Scientific

协作式关联显微术

从兴趣点(POI)重新定位到多层多模式映射的完整套件

HORIBA Scientific几十年来一直处于相关显微镜的前沿,其开发的FTIR-RamanAFM-RamanParticle-Raman解决方案就是证明。创新和专利的nanoGPS ,navYX和graphYX解决方案,结合了硬件(专利的定位样品标签)和软件(由Digital Surf Mountains提供的专用平台并与LabSpec 6软件集成),开辟了新的革命道路。

显微镜结合了几种分析和成像技术,需要考虑以下几种情况

  • 在多个独立的仪器上进行连续测量,需要一个精确的重新定位工具来进行准确的关联分析(nanoGPS navYX和graphYX)。
  • 用一台仪器同时测量,结合几种分析方法。一个典型的例子是用AFM-Raman系统进行共定位的表面、形貌和化学测量。
  • 相关纳米尺度测量--在纳米尺度上的直接和实时测量,包括与电、磁或力曲线AFM测量相关的TERS/TEPL化学模式,以及与SEM成像模式相关的cathodoluminescence

用nanoGPS navYX进行重新定位

SEM-Raman组合以及更多信息!

graphYX和显微镜结合

由Digital Surf Mountains提供技术支持

在HORIBA电子商店获得该应用

查看协作式关联显微术视频

近年来,随着拉曼成为材料生命环境科学的常规分析技术,越来越多的科学家渴望将微分子分析与其他更传统的表征技术相结合,如扫描电子显微镜(SEM)、荧光显微镜的尺寸/形态分析。专家之间的合作也是很重要的,将样品从一种技术转移到另一种技术,并进行精确的空间重新定位,永远是一个需要克服的关键问题。

相关显微镜(相关光电子显微镜,或CLEM)对于理解复杂情况特别有用。

在生命科学领域,荧光、拉曼和电子显微镜结合研究细胞膜、病毒和单分子,或表征生物材料。

刑侦科学领域,经常会结合多种非破坏性的表征方法对枪击残留物和体液进行调查研究。

在制药业,它有助于片剂污染分析和混合/溶出过程优化。

在工业领域,它被用于故障分析或涂层表征,通过结合SEM、X射线衍射(XRD)和拉曼光谱仪,可以对热学、力学和结晶学特性进行成像。

在地质学中,荧光和拉曼光谱经常被用来准确识别包裹体中的固相和液相成份。

在环境科学中,微塑料是目前非常热门的话题,可以从多模态分析中大大受益,重金属或气溶胶等颗粒类型也是如此。在这个在线网络研讨会上,来自夫劳恩霍夫IKTS科学家Silke Christiansen教授使用ZEISS ZEN Connect和nanoGPS navYX的结合来描述纳米和微塑料的特性。

Multimodal spectroscopy techniques for nanostructured materials characterization

Application Note - Multimodal spectroscopy techniques for nanostructured materials characterization

In this article, we present the combination of Raman spectroscopy, Photoluminescence and SEM-CL techniques, where the instruments weren’t physically connected. Smart nanostructured materials require a comprehensive understanding of their morphology, elemental and chemical composition. nanoGPS Suite solution allows a colocalized combination of a variety of microscopy techniques, providing a full characterization of nanostructured materials and a precise superimposition of the results obtained.

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Live Webinar: How to correlate Raman with other microscopies?

Raman microscopy provides both molecular and morphological information of the analyzed sample. However, sometimes it is not enough to fully understand a physical or chemical process. That's why the Raman information has to be coupled with complementary information. During this webinar, we will present the different solutions existing to combine Raman with other microscopy techniques in this aim, like SEM, AFM, or all other microscopy techniques.

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Webinar - nanoGPS: Correlative Microscopy Solution

Switching between microscopes has never been so fast and accurate.
Sometimes you would like to access a microscope that is not available in your own lab, don’t you? nanoGPS allows fast relocalisation of points of interest between different microscopes and modalities: Raman, SEM, EDX, EBSD, cathodoluminescence, optical microscope, AFMs and more!

nanoGPS saves time and opens new opportunities to researchers. Join the webinar to learn how user-friendly it is and discuss with our experts how you can try it for yourself!

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Co-localized microscopy techniques for pyrite mineral spatial characterization

Application Note - Co-localized microscopy techniques for pyrite mineral spatial characterization

In this study we have chosen to investigate pyrite and its surrounding minerals in order to identify the different mineral phases as well as the chemical variations from micro- to nano-scale. Using the different microscopes instruments and being co-localized allows a comprehensive characterization of the sample and a precise superimposition of all the images.

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