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采用两步蒸馏沉淀聚合法,制备了红霉素表面分子印迹聚合物.第一步制备了甲基丙烯酸和二乙烯基苯共聚物微球(PMAA-co-DVB),将其作为内核,再通过第二步蒸馏沉淀聚合,以甲基丙烯酸(MAA)为功能单体,二乙烯基苯(DVB)为交联剂,偶氮二异丁腈(AIBN)为引发剂,红霉素(EM)为模板分子,内核表面聚合一层分子印迹膜层,从而制得具有"核-壳"结构的红霉素表面分子印迹聚合物.通过激光粒径测定、扫描电子显微镜以及结合实验对其形貌和结合性能进行表征.结果表明,在聚合物单体体积分数为7%时,制备出的PMAA-co-DVB微球形态良好,当EM与MAA的比例为1∶4,第二步蒸馏沉淀聚合中单体体积分数为2.8%时,所得的印迹材料结合性能最佳,对EM最大结合量为76.8 mg/g,结合达到平衡的时间为90 min.对红霉素的识别能力高于对其结构类似物罗红霉素. 相似文献
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A novel scalable and integrated design that supports optical multicast and burst amplification is proposed and demonstrated experimentally.The powers of incoming signals can be tuned to optimize the results of burst amplification and replication.Experimental results also show that erbium-doped optical Fiber amplication(EDFA) transients can be suppressed to an equally low level regardless of the burst parameters. Extended structure designs are further proposed to satisfy the need of mass replication of multicast signals. 相似文献
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