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 共查询到19条相似文献,搜索用时 125 毫秒
1.
采用溶胶-凝胶技术在毛细管中原位合成硅胶整体柱,通过表面化学修饰技术制备了极性的丙基脲硅胶整体柱.对所制备的整体柱柱性能进行了评价,考察了极性物质在该整体柱上的保留行为,并对其可能的保留机理进行了探讨.研究表明,该柱在亲水作用电色谱模式下能有效分离苯酚类极性小分子化合物.  相似文献   

2.
溶胶-凝胶技术制备毛细管硅胶整体柱及其应用   总被引:2,自引:0,他引:2  
采用溶胶-凝胶技术合成硅胶整体柱,研究了不同反应物配比对制备毛细管硅胶整体柱的影响,合成了具有高机械强度和化学稳定性的毛细管硅胶整体柱。通过十八烷基修饰得到反相固定相。考察了电渗流行为和电色谱性能。3种芳香胺和4种苯同系物可达到基线分离,柱效高达159000N/m。  相似文献   

3.
毛细管硅胶基质整体柱的制备及其电色谱性能研究   总被引:3,自引:0,他引:3  
邵华  邓启良  伦志红  阎超  高如瑜 《色谱》2005,23(3):243-246
采用热引发一步法制备了毛细管电色谱硅胶基质整体柱。通过使用表面活性剂(十二烷基磺酸钠)增加了反应液中两相之间的相互溶解,使得反应液最终成为均相溶液,实现了硅胶整体柱的均相聚合制备。所制备的均相硅胶整体柱内部结构更加均匀,大大提高了分离度。评价了该整体柱的电色谱性能,深入探讨了有机溶剂比例、pH值、电压以及温度等电色谱操作条件对电渗流、保留机理和柱效的影响。在该均相硅胶基质整体柱上成功地分离了9种中性物质(硫脲、苯、甲苯、乙基苯、正丙苯、萘、正丁基苯、芴和蒽)以及7种中性、酸性和碱性物质(硫脲、邻氨基酚、苯酚、苯、邻甲苯胺、α-萘胺和2,4-二氯苯胺)。该柱对硫脲的柱效超过110000塔板/m。  相似文献   

4.
黄桂华  陈思谨  林旭聪  谢增鸿 《色谱》2010,28(12):1173-1178
以2-羟基乙基甲基丙烯酸酯(HEMA)为单体,乙二醇二甲基丙烯酸酯(EDMA)为交联剂,制备了亲水分离模式的聚HEMA-co-EDMA新型毛细管电色谱(CEC)整体柱。考察了整体柱的结构特征及其CEC性能,研究了极性物质的保留行为,并对其可能的保留机理进行了探讨。所制备的整体柱稳定性好,固定相表面带有极性羟基功能团,不仅能提供亲水相互作用位点,且能吸附流动相中的阴离子产生阳极电渗流(EOF)。在流动相中乙腈含量较高(>62%,体积分数)的条件下,整体柱表现出典型的亲水作用,实现了对核苷、碱基和苯胺类带有碱性的强极性化合物的高效分离,并成功分离了苯酚类、苯甲酸类等中性或酸性的极性化合物。  相似文献   

5.
制备了3种不同键合量的多壁碳纳米管键合硅胶固定相。以芳香族化合物为目标分析物,甲醇-水为流动相,分别考察了其在不同流动相比例、流速、柱温条件下,酸性、中性、碱性化合物的色谱保留行为,并通过计算分离过程中焓变、熵变和吉布斯自由能等热力学参数,探讨了色谱柱的保留机理。结果表明,碳纳米管键合硅胶与未键合的硅胶固定相分离对氨基苯磺酸和尿嘧啶时,因碳纳米管的加入增强了其疏水作用,保留机理与反相色谱柱相似。而分离中性化合物时,因加入的碳纳米管引入π-π作用,增强了对化合物的保留,有效地提高了色谱柱的柱效。碳纳米管的加入使溶质分子在固定相上的保留增强,溶质分子从杂乱无序排列转为有序排列,且溶质分子在不同碳纳米管键合量的色谱柱上的保留并非由单一机理支配,而是由多种作用相互协同的结果,这使碳纳米管键合硅胶固定相在分离和固相萃取领域展现出良好的应用前景。  相似文献   

6.
采用温和条件下的溶胶-凝胶技术,成功制备了阴离子交换-反相混合模式硅胶基质毛细管电色谱整体柱.通过调整反应液中不同前体的比例,优化了整体柱的制备条件.通过扫瞄电镜,对柱床进行了表征和分析.实验发现,所制备的整体柱电渗流的方向和大小可随流动相pH值的改变而改变,在酸性和中性条件下,具有从阴极流向阳极的电渗流;当流动相pH值升至约7.5时,电渗流方向发生了反转(由阳极流向阴极).在优化的实验条件下,用所制备的整体柱对所考察的酸性(中性)化合物实现了快速分离,并获得了高达160,000 N/m的柱效.  相似文献   

7.
采用温和条件下的溶胶-凝胶技术,成功制备了阴离子交换-反相混合模式硅胶基质毛细管电色谱整体柱。通过调整反应液中不同前体的比例,优化了整体柱的制备条件。通过扫瞄电镜,对柱床进行了表征和分析。实验发现,所制备的整体柱电渗流的方向和大小可随流动相pH值的改变而改变,在酸性和中性条件下,具有从阴极流向阳极的电渗流;当流动相pH值升至约7.5时,电渗流方向发生了反转(由阳极流向阴极)。在优化的实验条件下,用所制备的整体柱对所考察的酸性(中性)化合物实现了快速分离,并获得了高达160,000N/m的柱效。  相似文献   

8.
陈霞  韦誉  陆俊宇  张爱珠  叶芳贵  赵书林 《分析化学》2012,40(10):1584-1588
基于十八烷基硫醇与乙烯基功能化毛细管(Vinyl capillary)的硫醇-烯点击化学反应,制备了一种新型的C18毛细管电色谱开管柱(C18capillary).采用乙烯基三甲氧基硅烷对毛细管内壁进行乙烯基功能化,然后通过硫醇-烯点击化学反应共价键合十八烷基硫醇于Vinyl capillary内表面.采用环境扫描电镜对C18 capillary进行了形貌表征.考察了缓冲溶液pH值对C18 capillary、Vinyl capillary和裸毛细管柱(Bare capillary)电渗流的影响.结果表明;在相同实验条件下,C18capillary的电渗流最小.以3种多环芳烃为模型化合物,评价了C18capillary的电色谱柱性能;同时考察了模型化合物在C18capillary上的电色谱保留行为.实验表明,其保留机理是基于典型的反相作用.当C18 capillary用于碱性模型化合物分离时,碱性物质在C18 capillary上的峰形较好,无明显的峰拖尾现象,这可能是由于C18capillary表面含有极性的S基团能够屏蔽残留硅羟基对碱性化合物的吸附作用.  相似文献   

9.
采用溶胶-凝胶法制备了SiO2/TiO2杂化材料,并通过双官能团试剂3-(甲氧基硅烷基)甲基丙烯酸丙酯(γ-MAPS)对其进行改性;改性溶胶与甲基丙基酸丁酯(BMA)作为功能单体,在毛细管中进行原位聚合反应,制备了新型的有机-无机杂化毛细管整体柱。采用扫描电子显微镜观察了整体柱柱床的形貌。以硫脲为电渗流标记物对所制备的整体柱进行了柱性能评价,考察了柱的稳定性和重现性,获得了88000plates/m的柱效;考察了中性物质在柱上的的保留行为,得出该柱具有反相电色谱保留性能。通过对2种短肽(磷酸肽和非磷酸肽)洗脱测试,实现了对磷酸肽的有效富集与分离。  相似文献   

10.
十四烷基胺键合固定相的反相色谱性能   总被引:3,自引:3,他引:0  
龙远德  杨晓晔  黄天宝 《色谱》1999,17(4):339-341
制备了一种新型反相液相色谱固定相──十四烷基胺硅胶键合固定相。以甲醇和水为二元流动相,评价了该固定相的疏水性、选择性和残留硅醇基活性。同时分离了包括碱性、酸性和中性有机化合物在内的混合物。结果表明,在该固定相上,碱性化合物的色谱峰对称性较好,硅酸基活性受到抑制,并具有良好的选择性。  相似文献   

11.
A silica-based monolithic stationary phase with mixed-mode of reversed phase (RP) and weak anion-exchange (WAX) for capillary electrochromatography (CEC) has been prepared. The mixed-mode monolithic silica column was prepared using the sol–gel technique and followed by a post-modification with hexadecyltrimethoxysilane (HDTMS) and aminopropyltrimethoxysilane (APTMS). The amino groups on the surface of the stationary phase were used to generate a substantial anodic EOF as well as to provide electrostatic interaction sites for charged compounds at low pH. A cathodic EOF was observed at pH above 7.3 due to the full ionization of residual silanol groups and the suppression in the ionization of amino groups. A variety of analytes were used to evaluate the electrochromatographic characterization and column performance. The monolithic stationary phase exhibited RP chromatographic behavior toward neutral solutes. The model anionic solutes were separated by the mixed-mode mechanism, which comprised RP interaction, WAX, and electrophoresis. Symmetrical peaks can be obtained for basic solutes because positively charged amino groups can effectively minimize the adsorption of positively charged analytes to the stationary phase.  相似文献   

12.
A novel silica-based monolithic column possessing diethylenetriaminopropyl ligands for hydrophilic interaction pressurized capillary electrochromatography is described. The preparation of monolithic stationary phase was based on the individual silica matrix forming and subsequent chemical bonding. The triamino groups on the surface of the novel stationary phase generated a sustainable anodic electroosmotic flow under acidic conditions. A variety of neutral and basic analytes were used to evaluate the column performance. The monolithic silica stationary phase exhibited hydrophilic interaction chromatographic behavior toward neutral solutes. For basic tetracycline antibiotics, hydrophilic interaction as well as electrophoretic migration process with the monoliths was observed and peak tailing was avoided.  相似文献   

13.
Li Y  Xiang R  Horváth C  Wilkins JA 《Electrophoresis》2004,25(4-5):545-553
A new kind of monolithic capillary column was prepared for capillary electrochromatography (CEC) with a positively charged polymer layer on the inner wall of a fused-silica capillary and a neutral monolithic packing as the bulk stationary phase. The fused-silica capillary was first silanized with 3-glycidoxypropyltrimethoxysilane (GPTMS). Polyethyleneimine (PEI) was then covalently bonded to the GPTMS coating to form an annular positively charged polymer layer for the generation of electroosmotic flow (EOF). A neutral bulk monolithic stationary phase was then prepared by in situ copolymerization of vinylbenzyl chloride (VBC) and ethylene glycol dimethacrylate in the presence of 1-propanol and formamide as porogens. Benzyl chloride functionalities on the monolith were subsequently hydrolyzed to benzyl alcohol groups. Effects of pH on the EOF mobility of the column were measured to monitor the completion of reactions. Using a column with this design, we expected general problems in CEC such as irreversible adsorption and electrostatic interaction between stationary phase and analytes to be reduced. A peptide mixture was successfully separated in counter-directional mode CEC. Comparison of peptide separations in isocratic monolithic CEC, gradient HPLC and capillary zone electrophoresis (CZE) indicated that the separation in CEC is governed by a dual mechanism that involves a complex interplay between selective chromatographic retention and differential electrophoretic migration.  相似文献   

14.
Monolithic columns have been prepared with a novel bonded silica stationary phase, tetradecylamine bonded silica (TDAS), and used in pressurized capillary electrochromatography (pCEC). The monolithic silica column matrix was prepared by a sol-gel process and then chemically modified with the spacer (3-glycidoxypropyl)trimethoxysilane and tetradecylamine. The introduced embedded polar amine groups dominated the charge on the surface of the monolithic stationary phase and generated an EOF from cathode to anode under acidic conditions. The tetradecyl hydrophobic chains in TDAS provide chromatographic interactions. The chromatographic characteristics of the prepared monolithic column were studied. Some aromatic compounds including alkylbenzenes, aromatic hydrocarbons, phenols, and anilines were successfully separated on the TDAS monolithic column in pCEC mode. As expected, the TDAS monolithic stationary phases exhibit typical reversed-phase electrochromatographic behavior toward neutral solutes due to the introduced tetradecyl groups. Hydrophobic as well as electrophoretic migration processes within the monoliths were observed in the separation of basic anilines. Symmetrical peaks can be obtained for anilines because the embedded polar amine groups on the surface can effectively shield the adsorption of positively charged analytes onto the stationary phase.  相似文献   

15.
A silica-bonded bovine serum albumin (BSA) chiral monolithic stationary phase for capillary electrochromatography(CEC) was introduced. An inorganic-organic hybrid monolithic column was firstly prepared by sol-gel chemistry with homogeneously distributed aminopropyl groups throughout the silica matrix. Then the chiral stationary phase was synthesized by the in situ covalent immobilization of BSA on the monolithic column activated with glutaraldehyde. The effects of pH value and concentration of phosphate buffer on the separation of D,L-tryptophan were investigated. The separation factor of D,L-tryptophan reached 3.37 on CEC mode.  相似文献   

16.
Hilder EF  Svec F  Fréchet JM 《Electrophoresis》2002,23(22-23):3934-3953
This review summarizes the contributions of a number of groups working in the rapidly growing area of monolithic columns for capillary electrochromatography (CEC), with a focus on those prepared from synthetic polymers. Monoliths have quickly become a well-established stationary phase format in the field of CEC. The simplicity of their in situ preparation method as well as the good control over their porous properties and surface chemistries make the monolithic separation media an attractive alternative to capillary columns packed with particulate materials. A wide variety of approaches as well as materials used for the preparation of the monolithic stationary phases are detailed. Their excellent chromatographic performance is demonstrated by numerous separations of different analytes.  相似文献   

17.
An adamantyl (ADM)-functionalized monolithic stationary phase was newly synthesized by a single-step copolymerization of 1-adamantyl-(α-trifluoromethyl) acrylate, ethylene dimethacrylate, and 2-acrylamido-2-methyl-1-propanesulfonic acid in order to prevent the peak tailing of basic solutes in capillary electrochromatography and was compared with butyl methacrylate (BMA)-based one. The ADM structure shields the negatively charged groups on the surface of monolith from basic solutes, resulting in better peak shapes than BMA-based monolithic stationary phase. As the monomers ratio decreased, the monolithic column had lower retention and higher column efficiency which was likely due to lower phase ratio and smaller globule size of monolith, respectively. The ADM-functionalized monolithic columns exhibited a good repeatability and reproducibility of column preparation with relative standard deviation values below 9% in the studied chromatographic parameters.  相似文献   

18.
整体柱离子色谱的研究进展   总被引:1,自引:0,他引:1  
陈倩  于泓 《分析测试学报》2011,30(6):705-712
该文介绍了离子色谱的分类,整体柱的分类、制备及特点,并以此为依据归纳总结了常规整体柱在离子色谱中的应用和毛细管整体柱在毛细管离子色谱中的应用,其中包括硅胶基质整体柱和聚合物基质整体柱,评述并展望了整体柱离子色谱的发展前景.  相似文献   

19.
Wu R  Zou H  Ye M  Lei Z  Ni J 《Electrophoresis》2001,22(3):544-551
A mode of capillary electrochromatography (CEC), based on the dynamical adsorption of surfactants on the uncharged monolithic stationary phases has been developed. The monolithic stationary phase, obtained by the in situ polymerization of butyl methacrylate with ethylene dimethacrylate, was dynamically modified with an ionic surfactant such as the long-chain quaternary ammonium salt of cetyltrimethylammonium bromide (CTAB) and long-chain sodium sulfate of sodium dodecyl sulfate (SDS). The ionic surfactant was adsorbed on the surface of polymeric monolith by hydrophobic interaction, and the ionic groups used to generate the electroosmotic flow (EOF). The electroosmotic mobility through these capillary columns increased with increasing the content of ionic surfactants in the mobile phase. In this way, the synthesis of the monolithic stationary phase with binary monomers can be controlled more easily than that with ternary monomers, one of which should be an ionic monomer to generate EOF. Furthermore, it is more convenient to change the direction and magnitude of EOF by changing the concentration of cationic or anionic surfactants in this system. An efficiency of monolithic capillary columns with more than 140000 plates per meter for neutral compounds has been obtained, and the relative standard deviations observed for to and retention factors of neutral solutes were about 0.22% and less than 0.56% for ten consecutive runs, respectively. Effects of mobile phase composition on the EOF of the column and the retention values of the neutral solutes were investigated. Simultaneous separation of basic, neutral and acidic compounds has been achieved.  相似文献   

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