碘
材料科学
荧光
吸附
多孔性
热稳定性
三嗪
聚合物
氮气
电子转移
化学工程
物理化学
有机化学
高分子化学
复合材料
化学
冶金
工程类
物理
量子力学
作者
Kang Wang,Tong‐Mou Geng,Feng Zhu
摘要
Abstract Two bitetrazole‐based porous organic polymers (POPs), TBTZ and HBTZ, have been synthesized by nucleophilic substitution reactions with yields up to 79.08% and 78.81%, respectively. After a series of characterization, these two POPs show good chemical stability, thermal stability, and high pore properties. Through performance tests, we found that the two POPs show dual functions due to the introduction of bitetrazole, capturing iodine and fluorescence sensing I 2 and 4‐nitrophenol (p‐NP). First, owing to the plenty of nitrogen affinity sites, both TBTZ and HBTZ show excellent iodine adsorption with 3.54 and 5.66 g g −1 , respectively. The higher adsorption amount of HBTZ for iodine than TBTZ is due to the larger specific surface area of HBTZ than TBTZ, and stronger interaction of cyclophosphonitrile unit with iodine are than triazine ring with iodine. Second, on account of their excellent conjugated properties and nitrogen‐enriched structures, TBTZ and HBTZ exhibit high sensitivity to I 2 and p‐NP with K SV of 3.97 × 10 3 and 5.49 × 10 4 L mol −1 and limits of detection of 8.00 × 10 −10 and 5.46 × 10 −11 mol L −1 , respectively. The former is the photo‐induced electron transfer mechanism, while the latter is the energy transfer mechanism.
科研通智能强力驱动
Strongly Powered by AbleSci AI