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Oxygen sensitive polymeric nanocapsules for optical dissolved oxygen sensors

材料科学 微乳液 荧光 纳米囊 四氢呋喃 聚合物 氧气 氧传感器 水溶液 极限氧浓度 光化学 聚合 透氧性 化学工程 分析化学(期刊) 溶剂 纳米技术 有机化学 化学 纳米颗粒 光学 复合材料 物理 工程类
作者
Zhijuan Sun,Chenxin Cai,Fei Guo,Changhuai Ye,Yingwu Luo,Shuming Ye,Jianchao Luo,Fan Zhu,Chunyue Jiang
出处
期刊:Nanotechnology [IOP Publishing]
卷期号:29 (14): 145704-145704 被引量:19
标识
DOI:10.1088/1361-6528/aaa058
摘要

Immobilization of the oxygen-sensitive probes (OSPs) in the host matrix greatly impacts the performance and long-term usage of the optical dissolved oxygen (DO) sensors. In this work, fluorescent dyes, as the OSPs, were encapsulated with a crosslinked fluorinated polymer shell by interfacial confined reversible addition fragmentation chain transfer miniemulsion polymerization to fabricate oxygen sensitive polymeric nanocapsules (NCs). The location of fluorescent dyes and the fluorescent properties of the NCs were fully characterized by fourier transform infrared spectrometer, x-ray photoelectron spectrometer and fluorescent spectrum. Dye-encapsulated capacity can be precisely tuned from 0 to 1.3 wt% without self-quenching of the fluorescent dye. The crosslinked fluorinated polymer shell is not only extremely high gas permeability, but also prevents the fluorescent dyes from leakage in aqueous as well as in various organic solvents, such as ethanol, acetone and tetrahydrofuran (THF). An optical DO sensor based on the oxygen sensitive NCs was fabricated, showing high sensitivity, short response time, full reversibility, and long-term operational stability of online monitoring DO. The sensitivity of the optical DO sensor is 7.02 (the ratio of the response value in fully deoxygenated and saturated oxygenated water) in the range 0.96-14.16 mg l-1 and the response time is about 14.3 s. The sensor's work curve was fit well using the modified Stern-Volmer equation by two-site model, and its response values are hardly affected by pH ranging from 2 to 12 and keep constant during continuous measurement for 3 months. It is believed that the oxygen sensitive polymeric NCs-based optical DO sensor could be particularly useful in long-term online DO monitoring in both aqueous and organic solvent systems.
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