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首页> 外文期刊>Journal of separation science. >Differences in porous characteristics of styrenic monoliths prepared by controlled thermal polymerization in molds of varying dimensions
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Differences in porous characteristics of styrenic monoliths prepared by controlled thermal polymerization in molds of varying dimensions

机译:在不同尺寸的模具中通过控制热聚合制备的苯乙烯整体料的多孔特性差异

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Nitroxide-mediated polymerization was used as a model system for preparing styrenic monolithic materials with significant mesopore contents in different mold formats, with the aim of assessing the validity of pore characterization of capillary monoliths by analysis of parallel bulk polymerized precursor solution. Capillary monoliths were prepared in 250 mu m. id fused silica tubes (quadruplicate samples, in total 17 m), and the batch polymerizations were carried out in parallel in 100 mu L microvials and regular 2 mL glass vials, both in quintuplicate. The monoliths recovered from the molds were characterized for their meso- and macroporous properties by nitrogen sorptiometry (three repeated runs on each sample), followed by a single analysis by mercury intrusion porosimetry. A total of 14 monolith samples were thus analyzed. A Grubbs' test identified one regular vial sample as an outlier in the sorptiometric surface area measurements, and data from this sample were consequently excluded from the pore size calculations, which are based on the same nitrogen sorption data, and also from the mercury intrusion data set. The remaining data were subjected to single factor analyses of variance analyses to test if the porous properties of the capillary monoliths were different from those of the bulk monoliths prepared in parallel. Significant differences were found between all three formats both in their meso- and macroporous properties. When the dimension was shrunk from conventional vial to capillary size, the specific surface area decreased from 52.2 +/- 4.7 to 34.6 +/- 1.7 m(2)/g. This decrease in specific surface area was accompanied by a significant shift in median diameter of the through-pores, from 310 +/- 3.9 to 544 +/- 13 nm. None of these differences were obvious from the scanning electron micrographs that were acquired for each sample type. The common practice of determining the mesopore characteristics from analysis of samples prepared by parallel bulk polymerization and looking for changes in the macropore structure by visual assessment of SEMs are therefore both rather questionable, at least for monoliths of the kind used in this study.
机译:以一氧化氮介导的聚合反应为模型系统,以不同的模具形式制备具有显着中孔含量的苯乙烯整体材料,目的是通过分析平行本体聚合前体溶液来评估毛细管整体结构的孔表征的有效性。毛细管整体块制备为250微米。熔融石英管(一式四份,总共17 m),分批聚合反应在100μL微量瓶和规则的2 mL玻璃小瓶中平行进行,一式五份。从模具中回收的整料通过氮气吸附法(在每个样品上进行三个重复实验)表征其介孔和大孔性能,然后通过压汞法进行单次分析。因此,总共分析了14个整体样品。 Grubbs的测试确定了一个常规的小瓶样品在比浊法表面积测量中的异常值,因此该样品的数据被排除在孔径计算之外,该计算基于相同的氮吸附数据以及汞入侵数据组。其余数据进行方差分析的单因素分析,以测试毛细管整体结构的多孔性是否与平行制备的整体结构的多孔性不同。发现这三种形式的介孔和大孔性质均存在显着差异。当尺寸从常规小瓶缩小到毛细管尺寸时,比表面积从52.2 +/- 4.7降低到34.6 +/- 1.7 m(2)/ g。比表面积的减小伴随着通孔的中值直径从310 +/- 3.9到544 +/- 13 nm的显着变化。从每种样品类型获得的扫描电子显微照片中,这些差异均不明显。因此,通过对平行本体聚合制备的样品进行分析来确定中孔特性并通过目测对SEM观察大孔结构的变化的常规做法都相当成问题,至少对于本研究中使用的整体式而言都是如此。

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