首页> 美国卫生研究院文献>Iranian Journal of Pharmaceutical Research : IJPR >Preparation of Solid Phase Microextraction (SPME) Probes through Polyaniline Multiwalled Carbon Nanotubes (PANI/MWCNTs) Coating for the Extraction of Palmitic Acid and Oleic Acid in Organic Solvents
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Preparation of Solid Phase Microextraction (SPME) Probes through Polyaniline Multiwalled Carbon Nanotubes (PANI/MWCNTs) Coating for the Extraction of Palmitic Acid and Oleic Acid in Organic Solvents

机译:通过聚苯胺多壁碳纳米管(PANI / MWCNTs)涂层制备固相微萃取(SPME)探针用于萃取有机溶剂中的棕榈酸和油酸

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摘要

A fiber coating from polyaniline (PANI) was electrochemically prepared and employed for Solid phase micreoextraction (SPME). The PANI film was directly electrodeposited on the platinum wire surface using cyclic voltametry (CV) technique. The same method was applied for the preparation of SPME fiber coated by polyaniline multiwalled carbon nanotubes (PANI/MWCNTs) composite. The concentration of sulfuric acid for electropolymerization was 0.1 M in the presence of 0.045 M aniline in aqueous solution. For the electrodeposition of PANI/MWCNT composite, 4 μg/mL of MWCNTs was dispersed into the solution. Film coating was carried out on the platinum wire by repetitive cycling of potentials between 0 and 1.0 V at the scan rate of 0.05 V/s. The applicability of these coatings were assessed through employing a laboratory-made SPME injecting device and gas chromatography with mass spectrometry (GC-MS) for the extraction of palmitic acid and oleic acid from chloroform.The developed method proved to be simple and easy, offering high reproducibility. Both PANI coated and PANI/CNT coated probes had the ability to concentrate palmitic acid and oleic acid on their coating and produced strong signals in GC-MS chromatograms. In the meantime, PANI/CNT coated SPME probes produced signals which were stronger than those produced by PANI coated SPME probes. The amount of extracted palmitic acid and oleic acid from chloroform by the PANI/MWCNTs coating was about 6 and 12 times higher than the amount extracted by plane PANI SPME fibers respectively.It could be suggested that the composite material with CNTs has both an increased surface area and an elevated absorptive capacity which leads to this overall increase in extracted palmitic acid and oleic acid.
机译:电化学制备了由聚苯胺(PANI)制成的纤维涂层,并将其用于固相微萃取(SPME)。使用循环伏安法(CV)将PANI膜直接电沉积在铂丝表面上。采用相同的方法制备了聚苯胺多壁碳纳米管(PANI / MWCNTs)复合材料包覆的SPME纤维。在水溶液中0.045M苯胺存在下,用于电聚合的硫酸的浓度为0.1M。为了电沉积PANI / MWCNT复合材料,将4μg/ mL的MWCNT分散到溶液中。通过以0.05 V / s的扫描速率在0至1.0 V之间的电势重复循环,在铂丝上进行覆膜。通过使用实验室制造的SPME注射装置和气相色谱-质谱(GC-MS)来从氯仿中提取棕榈酸和油酸来评估这些涂料的适用性,事实证明该方法简便易行,可提供高重复性。 PANI涂层探针和PANI / CNT涂层探针均具有在涂层上浓缩棕榈酸和油酸的能力,并在GC-MS色谱图中产生强信号。同时,PANI / CNT涂层的SPME探针产生的信号比PANI涂层的SPME探针产生的信号强。 PANI / MWCNTs涂层从氯仿中提取的棕榈酸和油酸的量分别比平面PANI SPME纤维提取的量高约6倍和12倍,这表明具有CNTs的复合材料的表面均增加面积和增加的吸收能力,导致提取的棕榈酸和油酸的总体增加。

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