al3+ ensemble acts as secondary sensor for pyrophosphate anion due to metal ion induced decomplexation resulting in a low detection limit. Probe 1 can be utilized for bio imaging and displays morphological transformations from crystalline to amorphous state with associated color changes due to mechanical switching. In the solid state, probe 1 displays distinct color changes with emission at different wavelengths in particular Al3+ and Hg2+ result in a red shift of the CIE-diagram. While the band gap of probe 1 can be tuned from 2.08 eV to 1.60 eV Probe 1 meets many real-world-challenges in that it is prepared using simple synthetic methods, produces fast and distinct response towards multiple-ions, observed by the "naked eye" in solution and on a TLC plate, and can be exploited for binary data storage. (C) 2018 Elsevier B.V. All rights reserved.
引用
收藏
页码:95 / 105
页数:11
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