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TEMPERATURE-JUMP INVESTIGATION OF ADSORPTION/DESORPTION KINETICS AT METHYLATED SILICA/SOLUTION INTERFACES

机译:甲基化二氧化硅/溶液界面的吸附/脱附动力学的温度跳跃研究

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摘要

A temperature-jump relaxation technique is used to monitor reversible adsorption/desorption kinetics at the reversed-phase C1-silica/solution interface. A Joule discharge is used to heat a packed bed of trimethylchlorosilane-derivatized silica gel on a microsecond time scale. Single-exponential relaxation kinetics are observed for adsorption of an ionic fluorescent probe, 1-anilino-8-naphthalenesulfonate, to a C1-silica surface from methanol/water solution. The relaxation rate increases with concentration of solute in solution, which shows that adsorption kinetics are detectable in the relaxation. The adsorption rate of the ionic probe is slower than diffusion-controlled, exhibiting significant influence over the adsorption equilibrium constant. The adsorption rate of N-phenyl-1-naphthylamine is indistinguishable from the diffusion limit, indicating a negligible barrier to adsorption for this neutral species.
机译:温度跳跃松弛技术用于监测反相C1-二氧化硅/溶液界面处的可逆吸附/解吸动力学。焦耳放电用于在微秒级上加热三甲基氯硅烷衍生化硅胶的填充床。对于从甲醇/水溶液到I1-二氧化硅表面的离子荧光探针1-苯胺基-8-萘磺酸盐的吸附,观察到单指数松弛动力学。弛豫速率随溶液中溶质的浓度增加而增加,这表明在弛豫过程中可检测到吸附动力学。离子探针的吸附速率比扩散控制的速率慢,对吸附平衡常数有显着影响。 N-苯基-1-萘胺的吸附速率与扩散极限没有区别,这表明该中性物质的吸附势垒可以忽略。

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