Department of Organic Synthesis, University of Chemical Technology and Metallurgy, 8 Kliment Ohridsky Str., 1756 Sofia, Bulgaria.
Molecules. 2022 Jun 30;27(13):4229. doi: 10.3390/molecules27134229.
A new highly water-soluble 1,8-naphthalimide fluorophore designed on the "" model has been synthesized. Due to the unusually high solubility in water, the novel compound proved to be a selective PET-based probe for the determination of pHs in aqueous solutions and rapid detection of water content in organic solvents. Based on the pH dependence of the probe and its high water solubility, the INH logic gate was achieved using NaOH and water as chemical inputs, where NaOH is the disabler and the water is an enabler. In addition, the probe showed effective fluorescence "" reversibility on glass support after exposure to acid and base vapors, which defines it as a promising platform for rapid detection of acid/base vapors in the solid-state, thus extending the molecular sensing concept from solution to the solid support.
一种新型的高度水溶性 1,8-萘二甲酰亚胺荧光团是在 "" 模型的基础上设计合成的。由于其在水中异常高的溶解度,该新型化合物被证明是一种基于 PET 的选择性探针,可用于测定水溶液中的 pH 值,并快速检测有机溶剂中的含水量。基于探针对 pH 值的依赖性及其高水溶性,可以使用 NaOH 和水作为化学输入来实现 INH 逻辑门,其中 NaOH 是禁用器,水是使能器。此外,该探针在暴露于酸和碱蒸气后在玻璃载体上显示出有效的荧光 "" 可逆性,这使其成为快速检测固态酸碱蒸气的有前途的平台,从而将分子传感概念从溶液扩展到固体载体。