首页> 外文期刊>Analytica chimica acta >Fabrication of novel nanoporous array anodic alumina solid-phase microextraction fiber coating and its potential application for headspace sampling of biological volatile organic compounds
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Fabrication of novel nanoporous array anodic alumina solid-phase microextraction fiber coating and its potential application for headspace sampling of biological volatile organic compounds

机译:新型纳米多孔阵列阳极氧化铝固相微萃取纤维涂层的制备及其在生物挥发性有机物顶空进样中的潜在应用

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In the study, nanoporous array anodic alumina (NAAA) prepared by a simple, rapid and stable two-step anodic oxidization method was introduced as a novel solid-phase microextraction (SPME) fiber coating. The regular nanoporous array structure and chemical composition of NAAA SPME fiber coating was characterized and validated by scanning electron microscopy and energy dispersive spectroscopy, respectively. Compared with the commercial polydimethylsiloxane (PDMS) SPME fiber coating, NAAA SPME fiber coating achieved the higher enrichment capability (1.7-4.7 folds) for the mixed standards of volatile organic compounds (VOCs). The selectivity for volatile alcohols by NAAA SPME fiber coating demonstrated an increasing trend with the increasing polarity of alcohols caused by the gradually shortening carbon chains from 1 -undecanol to 1 -heptanol or the isomerization of carbon chains of some typical volatile alcohols including 2-ethyl hexanol, 1-octanol, 2-phenylethanol, 1-phenylethanol, 5-undecanol, 2-undecanol and 1-undecanol. Finally, NAAA SPME fiber coating was originally applied for the analysis of biological VOCs of Bailan flower, stinkbug and orange peel samples coupled with gas chromatography-mass spectrometry (GC-MS) detection. Thirty, twenty-seven and forty-four VOCs of Bailan flower, stinkbug and orange peel samples were sampled and identified, respectively. Moreover, the contents of trace 1-octanol and nonanal of real orange peel samples were quantified for the further method validation with satisfactory recoveries of 106.5 and 120.5%, respectively. This work proposed a sensitive, rapid, reliable and convenient analytical method for the potential study of trace and small molecular biological VOCs by the novel NAAA SPME fiber coating.
机译:在研究中,介绍了一种通过简单,快速和稳定的两步阳极氧化法制备的纳米多孔阵列阳极氧化铝(NAAA)作为新型固相微萃取(SPME)纤维涂层。通过扫描电子显微镜和能量色散谱分别表征和验证了NAAA SPME纤维涂层的规则纳米孔阵列结构和化学组成。与市售的聚二甲基硅氧烷(PDMS)SPME纤维涂料相比,NAAA SPME纤维涂料对挥发性有机化合物(VOC)的混合标准品具有更高的富集能力(1.7-4.7倍)。 NAAA SPME纤维涂层对挥发性醇的选择性表明,随着碳极性从1-十一烷醇逐渐缩短到1-庚醇或某些典型的挥发性醇(包括2-乙基)的碳链异构化,导致极性增加,醇的极性呈增加趋势。己醇,1-辛醇,2-苯基乙醇,1-苯基乙醇,5-十一烷醇,2-十一烷醇和1-十一烷醇。最后,NAAA SPME纤维涂层最初用于分析白兰花,臭椿和桔皮样品的生物挥发性有机化合物,并结合气相色谱-质谱(GC-MS)检测。分别对白兰花,臭臭虫和桔皮样品中的VOC进行了采样,分别确定了三十,二十七和四十四。此外,对痕量的1-辛醇和真正的橙皮样品中的壬醛的含量进行了定量,用于进一步的方法验证,回收率分别为106.5和120.5%。这项工作提出了一种灵敏,快速,可靠和方便的分析方法,用于通过新型NAAA SPME纤维涂层对痕量和小分子生物VOC的潜在研究。

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