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李振, Xiaohong Cheng, Qianqian Li, Jingui Qin, and Zhen Li*
VOL. 2 • NO. 4 • 1066-1072 • 2010,-0001,():
-1年11月30日
On the basis of the protection reaction between ethanethiol and aldehyde, we designed and synthesized two new ratiometric fluorescent chemosensors, 3 and 4, by using intramolecular charge transfer (ICT) as a signaling mechanism. Upon the addition of Hg2+ ion, both probes displayed apparent luminescence color changes, which could be observed by naked eyes under a UV lamp. Unexpectedly, both chemosensors also gave response to the addition of trace silver ions, making this kind of chemosensors as the first example of ratiometric fluorescent probe that showed dual channel fluorescence for both Hg2+ and Ag+. The test strips experiments suggested that 3 and 4 could serve as practical fluorescent probes for rapid detection of Hg2+ ion.
chemosensor • mercury • deprotection of thioacetals • intramolecular charge transfer • fluorescence • high selectivity
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李振, Qianqian Li, † Jianhua Zou, ‡ Junwu Chen, ‡ Zijun Liu, † Jingui Qin, † Zhen Li, †, * and Yong Cao‡
J. Phys. Chem. B 2009, 113, 5816-5822,-0001,():
-1年11月30日
A novel series of indole-based conjugated oligomers were synthesized by Wittig-Horner-Emmons olefination from the aryl-bridged bisindole aldehydes and the corresponding bisphosphonates. The introduction of indole into the light-emitting materials made these oligmers exhibit favorable properties. They were thermally stable, and the UV-vis spectra of the oligomers could be modulated by the arylenevinylene units; their PL and EL spectra also showed similar properties that can be further modulated. The highest luminance achieved in a device with the configuration ITO/PEDOT:PSS/oligomer/Ba/Al was 2536 cd/m2 at 7.5 V for oligomer P6, and the highest external EL quantum efficiency of 0.39% and luminous efficiency of 0.97 cd/A were attained by oligomer P1.
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【期刊论文】New Indole-Based Metal-Free Organic Dyes for Dye-Sensitized Solar Cells
李振, Qianqian Li, Lanlan Lu, Cheng Zhong, Jie Shi, Qing Huang, Xianbo Jin, Tianyou Peng, * Jingui Qin, and Zhen Li*
J. Phys. Chem. B 2009, 113, 14588-14595,-0001,():
-1年11月30日
Two indole-based organic dyes were conveniently prepared and well characterized. The triphenylamine or carbazole moieties were bonded to the indole group acting as a potential electron donor, which can tune the HOMO and LUMO levels of the resultant dye, and another triphenylamine or carbazole group was linked to the pyrrole ring on the nitrogen atom, which was expected to suppress the aggregation of the dye in the solid state to some degree. These two dyes were utilized as dye sensitizers in dye-sensitized solar cells and demonstrated efficient photon-to-electron conversion properties.
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李振, Zhong'an Li, † Gui Yu, ‡ Pan Hu, † Cheng Ye, ‡ Yunqi Liu, ‡ Jingui Qin, † and Zhen Li*, †
Macromolecules 2009, 42, 1589-1596,-0001,():
-1年11月30日
By modifying the synthetic procedure, the previous reported impossible approach was successfully utilized to construct new azo-chromophore-containing hyperbranched polymers (HP1 and HP2) from AB2 monomers through click chemistry reactions with the aid of copper(I) catalysis. The two polymers were soluble in organic solvents and well characterized. Thanks to the advantages of the hyperbranched polymeric structure, the two polymers demonstrated good NLO properties, making them promising candidates for the practical applications.
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李振, Zhong’an Li, Xiaoding Lou, Haibo Yu, Zhen Li, * and Jingui Qin
Macromolecules 2008, 41, 7433-7439,-0001,():
-1年11月30日
To develop sensitive and selective CN-chemosensors, a new imidazole-functionalized polyfluorene (P1) was designed and obtained conveniently, the fluorescence of which could be completely quenched by Cu2+ ions at the concentration as low as 0.20 ppm in diluted solutions. By utilizing the much higher stability constant of the complex of CN-and Cu2+, the quenched fluorescence of the solution of P1 by Cu2+ ions could recover upon the addition of trace CN-anions, with the detection limit down to 0.31 ppm, making P1 a novel, sensitive and selective cyanide probe.
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