Triphenylamine‐Functionalized Silsesquioxane‐Based Hybrid Porous Polymers: Tunable Porosity and Luminescence for Multianalyte Detection

R Shen, Y Liu, W Yang, Y Hou… - Chemistry–A European …, 2017 - Wiley Online Library
R Shen, Y Liu, W Yang, Y Hou, X Zhao, H Liu
Chemistry–A European Journal, 2017Wiley Online Library
A series of hybrid luminescent porous polymers (HLPPs) are synthesized through Friedel–
Crafts reactions by tuning the molar ratio of triphenylamine (TPA) to octavinylsilsesquioxane
(OVS). The synthesized HLPPs exhibit high Brunauer–Emmett–Teller surface areas up to
841±10 m2 g− 1, high thermal stability with decomposition temperatures (Td at 5 wt%) up to
440° C in air, and strong blue–violet luminescence at approximately 450 nm. The porosities
and luminescent properties of the HLPPs, including emission wavelength, intensity …
Abstract
A series of hybrid luminescent porous polymers (HLPPs) are synthesized through Friedel–Crafts reactions by tuning the molar ratio of triphenylamine (TPA) to octavinylsilsesquioxane (OVS). The synthesized HLPPs exhibit high Brunauer–Emmett–Teller surface areas up to 841±10 m2 g−1, high thermal stability with decomposition temperatures (Td at 5 wt %) up to 440 °C in air, and strong blue–violet luminescence at approximately 450 nm. The porosities and luminescent properties of the HLPPs, including emission wavelength, intensity, fluorescence quantum yield, and monochromaticity, can be tuned easily by modulating the molar ratio of TPA to OVS. In addition, the polymers may serve as excellent fluorescent probes for multianalyte detection, with high fluorescence quenching coefficients (KSV) of 8900 and 4400 m−1 for Fe3+ and Cu2+, respectively.
Wiley Online Library
以上显示的是最相近的搜索结果。 查看全部搜索结果