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Thermogravimetry and Mass Spectrometry of Extractable Organics from Manufactured Nanomaterials for Identification of Potential Coating Components

机译:制备的纳米材料中可萃取有机物的热重分析和质谱分析用于识别潜在的涂层成分

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摘要

Manufactured nanomaterials (MNMs) often have a surface-chemical modification in order to tailor their physicochemical properties, including also powder properties and miscibility. Surface-chemical modifications may influence the toxicological properties of the MNM, but the specific chemistry and extent are rarely described in detail in suppliers’ technical data sheets. Chemical and quantitative information on any surface-chemical treatment, coating and functionalization are required for chemicals registration in Europe. Currently there is no globally accepted and documented approach to generate such data. Consequently, there is a continued research need to establish a structured approach to identify and quantify surface-chemical modifications. Here we present a tiered approach starting with screening for mass-loss during heating in a furnace or thermogravimetric analysis (TGA) followed by solvent extraction, and analysis by several mass spectrometry (MS) techniques depending on the target analytes. Thermal treatment was assumed to be able to quantify the amount of organic coating and MS was used to identify the extractable organic coatings after pressurized liquid extraction (PLE) using methanol at 200 °C. Volatile organic compounds in extracts were identified with gas chromatography and MS (GC-MS), non-volatile organic compounds with liquid chromatography MS (LC-MS), and polymeric compounds with matrix-assisted laser desorption ionization time-of-flight MS (MALDI-TOF-MS). The approach was demonstrated by analysis of 24 MNM, comprising titanium dioxide, synthetic amorphous silica, graphite, zinc oxide, silver, calcium carbonate, iron oxide, nickel-zinc-iron oxide, and organoclay. In extracts of 14 MNMs a range of organic compounds were identified and the main groups were silanes/siloxanes, fatty acids, fatty acid esters, quaternary ammonium compounds and polymeric compounds. In the remaining 10 MNMs no organic compounds were detected by MS, despite the fact an organic coating was indicated by TGA.
机译:人造纳米材料(MNM)通常具有表面化学修饰,以调整其物理化学性质,包括粉末性质和可混溶性。表面化学修饰可能会影响MNM的毒理学特性,但是具体的化学作用和程度很少在供应商的技术数据表中得到详细描述。在欧洲进行化学品注册时,需要有关任何表面化学处理,涂层和功能化的化学和定量信息。当前,尚无全球公认的文件化方法来生成此类数据。因此,继续需要建立一种结构化方法来鉴定和定量表面化学修饰的研究。在这里,我们提出了一种分层方法,从筛选在加热炉中的质量损失或热重分析(TGA),然后进行溶剂萃取,然后根据目标分析物通过几种质谱(MS)技术进行分析。假定热处理能够量化有机涂层的量,在200℃下使用甲醇进行加压液体萃取(PLE)后,使用MS鉴定可萃取的有机涂层。提取物中的挥发性有机化合物通过气相色谱和质谱(GC-MS)鉴定,非挥发性有机化合物通过液相色谱MS(LC-MS)鉴定,高分子化合物通过基质辅助激光解吸电离飞行时间MS( MALDI-TOF-MS)。通过对24 MNM的分析证明了该方法,该方法包括二氧化钛,合成无定形二氧化硅,石墨,氧化锌,银,碳酸钙,氧化铁,镍-锌-氧化铁和有机粘土。在14种MNM的提取物中,鉴定出一系列有机化合物,主要类别为硅烷/硅氧烷,脂肪酸,脂肪酸酯,季铵化合物和高分子化合物。在剩余的10个MNM中,尽管TGA指示有有机涂层,但MS仍未检测到有机化合物。

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