Li Xutian, Zhang Min, Liang Haipeng, Huang Zhaowei, Tang Jiang, Chen Zhi, Yang Liting, Ma Li-Jun, Wang Yuhai, Xu Baiping
School of Chemistry and Environment, South China Normal University, Shipai, Guangzhou 510631, PR China.
School of Chemistry and Environment, South China Normal University, Shipai, Guangzhou 510631, PR China; Guangzhou Key Laboratory of Materials for Energy Conversion and Storage, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2016 Jan 15;153:517-21. doi: 10.1016/j.saa.2015.09.006. Epub 2015 Sep 14.
Fluorescent and colorimetric pH probe possess many advantages including rapid response time, nondestructive testing, and excellent pH sensitivity. However, they usually cannot be utilized simultaneously in both acidic and basic pH ranges. In this study, a new selective and sensitive fluorescent and colorimetric pH probe, 4-(8-quinolyl)amino-7-nitro-2,1,3-benzoxadiazole (1), was designated and synthesized. The optical probe exhibited dual-responsive pH ranges to both acidic and basic aqueous solutions. When the solution pH was gradually increased from 8.5 to 13.3, the absorption spectra of 1 showed an obvious hyperchromicity, accompanied with a red shift of the absorption band at 340 nm, a blue shift of the absorption band at 482 nm, and a distinct color change from orange to violet pink to yellow. Within the pH range from 2.2 to 0.2, the fluorescent spectra of 1 showed a "turn-on" response signal to solution pH. In order to understand the response mechanism of the probe to solution pH, the probe molecule was split into two parts, 8-aminoquinoline (2) and 4-amino-7- nitro-benzofurazan (3). UV-vis absorption and fluorescent experiments of 2 and 3 indicated that both are sensitive optical pH probes. Furthermore, the NMR experiment of 1 was explored in basic and acidic conditions. The results indicated that the colorimetric responses of 1 to pH under basic condition should be attributed to the deprotonation of the imino group on the quinolyl ring, and the fluorescent recognition of 1 to pH under acidic condition was probably due to the protonation of the nitrogen atoms from the benzofurazan and quinolyl rings.
荧光和比色pH探针具有许多优点,包括响应时间快、无损检测和出色的pH敏感性。然而,它们通常不能在酸性和碱性pH范围内同时使用。在本研究中,设计并合成了一种新型的选择性和灵敏性荧光和比色pH探针,4-(8-喹啉基)氨基-7-硝基-2,1,3-苯并恶二唑(1)。该光学探针在酸性和碱性水溶液中均表现出双响应pH范围。当溶液pH从8.5逐渐增加到13.3时,1的吸收光谱呈现出明显的增色现象,同时340 nm处的吸收带发生红移,482 nm处的吸收带发生蓝移,颜色从橙色明显变为紫粉色再变为黄色。在pH范围从2.2到0.2内,1的荧光光谱对溶液pH呈现“开启”响应信号。为了理解探针对溶液pH的响应机制,将探针分子拆分为两部分,8-氨基喹啉(2)和4-氨基-7-硝基苯并呋咱(3)。2和3的紫外-可见吸收和荧光实验表明,两者都是灵敏的光学pH探针。此外,还对1在碱性和酸性条件下进行了核磁共振实验。结果表明,1在碱性条件下对pH的比色响应应归因于喹啉环上亚氨基的去质子化,而1在酸性条件下对pH的荧光识别可能是由于苯并呋咱环和喹啉环上氮原子的质子化。