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首页> 外文期刊>Analytical chemistry >Organic Building Block Based Microporous Network SNW-1 Coating Fabricated by Multi layer Interbridging Strategy for Efficient Enrichment of Trace Volatiles
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Organic Building Block Based Microporous Network SNW-1 Coating Fabricated by Multi layer Interbridging Strategy for Efficient Enrichment of Trace Volatiles

机译:多层互穿策略制备的有机建基微孔网络SNW-1涂层有效富集痕量挥发分

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Microporous organic polymers (MOPs) are an emerging class of functional porous materials for diverse potential applications. Typically, tailored microporous structures of MOPs are generated by linkages of organic polymerizable monomer building blocks, providing high permanent porosity and excellent stability. Herein, we reported the first example of the application of organic building block based MOPs (OBB-MOPs) as efficient enrichment media for sample preparation. A novel multilayer interbridging strategy was proposed to fabricate OBB-MOP coatings, and hereby SNW-1 (a kind of OBB-MOPs) was coated on silica substrate with well-controlled thickness. Strong covalent bonds throughout the network and interlayer bridging improved the durability of the coating significantly. Outstanding chemical stability was observed in diverse solvents as well as solutions with a wide range of pH or high ionic strength and even under extremely harsh conditions like boiling water. The SNW-1 coating possessed a microporous network structure constructed of conjugated and nitrogen-rich building blocks. Thus, the coating exhibited a superior enrichment performance of polycyclic aromatic hydrocarbons and volatile fatty acids (VFAs) over commercial coatings based on interactions including pi-pi affinity and acid base interaction. For further application, this coating was combined with gas chromatography/mass spectrometry for the noninvasive analysis of VFAs from tea leaf and tobacco shred samples. The low detection limits of 0.014-0.026 mu g/L were achieved with the relative standard deviations (RSDs) between 4.3 and 9.0%. Consequently, trace original VFAs from the samples were detected. Good recoveries were obtained in the range of 90-129% and 77-118% with the corresponding RSDs (n = 3) of 2.6-9.3% and 1.9-10%, respectively.
机译:微孔有机聚合物(MOP)是一类新兴的功能性多孔材料,可用于各种潜在应用。通常,通过有机可聚合单体结构单元的连接生成定制的MOP微孔结构,从而提供高永久孔隙率和出色的稳定性。在这里,我们报道了基于有机构件的MOP(OBB-MOP)作为样品制备的有效富集介质的第一个示例。提出了一种新颖的多层互织策略来制备OBB-MOP涂层,并以此将SNW-1(一种OBB-MOP)涂覆在厚度可控的二氧化硅基底上。贯穿网络和层间桥接的强共价键可显着提高涂层的耐久性。在各种溶剂以及具有广泛pH值或高离子强度的溶液中,甚至在沸水等极端苛刻的条件下,都观察到了出色的化学稳定性。 SNW-1涂层具有由共轭和富氮的结构单元构成的微孔网络结构。因此,基于包括π-π亲和力和酸碱相互作用在内的相互作用,该涂层表现出优于商业涂层的多环芳烃和挥发性脂肪酸(VFA)的富集性能。为了进一步应用,该涂层与气相色谱/质谱联用,可对茶叶和烟丝样品中的VFA进行无创分析。相对标准偏差(RSD)在4.3%至9.0%之间,可实现0.014-0.026μg / L的低检测限。因此,从样品中检测到痕量原始VFA。回收率在90-129%和77-118%之间,相应的RSD(n = 3)分别为2.6-9.3%和1.9-10%。

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