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The rheo-Raman microscope: Simultaneous chemical, conformational, mechanical, and microstructural measures of soft materials
64
Citations
31
References
2016
Year
EngineeringSimultaneous Raman SpectroscopyMicroscopySurface-enhanced Raman ScatteringSoft MatterRheological MeasurementMicroscopy MethodRheologySoft MaterialsBiophysicsMaterials ScienceCosmetic EmulsionRheo-raman MicroscopePolymer AnalysisPolymer MeltMechanical PropertiesSpectroscopyPolymer ScienceHigh Density PolyethyleneScanning Force MicroscopyScanning Probe MicroscopySimultaneous ChemicalPolymer PropertyMedicineSpectroscopic Method
The design and performance of an instrument capable of simultaneous Raman spectroscopy, rheology, and optical microscopy are described. The instrument couples a Raman spectrometer and optical microscope to a rotational rheometer through an optically transparent base, and the resulting simultaneous measurements are particularly advantageous in situations where flow properties vary due to either chemical or conformational changes in molecular structure, such as in crystallization, melting, gelation, or curing processes. Instrument performance is demonstrated on two material systems that show thermal transitions. First, we perform steady state rotational tests, Raman spectroscopy, and polarized reflection microscopy during a melting transition in a cosmetic emulsion. Second, we perform small amplitude oscillatory shear measurements along with Raman spectroscopy and polarized reflection microscopy during crystallization of a high density polyethylene. The instrument can be applied to study structure-property relationships in a variety of soft materials including thermoset resins, liquid crystalline materials, colloidal suspensions undergoing sol-gel processes, and biomacromolecules. Official contribution of the National Institute of Standards and Technology; not subject to copyright in the United States.
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