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The main objective of this study is to observe the structural effects of high frequency (40.68 MHz) capacitively coupled single RF nitrogen discharge on the unsized HS PAN-based carbon fiber surfaces using the Raman spectroscopy analyzing technique.
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Raman scattering spectroscopy analyzed the film's atomic arrangements and graphitization level before and after tribocorrosion tests.
The structure, morphology and light absorption of the novel hybrid photoanode are characterized by X-ray diffraction, scanning electron microscopy, and UV vis absorption spectroscopy analyze.
This article describes results of a comparative study of capacitance and charge transfer rate in polymeric nickel complexes with six different salen-type ligands using electrochemical impedance spectroscopy, analyzes advantages and limitations of this method vs. cyclic voltammetry, and provides some insights into the structure and morphology of nickel-salen type polymers.
Here, we present the results of such a surface science study on Pt(111), combining temperature-programmed, high-resolution X-ray photoelectron spectroscopy (HRXPS), temperature-programmed molecular beam (TPMB) experiments, and infrared absorption reflection spectroscopy (IRAS), analyzing both surface species and gas phase products.
The resulting structural changes were observed with HPLC and FTIR spectroscopy by analyzing the bulk electrolyte after the electrochemical reactions.
NMR chromatography is a promising and superior alternative to NMR spectroscopy for analyzing mixtures since it simultaneously separates the spectra of the compounds and supplies information about their structure.
Similar to fluorescence correlation spectroscopy (FCS) analyzing fast fluorescence intensity fluctuations, SOFI can be expected to work with a much lower SNR than localization microscopy.
Using the IR beamline, MIRIAM (Diamond Light Source, UK), we show the importance of the substrate used for IR absorption spectroscopy by analyzing two different cell lines cultured on a range of seven optical substrates in both transmission and reflection modes.
Recently, Wu et al. [ 7] developed a laser trapping Raman spectroscopy (LTRS) method, a combination of laser trapping and micro-Raman spectroscopy, to analyze the lipid composition in microalgae on a single cell basis.
Furthermore, we describe a novel application of electron dispersive spectroscopy (EDS), in conjunction with Fourier Transform- infra red (FT-IR) spectroscopy, to analyze and monitor the changes in Ca2+ concentration during cross-linking.
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