Nakatani Kiyoharu, Matsuta Emi
Division of Chemistry, Faculty of Pure and Applied Sciences, University of Tsukuba.
Anal Sci. 2015;31(6):557-60. doi: 10.2116/analsci.31.557.
The release mechanism of coumarin 102 from a single ODS-silica gel microparticle into the water phase in the presence of Triton X-100 was investigated by confocal fluorescence microspectroscopy combined with the single microparticle injection technique. The release rate significantly depended on the Triton X-100 concentration in the water phase and was not limited by diffusion in the pores of the microparticle. The release rate constant was inversely proportional to the microparticle radius squared, indicating that the rate-determining step is the external diffusion between the microparticle and the water phase.
通过共聚焦荧光显微光谱法结合单微粒注射技术,研究了在Triton X-100存在下,香豆素102从单个ODS硅胶微粒释放到水相中的释放机制。释放速率显著取决于水相中Triton X-100的浓度,且不受微粒孔隙扩散的限制。释放速率常数与微粒半径的平方成反比,表明限速步骤是微粒与水相之间的外部扩散。