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Design and validation of a multimodal low-budget Raman-microscope for liquid and solid phase applications

机译:用于液体和固相应用的多模式低预算拉曼显微镜的设计与验证

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Confocal Raman microscopy is a powerful tool to measure small sample volumes or solids. Since commercial Raman microscopes are expensive and a change of the laser wavelength or the excitation path is hardly possible after the installation, we constructed a multimodal low-budget Raman microscope. Thus, it was possible to significantly increase the flexibility in terms of excitation wavelengths, paths, and planes. Furthermore, the asset costs were reduced by a factor of 1.7. By using commercial as well as home-built objectives to adapt the working distance and the magnification to the system under investigation, the self-constructed Raman microscope offers the possibility to measure big sample volumes, too. The obtained Raman spectra were validated by Raman spectra from a commercial Raman microscope. With a comparable measurement setting it was possible to increase the signal intensities, but with a slightly lower SNR. However, based on the great flexibility of the set-up, e.g., the laser power or the excitation wavelength can be adapted to increase the SNR. Furthermore, measurement times can be decreased. With this low-budget self-constructed Raman microscope high quality Raman microscopy and micro spectroscopy can be performed with a high flexibility to fast adapt the set-up to the sample under investigation which is not offered by commercial microscopes.
机译:共焦拉曼显微镜是一种测量小样本卷或固体的强大工具。由于商业拉曼显微镜昂贵并且在安装后几乎不可能改变激光波长或激光路径,因此我们构建了多模式低预算拉曼显微镜。因此,可以显着提高激发波长,路径和平面方面的灵活性。此外,资产成本减少了1.7倍。通过使用商业和家庭建造的目标来调整工作距离和放大到系统的调查,自建式拉曼显微镜也能够测量大样本量的可能性。通过来自商业拉曼显微镜通过拉曼光谱验证所获得的拉曼光谱。使用可比较的测量设置,可以增加信号强度,但是SNR略低。然而,基于设置的巨大灵活性,例如,激光功率或激发波长可以适于增加SNR。此外,可以降低测量时间。利用这种低预算自建拉曼显微镜,高质量的拉曼显微镜和微光谱可以通过高度灵活地进行,以便在商业显微镜未提供的调查中快速调整到样品的设置。

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