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Microspheres Sensor Based on Molecularly Imprinted Polymer Synthesized by Precipitation Polymerization 被引量:2

Microspheres Sensor Based on Molecularly Imprinted Polymer Synthesized by Precipitation Polymerization
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摘要 A new biomimetic bulk acoustic wave sensor based on molecularly imprinted microspheres (MUM) technique was described. The sensing materials were synthesized by precipitation polymerization. By using the Scatchard analysis, the equilibrium dissociation constant K-D and the apparent maximum number Q(max) of the binding sites were calculated to be 3.70 mmol (.) L-1 and 9.11 mumol (.) g(-1), respectively. The sensor exhibited a sensitive response to the template compound (dipyridamole) in liquid phase with a detection Unfit of 2 x 10(-9) mol (.) L-1. The recoveries of the sensor were 95.1%-105.4%. Studies presented in this paper show that the stability of this sensor is excellent. The sensor has been applied successfully to the determination of dipyridamole in human urine. A new biomimetic bulk acoustic wave sensor based on molecularly imprinted microspheres (MUM) technique was described. The sensing materials were synthesized by precipitation polymerization. By using the Scatchard analysis, the equilibrium dissociation constant K-D and the apparent maximum number Q(max) of the binding sites were calculated to be 3.70 mmol (.) L-1 and 9.11 mumol (.) g(-1), respectively. The sensor exhibited a sensitive response to the template compound (dipyridamole) in liquid phase with a detection Unfit of 2 x 10(-9) mol (.) L-1. The recoveries of the sensor were 95.1%-105.4%. Studies presented in this paper show that the stability of this sensor is excellent. The sensor has been applied successfully to the determination of dipyridamole in human urine.
出处 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2003年第5期550-555,共6页 中国化学(英文版)
基金 ProjectsupportedbytheNationalNaturalScienceFoundationofChina (Nos .2 0 0 75 0 0 7and 2 0 2 75 0 0 9)
关键词 microspheres sensor molecularly imprinted polymer DIPYRIDAMOLE precipitation polymerization microspheres sensor molecularly imprinted polymer dipyridamole precipitation polymerization
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