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Multilayer Interparticle Linking Hybrid MOF-199 for Noninvasive Enrichment and Analysis of Plant Hormone Ethylene

机译:多层颗粒间连接杂种MOF-199用于植物激素乙烯的无损富集和分析

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Ethylene, an important plant hormone, is of utmost importance during many developmental processes of plants. However, the efficient enrichment and analysis of trace ethylene still remains a challenge. A simple and mild multilayer interparticle linking strategy was proposed to fabricate a novel hybrid MOF-199 enrichment coating. Strong chemical interparticle linkages throughout the coating improved the durability and reproducibility of hybrid MOF-199 coating dramatically. This coating performed a significant extraction superiority of ethylene over commonly used commercial coatings, attributed to the multiple interactions including "molecular sieving effect", hydrogen bonding, open metal site interaction, and π-π affinity. The hybridization of multiwalled carbon nanotubes (MWCNTs) with MOF-199 further improved the enrichment capability and also acted as a hydrophobic "shield" to prevent the open metal sites of MOF-199 from being occupied by water molecules, which effectively improved the moisture-resistant property of MOF-199/CNTs coating. Finally, this novel enrichment method was successfully applied for the noninvasive analysis of trace ethylene, methanol, and ethanol from fruit samples with relatively high humidity. The low detection limit was 0.016 μg/L for ethylene. It was satisfactory that trace ethylene could be actually detected from fruit samples by this noninvasive method. Good recoveries of spiked grape, wampee, blueberry, and durian husk samples were obtained in the range of 90.0-114%, 79.4-88.6%, 78.5-86.8%, and 85.2-105% with the corresponding relative standard deviations of 4.8-9.8%, 6.9-8.9%, 3.8-8.1%, and 9.3-10.5% (n = 3), respectively.
机译:乙烯是一种重要的植物激素,在植物的许多发育过程中至关重要。然而,痕量乙烯的有效富集和分析仍然是一个挑战。提出了一种简单而温和的多层粒子间连接策略来制造新型的杂化MOF-199富集涂层。整个涂层中强大的化学粒子间键合极大地提高了混合MOF-199涂层的耐久性和可重复性。该涂层相对于常用的商用涂层具有明显的乙烯萃取优势,这归因于多种相互作用,包括“分子筛效应”,氢键,开孔金属位点相互作用和π-π亲和力。多壁碳纳米管(MWCNT)与MOF-199的杂交进一步提高了其富集能力,并且还充当疏水性“屏蔽层”,以防止MOF-199的开放金属位点被水分子占据,从而有效地改善了水分- MOF-199 / CNTs涂层的耐腐蚀性。最终,这种新的富集方法成功地用于从湿度较高的水果样品中进行的痕量乙烯,甲醇和乙醇的无损分析。乙烯的最低检测限为0.016μg/ L。令人满意的是,通过这种非侵入性方法可以从水果样品中实际检测出痕量的乙烯。加标葡萄,黄皮,蓝莓和榴莲果皮样品的回收率良好,范围为90.0-114%,79.4-88.6%,78.5-86.8%和85.2-105%,相应的相对标准偏差为4.8-9.8分别为%,6.9-8.9%,3.8-8.1%和9.3-10.5%(n = 3)。

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