材料学

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材料表征是拉曼光谱的理想应用领域,因为它具有高度的化学特异性和快速、非接触测量的特点。无论是固体、液体还是气体,几乎所有材料都具有独特的拉曼光谱指纹。该技术可以很容易地扩展到微观方法,允许对极小体积和样品(如纳米材料)进行检测。纳米材料的表征对于确定其结构和构象特性至关重要。拉曼光谱是一种高效的技术,可用于研究这些材料的电子特性、组成和机械应力,所有这些都会在拉曼光谱带形状和频率偏移中体现出来。

 

1064 nm Dispersive Raman for Ink and Paint Classification.pdf

Graphene Analysis by Nomadic Raman Microscope.pdf

In Situ Raman Spectroscopic Measurements of Metal Oxides under High Temperature.pdf

Multi-wavelength Excitation Raman Spectroscopy for In-situ Characterization of Real-world Samples.pdf

Non-Destructive Red Wine Measurement with Dispersive 1064nm Raman Spectroscopy.pdf

Portable Multi-platform Raman System for Fuel Analysis.pdf

Chemical Analysis of Microscopic Fluorescent Materials by Dispersive 1064 Raman System.pdf