Wang Xiu-Li, Sun Ru, Zhu Wei-Jin, Sha Xin-Long, Ge Jian-Feng
College of Chemistry, Chemical Engineering and Material Science, State and Local Joint Engineering Laboratory for Novel Functional Polymeric Materials, Soochow University, Suzhou, 215123, People's Republic of China.
J Fluoresc. 2017 May;27(3):819-827. doi: 10.1007/s10895-016-2017-7. Epub 2017 Feb 6.
Oxazinium derivatives have recently played an important role in bioanalysis attributing to the distinguished properties, thus a detailed study of the structure-property relationship is especially significant. Herein, pH-sensitive optical properties of Nile Blue (1a), N-monoalkyl-Nile Blue (1b) and Azure A (1c) have been carried out in extreme acid and base conditions. Dyes 1a and 1c showed colorimetric changes by the protonation of nitrogen atom in strong acidic condition (pH < 2.0), and dyes 1a - c exhibited colorimetric changes by equilibrium between amino and imide groups in very strong basic case (pH > 7.6). Besides, their fluorescent properties were closed to ON - OFF and OFF - ON emissions at 640-820 nm under strong acidic and basic conditions. Moreover, the absorption and emission properties were reversible, and there were no remarkable optical intensity changes of dyes 1a - c under subacidic and neutral solutions (pH = 3.0-7.0). The (TD) DFT calculations were used to optimize the most stable structures of their corresponding protonated and deprotonated forms, and their absorption and emission properties were also explained. Their fluorescent properties nearly ON-OFF and OFF - ON in strong acidic and basic conditions at near-infrared region will give the possible application in pH detection for extreme conditions. Graphical abstract ᅟ.
由于具有独特的性质,恶嗪鎓衍生物最近在生物分析中发挥了重要作用,因此对其结构-性质关系进行详细研究尤为重要。在此,对尼罗蓝(1a)、N-单烷基尼罗蓝(1b)和天青A(1c)在极端酸性和碱性条件下的pH敏感光学性质进行了研究。染料1a和1c在强酸性条件(pH < 2.0)下通过氮原子的质子化表现出比色变化,而染料1a - c在极强碱性情况下(pH > 7.6)通过氨基和酰亚胺基团之间的平衡表现出比色变化。此外,在强酸性和碱性条件下,它们在640 - 820 nm处的荧光性质接近开-关和关-开发射。而且,吸收和发射性质是可逆的,在亚酸性和中性溶液(pH = 3.0 - 7.0)下染料1a - c没有明显的光强度变化。采用(TD)DFT计算优化了它们相应质子化和去质子化形式的最稳定结构,并对其吸收和发射性质进行了解释。它们在近红外区域的强酸性和碱性条件下近乎开-关和关-开的荧光性质将为极端条件下的pH检测提供可能的应用。图形摘要ᅟ。