Yongxiao Xu
University of Jinan
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Featured researches published by Yongxiao Xu.
Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy | 2015
Kangnan Wang; Zhiqiang Liu; Ruifang Guan; Duxia Cao; Hongyu Chen; Yanyan Shan; Qianqian Wu; Yongxiao Xu
Four coumarin benzothiazole derivatives, N-(benzo[d]thiazol-2-yl)-2-oxo-2H-chromene-3-carboxamide (1), (Z)-N-(3-methylbenzo[d]thiazol-2(3H)-ylidene)-2-oxo-2H-chromene-3-carboxamide (2), 7-(diethylamino)-N-(benzo[d]thiazol-2-yl)-2-oxo-2H-chromene-3-carboxamide (3) and (Z)-7-(diethylamino)-N-(3-methylbenzo[d]thiazol-2(3H)-ylidene)-2-oxo-2H-chromene-3-carboxamide) (4), have been synthesized. Their crystal structures, photophysical properties in acetonitrile and recognition properties for cyanide anions have been investigated. All the compounds are generally planar, especially compound 1 exhibits perfect planarity with dihedral angle between benzothiazolyl group and coumarin group being only 3.63°. Coumarin benzothiazole compounds 1 and 3 can recognize cyanide anions by Michael addition reaction and compound 3 exhibits color change from yellow to colorless and green fluorescence was quenched completely, which can be observed by naked eye. Coumarin benzothiazolyliden compound 4 can recognize cyanide anions with fluorescence turn-on response based on the copper complex ensemble displacement mechanism.
Fibers and Polymers | 2016
Yongxiao Xu; Huihui Chen; Ruifang Guan; Duxia Cao; Qianqian Wu; Xueying Yu
A new fluorescence turn-on chemosensor based on two dipyridylamine groups substituted aurone moiety, 4’-2,2’-dipyridylamine-3-2,2’-dipyridylamine aurone (1), was synthesized. The recognition properties of the compound for cyanide anions and copper ions were investigated. Yellow fluorescence of the compound is almost quenched completely because of the complexation between the compound and copper ions. After the subsequent addition of cyanide anions, fluorescence spectrum is recovered to the original status of the compound owing to the strong bonding ability between cyanide anions and copper ions and the removal of copper ions from the complexes. The recognition also can be observed by naked eye. The compound exhibits a good reversibility and can be used repeatedly to recognize cyanide anions for several times.
Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy | 2017
Zian Wang; Qianqian Wu; Jiale Li; Shuang Qiu; Duxia Cao; Yongxiao Xu; Zhiqiang Liu; Xueying Yu; Yatong Sun
Two new benzoyl coumarin amide derivatives with ortho hydroxyl benzoyl as terminal group have been synthesized. Their photophysical properties and recognition properties for cyanide anions in acetonitrile have also been examined. The influence of electron donating diethylamino group in coumarin ring and hydroxyl in benzoyl group on recognition properties was explored. The results indicate that the compounds can recognize cyanide anions with obvious absorption and fluorescence spectral change and high sensitivity. The import of diethylamine group increases smartly the absorption ability and fluorescence intensity of the compound, which allows the recognition for cyanide anions can be observed by naked eyes. The in situ hydrogen nuclear magnetic resonance spectra combining photophysical properties change and jobs plot data confirm that Michael addition between the chemosensors and cyanide anions occurs. Molecular conjugation is interrupted, which leads to fluorescence quenching. At the same time, there is a certain extent hydrogen bond reaction between cyanide and hydroxyl group in the compounds, which is beneficial to the recognition.
Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy | 2016
Muhan Liang; Kangnan Wang; Ruifang Guan; Zhiqiang Liu; Duxia Cao; Qianqian Wu; Yanyan Shan; Yongxiao Xu
Four hemicyanine dyes as chemosensors for cyanide anions were synthesized easily. Their photophysical properties and recognition properties for cyanide anions were investigated. The results indicate that all the dyes can recognize cyanide anions with obvious color, absorption and fluorescence change. The recognition mechanism analysis basing on in situ (1)H NMR and Job plot data indicates that to the compounds with hydroxyl group, the recognition mechanism is intramolecular hydrogen bonding interaction. However, to the compounds without hydroxyl group, cyanide anion is bonded to carbon-carbon double bond in conjugated bridge and induces N(+)CH3 to neutral NCH3. Fluorescence of the compounds is almost quenched upon the addition of cyanide anions.
Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy | 2017
Yongxiao Xu; Qinghua Yang; Duxia Cao; Zhiqiang Liu; Songfang Zhao; Ruifang Guan; Yibing Wang; Qianqian Wu; Xueying Yu
A novel silicon-oxygen aurone derivative TBDPSA was synthesized and used for the detection of fluoride anions in aqueous solution based on a specifically F--triggered silicon-oxygen cleavage. Even though the compound has shown high selectivity, obvious absorption and fluorescence response for fluoride anions in aqueous solution, but it also is suffered from many limits, such as low detection sensitivity and long response time. Here the compound was successfully assembled on the graphene oxide (GO) surface by π-π stacking. GO improves recognition sensitivity and shortens response time of TBDPSA for fluoride anions by taking advantage of the nanocarrier GO. Compared with TBDPSA, the response time of GO/TBDPSA is shortened greatly from 1h to <5s and the detection limit is lowered about four times with fluorescence as detected signal. Generally speaking, GO is an excellent promoter for accelerate recognition.
Chemistry of Heterocyclic Compounds | 2017
Xueying Yu; Kangnan Wang; Duxia Cao; Qianqian Wu; Ruifang Guan; Yongxiao Xu; Yatong Sun; Zhiqiang Liu
A benzothiazolium salt containing carbazole group has been synthesized in a good yield via simple condensation reaction. Its photophysical properties and affinity for cyanide anion (tetrabutylammonium cyanide) have been investigated. The compound exhibited quick and well visible UV/Vis absorption and fluorescence responses to cyanide anion in MeCN, as the yellow color faded and the orange fluorescence disappeared. The in situ analysis by 1H NMR indicated that the cyanide anion was added to the C=N bond in the benzothiazolyl group.
Materials Chemistry and Physics | 2015
Qianqian Wu; Zhiqiang Liu; Duxia Cao; Ruifang Guan; Kangnan Wang; Yanyan Shan; Yongxiao Xu; Lin Ma
Inorganic Chemistry Communications | 2015
Yanyan Shan; Yunhui Sun; Ning Sun; Ruifang Guan; Duxia Cao; Kangnan Wang; Qianqian Wu; Yongxiao Xu
Sensors and Actuators B-chemical | 2017
Xueying Yu; Kangnan Wang; Duxia Cao; Zhiqiang Liu; Ruifang Guan; Qianqian Wu; Yongxiao Xu; Yatong Sun; Xun Zhao
Inorganic Chemistry Communications | 2016
Qianqian Wu; Lin Ma; Yongxiao Xu; Duxia Cao; Ruifang Guan; Zhiqiang Liu; Xueying Yu