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首页> 外文期刊>RSC Advances >Design of a multi-well plate for high-throughput characterization of heterogeneous catalysts by XRD, FT-IR, Raman and XRF spectroscopies
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Design of a multi-well plate for high-throughput characterization of heterogeneous catalysts by XRD, FT-IR, Raman and XRF spectroscopies

机译:XRD,FT-IR,拉曼和XRF光谱法的高通量表征多孔板的设计

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摘要

For powder catalyst characterization, Fourier Transform Infrared (FTIR), Raman, and X-Ray Fluorescence (XRF) spectrometers and X-Ray Diffraction (XRD) are available in high-throughput (HT) configurations, for example at the REALCAT platform to sequentially analyse multiple sets of samples. To remove the bottleneck resulting from the use of different sample holders for each equipment, a unique multi-well plate was developed. This paper details the design of such a plate including the selection of the fabrication material and the plate dimensioning based on the study of the 4 different physical interactions between matter and electromagnetic radiations for the aforementioned techniques. This new plate consists of a holder for removable wells enabling the avoidance of cross-contamination between samples. Raman, a focusing technique, has no strict constraint on the plate design. The number of wells, their geometry, spacing and dimensions were adjusted to deal with the constraints of IR optics. The well depth was set according to the XRF maximum penetration depth in the sample. The well diameter was optimized in order to obtain from the X-ray spot size the maximum achievable intensity. Poly-methyl-methacrylate (PMMA) was chosen as the material for the new plate due to its amorphous structure (no peak in XRD analysis) and ease with which it can be cut by a laser. Finally, the flatness of the multi-well plate was validated on the most challenging instrument: XRD. This new plate allows fast sample filling/preparation, requires small quantities of catalyst (50 to 80 mg) in each well and is compatible and convenient for HT experimentation.
机译:对于粉末催化剂表征,傅里叶变换红外(FTIR),拉曼和X射线荧光(XRF)光谱仪和X射线衍射(XRD)可用于高吞吐量(HT)配置,例如在Realcat平台上顺序分析多组样本。为了拆下由每个设备使用不同样品支架所产生的瓶颈,开发了独特的多孔板。本文详述了这种板的设计,包括选择制造材料和板尺寸的选择,基于对上述技术的4种不同物理相互作用的研究。这款新板由一个用于可拆卸井的支架组成,使得能够避免样品之间的交叉污染。拉曼是​​一种聚焦技术,对板设计没有严格的限制。调整井,几何,间距和尺寸的井数以处理IR光学的约束。根据样品中的XRF最大渗透深度设定孔深度。优化孔直径以获得从X射线点尺寸获得最大可实现的强度。选择聚甲基 - 甲基丙烯酸酯(PMMA)作为新板的材料,由于其无定形结构(XRD分析中没有峰),并且可以通过激光切割它。最后,在最具挑战性仪器上验证了多孔板的平整度:XRD。该新板允许快速样品填充/制剂,需要在每个孔中少量催化剂(50至80mg),并且兼容,便于HT实验。

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  • 来源
    《RSC Advances》 |2018年第71期|共9页
  • 作者单位

    Univ Artois Univ Lille CNRS Cent Lille ENSCL UCCS Unite Catalyse &

    Chim Solide UMR 8181 F-59000 Lille France;

    Univ Artois Univ Lille CNRS Cent Lille ENSCL UCCS Unite Catalyse &

    Chim Solide UMR 8181 F-59000 Lille France;

    Univ Littoral Cote dOpale Univ Artois Univ Lille INRA ISA ICV EA 7394 F-59000 Lille France;

    Univ Artois Univ Lille CNRS Cent Lille ENSCL UCCS Unite Catalyse &

    Chim Solide UMR 8181 F-59000 Lille France;

    Univ Artois Univ Lille CNRS Cent Lille ENSCL UCCS Unite Catalyse &

    Chim Solide UMR 8181 F-59000 Lille France;

    Univ Artois Univ Lille CNRS Cent Lille ENSCL UCCS Unite Catalyse &

    Chim Solide UMR 8181 F-59000 Lille France;

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  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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