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李振, Zhong'an Li, † Wenbo Wu, † Gui Yu, ‡ Yunqi Liu, ‡ Cheng Ye, ‡ Jingui Qin, † and Zhen Li*, †
VOL. 1 • NO. 4 • 856-863 • 2009,-0001,():
-1年11月30日
For the first time, a series of dendronlike main-chain polyurethanes have been successfully designed and synthesized, in which different isolation groups with different sizes were introduced to modify the subtle structure of the used "H"-type chromophores, according the concept of "suitable isolation groups". Thanks to the advantages of "H"-type chromophores and the introduced suitable isolation group, all of the polymers demonstrated large NLO effects, good processability, improved optical transparency, and thermal stability. The obtained experimental results indicated that the utilization of "H"-type chromophores might be a promising choice to efficiently translate the large-values of the organic chromophores into high macroscopic NLO activities of polymers.
", H", -type chromophore • nonlinear optics • polyurethane • synthesis • dendronlike structure • suitable isolation groups
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李振, Shoucheng Dong, Zhen Li, * and Jingui Qin
J. Phys. Chem. B 2009, 113, 434-441,-0001,():
-1年11月30日
A series of new carbazole-based luminophores (1-12) were synthesized and well characterized, which demonstrated aggregation-induced emission enhancement (AIEE) properties. The obtained experimental results demonstrated that the attachment of aromatic rotors to luminophore moieties would lead to the decreased quantum yields (measured in diluted solutions); the more rotors attached, the smaller the quantum yields tested. This further confirmed that the AIEE phenomena were caused by the restriction of the intramolecular vibrational and rotational motions in an indirect manner.
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李振, Zhong'an Li, † Gui Yu, ‡ Yunqi Liu, ‡ Cheng Ye, ‡ Jingui Qin, † and Zhen Li*, †
Macromolecules 2009, 42, 6463-6472,-0001,():
-1年11月30日
Two new dendronized nonlinear optical (NLO) polyfluorenes were synthesized with high azochromophore loading density by the introduction of high generation chromophore dendrons on the side chains. Thanks to the advantages of Sharpless' click chemistry reaction, the dendrons were conveniently bonded to the backbone of polyfluorene with the conversion of 100%, although they were really very bulky. The new-formed triazole rings in the dendrons acted as suitable isolation groups to minimize the strong dipole-dipole interactions among the polar chromophore moieties to improveNLO effects, according to the results obtained from UV-vis spectra and order parameters. All the polymers were well characterized and exhibited good solubility, high thermal ability, wide optical window, and largeNLOeffects (up to 106.0 pm/V). In addition, the testedNLOresults of these dendronzied polymers demonstrated a deviation from the dipolar frustration that typically limits the NLO effect in conventional chromophore/polymer composite materials, indicating that the frequently observed asymptotic dependence of electro-optic activity on chromophore density may be overcome through rational design.
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李振, Xiaoding Lou, Li Qiang, Jingui Qin, and Zhen Li*
VOL. 1 • NO. 11 • 2529-2535 • 2009,-0001,():
-1年11月30日
By applying an indirect strategy, a new rhodamine-based dye (I) was successfully developed as a colorimetric chemosensor for the sensitive detection of cyanide. In the presence of copper ions, the colorless solution of compound I changed to magenta; however, upon the addition of trace cyanide, the magenta color faded to colorless immediately, with a detection limit as low as 0.013 ppm (ΔA) 0.054), much lower than the Maximum Contaminant Level for cyanide in drinking water (0.20 ppm) set by the US Environmental Protection Agency. Other anions, including Cl-, I-, IO3-, SO4 2-, NO2-, Br-, H2PO4-, F-, SCN-, HSO4-, and ClO4-, had nearly no influence on the probing behavior of dye I toward cyanide.
colorimetric chemosensor • cyanide • indirect method • rhodamine-based dye • high sensitivity • visual detection
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李振, Qi Zeng, a Ping Cai, a Zhen Li, *a Jingui Qina and Ben Zhong Tangb
Electronic Supplementary Information(ESI),-0001,():
-1年11月30日
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