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Capillary column coated with graphene quantum dots for gas chromatographic separation of alkanes and aromatic isomers

机译:涂有石墨烯量子点的毛细管柱用于气相色谱分离烷烃和芳族异构体

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Graphene Quantum Dots (GQDs) have potential to be an excellent stationary phase because of their high surface area, adsorption affinities and rich functional groups. The rich functional groups of GQDs can form hydrogen bonding and ?€a€“?€ electrostatic stacking interactions with volatile aromatic compounds or unsaturated organic compounds. Herein, GQDs were explored as the stationary phase for gas chromatographic capillary column separation of alkanes and aromatic isomers with 3-aminopropyldiethoxymethyl silane (3-AMDS) as the coupling reagent. GQD coated capillary columns exhibit high separation efficiency for ethylbenzene, styrene, xylene, propylbenzene, alkanes, and dichlorobenzene isomers at low temperature. The elution sequence of the analytes follows an increasing order of their boiling points, even for p-dichlorobenzene and m-dichlorobenzene, which have close boiling points (p-dichlorobenzene, 173.4 ?°C, m-dichlorobenzene, 173 ?°C). The separation behavior of the column for different organic substances is related to van der Waals forces or ?€a€“?€ interactions between the test analytes and GQDs. Compared with the commercial HP-5 and HP-innowax capillary columns, GQD coated columns allowed fast and efficient separation of the analytes at low temperature without temperature-programming. The relative standard deviations (RSD) of five replicate separations for the test analytes on the GQD coated capillary column were 0.1a€“1.6%, 0.7a€“4.0%, 0.8a€“8.5%, and 1.2a€“2.2% for retention time, peak area, peak height, and half peak width, respectively.
机译:由于其高表面积,吸附亲和力和富官能团,石墨烯量子点(GQDS)具有优异的固定相。 GQD的富官能团可以形成氢键和荷脂芳族化合物或不饱和有机化合物的氢堆叠相互作用。在此,将GQDS探讨为烷烃和芳族异构体的气相色谱毛细管柱分离,用3-氨丙烯二乙氧基甲基硅烷(3-AMDs)作为偶联剂。 GQD涂层毛细管柱在低温下表现出乙苯,苯乙烯,二甲苯,丙基,丙基,烷烃和二氯苯异构体的高分离效率。分析物的洗脱序列遵循其沸点的增加顺序,即使对于p-二氯苯和M-二氯苯,其具有近沸点(p-二氯苯,173.4℃,M-二氯苯,173℃)。不同有机物质的柱的分离行为与Van der Waals力量有关,或者有关试验分析物和GQD之间的相互作用。与商业HP-5和HP-Innowax毛细管柱相比,GQD涂层柱允许在低温下快速有效地分离,而无需温度编程。用于GQD涂层毛细管塔上的测试分析物的五重复分离的相对标准偏差(RSD)为0.1A€“1.6%,0.7a€”4.0%,0.8a€“8.5%,1.2a€”2.2%对于保留时间,峰面积,峰值高度和半峰宽度。

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