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Identification of microplastics by FTIR and Raman microscopy: a novel silicon filter substrate opens the important spectral range below 1300 cm(-1) for FTIR transmission measurements

机译:通过FTIR和拉曼显微镜鉴定微塑料:一种新型的硅滤光片基材可打开1300 cm(-1)以下的重要光谱范围,用于FTIR透射测量

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摘要

The presence of microplastics in aquatic ecosystems is a topical problem and leads to the need of appropriate and reliable analytical methods to distinctly identify and to quantify these particles in environmental samples. As an example transmission, Fourier transform infrared (FTIR) imaging can be used to analyze samples directly on filters without any visual presorting, when the environmental sample was afore extracted, purified, and filtered. However, this analytical approach is strongly restricted by the limited IR transparency of conventional filter materials. Within this study, we describe a novel silicon (Si) filter substrate produced by photolithographic microstructuring, which guarantees sufficient transparency for the broad mid-infrared region of 4000-600 cm(-1). This filter type features holes with a diameter of 10 mu m and exhibits adequate mechanical stability. Furthermore, it will be shown that our Si filter substrate allows a distinct identification of the most common microplastics, polyethylene (PE), and polypropylene (PP), in the characteristic fingerprint region (1400-600 cm(-1)). Moreover, using the Si filter substrate, a differentiation of microparticles of polyesters having quite similar chemical structure, like polyethylene terephthalate (PET) and polybutylene terephthalate (PBT), is now possible, which facilitates a visualization of their distribution within a microplastic sample by FTIR imaging. Finally, this Si filter can also be used as substrate for Raman microscopy-a second complementary spectroscopic technique-to identify microplastic samples.
机译:水生生态系统中微塑料的存在是一个热门问题,并导致需要适当而可靠的分析方法来区别识别和量化环境样品中的这些颗粒。作为示例传输,当之前提取,纯化和过滤环境样品时,可以使用傅里叶变换红外(FTIR)成像直接在过滤器上分析样品,而无需进行任何视觉预分选。但是,这种分析方法受到常规滤光材料有限的IR透明性的强烈限制。在这项研究中,我们描述了通过光刻微结构化生产的新型硅(Si)滤光片基板,该滤光片基板对于4000-600 cm(-1)的宽中红外区域具有足够的透明度。这种过滤器具有直径为10微米的孔,并具有足够的机械稳定性。此外,将显示我们的Si过滤器基板可以在特征指纹区域(1400-600 cm(-1))中对最常见的微塑料,聚乙烯(PE)和聚丙烯(PP)进行不同的识别。此外,使用Si过滤器基板,现在可以区分化学结构非常相似的聚酯微粒,例如聚对苯二甲酸乙二醇酯(PET)和聚对苯二甲酸丁二醇酯(PBT),这有助于通过FTIR可视化它们在微塑料样品中的分布成像。最后,该硅滤光片还可以用作拉曼显微镜(第二种辅助光谱技术)的基质,以识别微塑性样品。

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