Im Sang Hyuk, Khalil Gamal E, Callis James, Ahn Byung Hyun, Gouterman Martin, Xia Younan
Department of Chemistry, University of Washington, Seattle, WA 98195-1700, USA.
Talanta. 2005 Sep 15;67(3):492-7. doi: 10.1016/j.talanta.2005.06.046. Epub 2005 Aug 1.
Dispersion polymerization has been successfully applied to synthesize monodisperse polystyrene beads loaded with SiOEP and PtOEP for self-referenced oxygen sensing. The polystyrene beads became larger in size as the concentration of initiator was increased due to the reduction of primary particles precipitated from the polymerization medium. The dual luminophors showed similar absorption spectra but two distinctive emission spectra with peaks at 580 and 650nm for SiOEP and PtOEP, respectively. While the emission of SiOEP exhibited no response to oxygen, the luminescence intensity of PtOEP was monotonically dependent on the concentration of oxygen. From the Stern-Volmer plot, we observed a linear correlation between the intensity ratio of SiOEP at 580nm to PtOEP at 650nm and the concentration of oxygen, which could be used to reliably monitor the partial pressure of oxygen in a system.
分散聚合已成功应用于合成负载SiOEP和PtOEP的单分散聚苯乙烯珠,用于自参考氧传感。由于从聚合介质中沉淀的初级颗粒减少,随着引发剂浓度的增加,聚苯乙烯珠的尺寸变大。两种发光体显示出相似的吸收光谱,但有两个独特的发射光谱,SiOEP和PtOEP的发射峰分别在580和650nm处。虽然SiOEP的发射对氧气无响应,但PtOEP的发光强度与氧气浓度呈单调依赖关系。从Stern-Volmer图中,我们观察到580nm处SiOEP与650nm处PtOEP的强度比与氧气浓度之间存在线性相关性,这可用于可靠地监测系统中氧气的分压。