Department of Chemistry, University of Waterloo , Waterloo, Ontario, Canada N2L 3G1.
Anal Chem. 2017 Mar 7;89(5):2978-2985. doi: 10.1021/acs.analchem.6b04442. Epub 2017 Feb 14.
The currently presented research investigated the performance of matrix compatible PDMS-overcoated fibers (PDMS-DVB/PDMS) as compared to unmodified PDMS/DVB coatings using aqueous samples and employing a wide range of analyte polarities, molecular weights, and functionalities. In the first part of the work, a kinetic approach was taken to investigate the effect of the PDMS outer layer on the uptake rate of analytes during the mass transfer process. In short, the results can be simplified into two models: (1) the rate-limiting step is the diffusion through the coating and (2) the rate-limiting step is the diffusion through the aqueous diffusional boundary layer. For polar compounds, according to the theoretical discussion, the rate-limiting step is the diffusion through the coating; therefore, the outer PDMS layer influences the uptake rate into the matrix compatible coatings. On the other hand, for nonpolar compounds, the rate-limiting step of the uptake process is diffusion through the aqueous diffusional boundary layer; as such, the overcoated PDMS does not affect uptake rate into the matrix-compatible coatings as compared to DVB/PDMS fibers. From a thermodynamic point of view, the calculated fiber constants further corroborate the hypothesis that the additional PDMS layer does not impair the extraction phase capacity.
目前的研究调查了与未改性 PDMS/DVB 涂层相比,基质相容 PDMS 覆盖纤维 (PDMS-DVB/PDMS) 在使用水性样品和各种分析物极性、分子量和官能团时的性能。在工作的第一部分,采用动力学方法研究了 PDMS 外层在质量传递过程中对分析物吸收速率的影响。简而言之,结果可以简化为两种模型:(1) 速率限制步骤是通过涂层的扩散,(2) 速率限制步骤是通过水扩散边界层的扩散。对于极性化合物,根据理论讨论,速率限制步骤是通过涂层的扩散;因此,PDMS 外层会影响进入基质相容涂层的吸收速率。另一方面,对于非极性化合物,吸收过程的速率限制步骤是通过水扩散边界层的扩散;因此,与 DVB/PDMS 纤维相比,涂覆 PDMS 并不会影响进入基质相容涂层的吸收速率。从热力学的角度来看,计算出的纤维常数进一步证实了假设,即额外的 PDMS 层不会损害萃取相的容量。