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Automated printing technology as a new tool for liquid sample preparation for micro x-ray fluorescence (MXRF)

机译:自动化打印技术作为用于微X射线荧光(MXRF)液体样品制备的新工具

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摘要

The focus of this study was to explore automated printing technology (APT) as an alternative means to manual methods for nanoliter dried spot sample preparation of liquid samples for micro x-ray fluorescence analysis (MXRF). APT was used successfully to dispense 20 and 50 nl volumes of multielemental standard solutions onto AP1 and Kapton film substrates. Automated droplet deposition was rapid and minimized operator skill and human error in the sample preparation process. Dried spots prepared by APT were generally circular in shape and similar in appearance to those prepared by manual dried spot deposition techniques. Furthermore, multiple dried spots could be accurately and reproducibly deposited in the same precise location on the film substrate surface, allowing for increased sample loadings within the MXRF analysis area for higher elemental sensitivity. The characteristics of the substrate did affect the quality of dried spot formation, with irregularly shaped spots forming on the thicker, more hydrophobic Kapton film, especially with higher droplet mass loadings. Adverse effects of irregular spot formation on quantitative analysis could be easily minimized by increasing the MXRF analysis area to encompass the entire dried spot residue. Nanoliter dried spot sample preparation is useful not only for MXRF analysis of liquid samples, but can also be applied to other analytical techniques such as IR, Raman or UV/fluorescence spectroscopy, the applications of which can benefit from rapid sample throughput and matrix reduction. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:这项研究的重点是探索自动打印技术(APT),以替代手动方法制备用于液体X射线微分析(MXRF)的纳升干点样品。 APT已成功用于将20和50 nl体积的多元素标准溶液分配到AP1和Kapton薄膜基材上。自动化的液滴沉积非常迅速,并且使样品制备过程中的操作员技能和人为错误降至最低。通过APT制备的干斑通常呈圆形,并且外观与通过手动干斑沉积技术制备的干斑相似。此外,可以在薄膜基板表面上的相同精确位置准确且可重复地沉积多个干燥斑点,从而可以在MXRF分析区域内增加样品加载量,从而获得更高的元素敏感性。基材的特性确实会影响干燥斑点形成的质量,在较厚,疏水性更高的Kapton薄膜上会形成不规则形状的斑点,尤其是在较高的液滴质量负载下。通过增加MXRF分析面积以涵盖整个干燥的斑点残留物,可以轻松地将不规则斑点形成对定量分析的不利影响降至最低。纳升干斑样品制备不仅可用于液体样品的MXRF分析,而且还可应用于其他分析技术,例如IR,拉曼光谱或UV /荧光光谱法,其应用可受益于快速的样品通量和基质减少。版权所有(c)2005 John Wiley&Sons,Ltd.

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