Preparation and Properties of Fiber Optic Oxygen Sensing Material by Thermo-polymerization Method  

Preparation and Properties of Fiber Optic Oxygen Sensing Material by Thermo-polymerization Method

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作  者:ZHANG Tianhua CHEN Xing HUANG Jun 

机构地区:[1]Hospital, Wuhan University of Technology, Wuhan, 430070, China [2]Fiber Optic Sensing Technology Research Center, Wuhan University of Technology, Wuhan, 430070, China

出  处:《Journal of Wuhan University of Technology(Materials Science)》2008年第2期225-229,共5页武汉理工大学学报(材料科学英文版)

基  金:the Project of National Nature Science Foundation of China(No.60377032);Key Project of National Nature Science Foundation of China(No.60537050)

摘  要:A new kind of fiber optic oxygen sensing material based on the fluorescence quenching of Ru(bpy)3Cl2 was prepared by the themo-polymerization method. The ruthenium dye was immobilized in N, N-methylene bisacrylamide(MBBA) polymer by physically trapping while MBBA was covalently crosslinked on the glass micro-beads by NaHSO3-O2-MnSO4 initiator system. The lock-in amplifyication technology was used for the detection of their sensing properties. The influences of indicator concentration, glass micro-beads diameter, post polymerization time, concentration and reaction time of glutaraldehyde on the properties of sensing materials were studied. To optimize the influencing factors to the sensing materials, the indicator concentration of 0.7 g/L, glass micro-beads diameter of 0.3 mm, post polymerization time of 5 h were achieved. The immobilization stability of ruthenium dye and the performance of the sensing materials were improved by the new polymerization system. An absolute detection limit of 3×10-6 (V/V) and the response time of 10 s were obtained. This kind of sensing materials has good stability and their life time is 2 years.A new kind of fiber optic oxygen sensing material based on the fluorescence quenching of Ru(bpy)3Cl2 was prepared by the themo-polymerization method. The ruthenium dye was immobilized in N, N-methylene bisacrylamide(MBBA) polymer by physically trapping while MBBA was covalently crosslinked on the glass micro-beads by NaHSO3-O2-MnSO4 initiator system. The lock-in amplifyication technology was used for the detection of their sensing properties. The influences of indicator concentration, glass micro-beads diameter, post polymerization time, concentration and reaction time of glutaraldehyde on the properties of sensing materials were studied. To optimize the influencing factors to the sensing materials, the indicator concentration of 0.7 g/L, glass micro-beads diameter of 0.3 mm, post polymerization time of 5 h were achieved. The immobilization stability of ruthenium dye and the performance of the sensing materials were improved by the new polymerization system. An absolute detection limit of 3×10-6 (V/V) and the response time of 10 s were obtained. This kind of sensing materials has good stability and their life time is 2 years.

关 键 词:thermo-polymerization fiber optic sensing materials STABILITY 

分 类 号:TB34[一般工业技术—材料科学与工程]

 

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