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1)  imprinted membrane
印迹膜
1.
Studies on preparation and characteristics of a novel copper(Ⅱ)-Schiff base imprinted membrane;
一种新型铜离子-席夫碱印迹膜的制备与电化学性质研究
2.
The characterization of the caffeine molecularly imprinted membrane was performed with infrared spectroscopy,X-ray diffraction,thermogravimetric analysis and liquid chromatography techniques in detail.
采用高效液相色谱技术探讨了不同功能单体印迹聚合膜选择渗透性能的影响,采用红外光谱分析、X射线衍射分析、热重分析和液相色谱分析等技术对分子印迹膜的化学结构、晶体结构、孔隙率、溶胀性、热稳定性以及选择性等性能进行详细的研究。
2)  molecularly imprinted membrane
分子印迹膜
1.
The evaluation and determination method were discussed and two new developing fields of molecular imprinting were introduced briefly,including molecularly imprinted membrane and monomolecular imprinting.
简要介绍了分子印迹发展的两个新方向:分子印迹膜和单分子印迹,指出了提高印迹效率是实现分子印迹技术工业化的重要前提。
2.
Using polyvinylidene foluoride hollow fiber ultrafiltration membrane as the supported membranes and the levofloxacin as the template,the molecularly imprinted membranes were prepared by thermal copolymerization.
该方法为分子印迹膜萃取技术用于手性药物拆分提供了理论和实验方法。
3.
The target analogue imprinting strategy was used to prepare the molecularly imprinted membrane supportted with PVDF ultrafiltration membrane.
基于伪模板技术,通过表面涂覆热聚合的方法制备分子印迹膜
3)  MIF
分子印迹膜
1.
To development a new effective and fast method to determine diethylstilbestrol(DES)in food, molecularly Imprinted Films (MIF) with specific recognizing and absorbing sites for DES were prepared on screen printed electrode slots by photopolymerisation, the characteristics of the MIF were investigated by scanning electron microscope (SEM).
为建立快速、高效的检测食品中违禁激素己烯雌酚(DES)方法,基于分子印迹膜对DES分子具有良好的特异性吸附和识别作用,采用光聚合法在丝网印刷电极表面原位聚合制备出含有DES的分子印迹位点的分子印迹膜(MIF),通过扫描电镜(SEM)分析该膜的表征,而后并将这种带有MIF的丝网印刷电极条与电化学分析装置相连接,组装成能对多个样品连续检测的DES传感仪并建立完整的检测方法。
2.
Molecularly imprinted films(MIF) with specific recognition sites for Chloramphenicol succinate(HS-CAP) were prepared on screen printed electrodes by photopolymerisation.
采用光聚合法在丝网印刷电极表面原位聚合制备出含有琥珀酸氯霉素(HS-CAP)分子印迹位点的分子印迹膜
4)  molecularly imprinted membrane(MIM)
分子印迹膜
1.
Objective Due to its high selectivity,molecularly imprinted membrane(MIM)incorporated by molecular imprinting technology(MIT)and membrane separation is recently application to separating active components in Chinese medicine.
结果与结论分子印迹膜是将分子印迹技术与膜分离技术相结合,近年来被广泛运用于中药有效成分的分离。
2.
Due to its high selectivity,molecularly imprinted membrane(MIM) incorporated by molecularimprinting technology(MIT) and membrane separation is recently application to separating active components in chinese materia medica.
分子印迹膜是将分子印迹技术与膜分离技术相结合,由于其高选择性,近年来被广泛运用到中药有效成分的分离。
5)  dot blot
斑点印迹,斑点印迹膜
6)  molecularly imprinted composite membrane
分子印迹复合膜
1.
Preparation and separation of cellulose acetate-(S)-naproxen molecularly imprinted composite membrane;
醋酸纤维-(S)-萘普生分子印迹复合膜的制备及分离性能
2.
Separation and purification of EGCG in grean tea polyphenols by cellulose acetate—EGCG molecularly imprinted composite membrane;
乙酸纤维-EGCG分子印迹复合膜分离纯化茶多酚中的EGCG
3.
Study on preparation and separation of cellulose acetate-quinine molecularly imprinted composite membrane;
醋酸纤维-奎宁分子印迹复合膜的制备及分离性能研究
补充资料:电解食盐水溶液离子膜电解槽所用的膜材料之一
分子式:
CAS号:

性质:又称全氟羧酸-磺酸复合离子膜  Rf-COOH-Rf-SO3H  电解食盐水溶液离子膜电解槽所用的膜材料之一。使用时,将较薄的羧酸层面向阴极,较厚的磺酸层面向阳极,因而兼有羧酸膜和磺酸膜的优点。由于Rf-COOH层的存在,可阻挡氢氧离子返迁移到阳极室,确保了高的电流效率(96%),因Rf-SO3层的电阻低,能在高电流密度下运行,且阴极液可用盐酸中和,产品氯气中氧含量低,氢氧化钠浓度可达33%~35%。可在全氟磺酸膜上涂敷一层全氟羧酸的聚合物,或是将磺酸膜和羧酸膜进行层压,或是采用化学方法处理而制得的复合膜。现以采用化学方法处理者质量最佳。

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