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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >HIGH-PERFORMANCE LIQUID CHROMATOGRAPHY OF C-60, C-70, AND HIGHER FULLERENES ON TETRAPHENYLPORPHYRIN-SILICA STATIONARY PHASES USING STRONG MOBILE PHASE SOLVENTS
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HIGH-PERFORMANCE LIQUID CHROMATOGRAPHY OF C-60, C-70, AND HIGHER FULLERENES ON TETRAPHENYLPORPHYRIN-SILICA STATIONARY PHASES USING STRONG MOBILE PHASE SOLVENTS

机译:强移动相溶剂在四苯并卟啉-硅胶固定相上的C-60,C-70和更高级富勒烯的高效液相色谱

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The HPLC separation of C-60, C-70, and higher fullerenes on a tetraphenylporphyrin-silica stationary phase is investigated using pure carbon disulfide, chlorobenzene, p-xylene, and toluene as mobile phases. Selectivity factors (cu) for C-70/C-60 separations using these solvents are determined to be 1.8, 3.2, 3.8, and 4.3, respectively. Thermodynamic studies reveal that an exothermic interaction takes place between the fullerene and porphyrin stationary phase in the presence of such solvents. Higher fullerenes (up to C-94) can be separated quickly at 90 degrees C using CS2-toluene (45:55, v/v) as the mobile phase. The high solubility of fullerenes in these solvents dramatically increases the overall potential with regard to preparative fullerene purification. The inability of an alternative protoporphyrin-silica phase to separate C-60/C-60 using the same mobile phases supports a retention mechanism based on simultaneous face-to-face and face-to-edge pi-pi interactions between the immobilized tetraphenylporphyrin and the fullerenes. [References: 43]
机译:使用纯二硫化碳,氯苯,对二甲苯和甲苯作为流动相,研究了四苯基卟啉-硅胶固定相上C-60,C-70和更高级富勒烯的HPLC分离。使用这些溶剂进行C-70 / C-60分离的选择性因子(cu)分别确定为1.8、3.2、3.8和4.3。热力学研究表明,在存在此类溶剂的情况下,富勒烯与卟啉固定相之间发生放热相互作用。使用CS2-甲苯(45:55,v / v)作为流动相,可以在90摄氏度下快速分离出更高的富勒烯(高达C-94)。富勒烯在这些溶剂中的高溶解度大大提高了制备富勒烯纯化的总体潜力。替代原卟啉-硅胶相无法使用相同的流动相分离C-60 / C-60的支持机制是基于固定化四苯基卟啉与二苯基卟啉之间同时面对面和面对面pi-pi相互作用的保留机制富勒烯。 [参考:43]

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