乙醛
材料科学
阻带
检出限
甲醛
荧光
水溶液
微型多孔材料
光子晶体
生物传感器
纳米技术
光化学
光电子学
有机化学
光学
化学
色谱法
乙醇
复合材料
物理
谐振器
作者
Xiaokang Lu,Ran Li,Bo Han,Haojie Ma,Xueyan Hou,Yulong Kang,Yuqi Zhang,Ji‐Jiang Wang
标识
DOI:10.1021/acsami.0c22105
摘要
inverse opal photonic crystals (PCs), establishing a practically multiple-application detection platform for FA and AcH in air, aquatic products, and living cells. Nucleophilic addition products between the amine group of the naphthalimide derivative and aldehydes emit strong FL at ∼550 nm, realizing selective FL detection for FA and AcH. The emitted FL can be enhanced remarkably because of the slow photon effect of PCs, in which the FL wavelength is located at the stopband edge of PCs. A highly sensitive detection for FA and AcH with limits of detection of 10.6 and 7.3 nM, respectively, is achieved, increasing 3 orders of magnitude compared with that in the solution system. Additionally, the interconnected three-dimensional microporous inverse opal structure endows the sensor with a rapid response within 1 min. Furthermore, the as-prepared PC sensor can be reused by simple washing in an acidic aqueous solution. The sensing system can be used as a FL multi-detection platform for FA and AcH in air, aqueous solution, and living cells. This FL sensing approach based on small organic molecule-functionalized PCs is universally available to develop various sensors for target analytes by designing new functional organic compounds.
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