萃取(化学)
材料科学
聚合物
固相萃取
整体
海绵
三聚氰胺
微型多孔材料
水溶液
化学工程
色谱法
复合材料
化学
有机化学
催化作用
生物
工程类
植物
作者
Natalia Morales,Stuart C. Thickett,Fernando Maya
标识
DOI:10.1002/jssc.202300378
摘要
Polymer monoliths are promising materials for sample preparation due to their high porosity, pH stability, and simple preparation. The use of melamine formaldehyde foams has been reported as an effective support to prepare highly robust silica and polymer monoliths. Herein, divinylbenzene monoliths based on a 50:50 (%, w/w) crosslinker/porogen ratio have been nested within a melamine‐formaldehyde sponge, resulting in monoliths with a surface area higher than 400 m 2 /g. The extraction performance of these monoliths was evaluated for the extraction of endocrine‐disrupting bisphenols from aqueous solutions. We evaluated for the first time the versatility of sponge‐nested polymer monoliths by comparing three different extraction modes (vortex mixing, magnetic stirring, and orbital shaking). Vortex mixing showed a comparable recovery of bisphenols (39%–81%) in a shorter extraction time (30 min, instead of 2 h). In addition, the robustness of the sponge‐nested polymer monoliths was demonstrated for the first time by reshaping a larger monolithic cube (0.125 cm 3 ) into four smaller pieces (4 × 0.03125 cm 3 ) leading to a 16%–21% increase in extraction efficiency. This effect was attributed to an increase in the effective contact area with the sample, obtaining a higher analyte extraction capacity.
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