Supplementary material.docx
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Experimental.Plant materials and phytopharmaceutical productChemicals and apparatusPreparation of Standards and samplesInstrumentation and Chromatographic conditionsFiguresOptimisation of chromatographic conditionsS1:Effect of organic solvent type in the mobile phase on separation S2:Effect of initial and final concentration of ACN in the mobile phase on separation S3:Effect of gradient time on separation S4:Effect of column temperature on separation S5:Effect of flow rate on corrected peak area S6:Peak characterization in the crude extracts Indirect-dispersive liquid-liquid microextraction S7: Effect of IDLLME on the baseline, (a) before (b) after IDLLME, Peaks: 1, vitexin 2''-O-rhamnoside, 2, rutin, 3, vitexin, and 4, hyperoside. TablesS1:Optimum chromatographic conditions Determination of analytes in real samples S2:Concentration of analytes in the real samples
实验部分 1. 实验材料与植物源药物制剂 2. 化学试剂与仪器设备 3. 标准品与样品制备 4. 仪器配置与色谱条件 5. 附图 5.1 色谱条件优化 图S1:流动相有机溶剂种类对分离效果的影响 图S2:流动相中乙腈(ACN)初始与终浓度对分离效果的影响 图S3:梯度洗脱时间对分离效果的影响 图S4:柱温对分离效果的影响 图S5:流速对校正峰面积的影响 图S6:粗提物中的峰表征 间接分散液液微萃取(Indirect-dispersive liquid-liquid microextraction, IDLLME): 图S7:IDLLME对基线的影响,(a) 萃取前,(b) 萃取后;峰1:牡荆素2''-O-鼠李糖苷(vitexin 2''-O-rhamnoside),峰2:芦丁(rutin),峰3:牡荆素(vitexin),峰4:金丝桃苷(hyperoside) 6. 附表 表S1:最优色谱条件 实际样品中分析物的测定 表S2:实际样品中分析物的浓度



