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Fourier transform infrared spectroscopy functional groups detection

Fourier transform infrared spectroscopy (FTIR) is a technique which is used to obtain infrared spectrum of absorption, emission, and photoconductivity of sohd, hquid, and gas. It is used to detect different functional groups in PHB. FTIR spectrum is recorded between 4000 and 400 cm b For FTIR analysis, the polymer was dissolved in chloroform and layered on a NaCl crystal and after evaporation of chloroform, the polymer film was subjected to FTIR. The spectnun of PHB shows peaks at 1724 cm and 1279 cm b which corresponds to specific rotations around carbon atoms. The peak at 1724cm corresponds to C—O stretch of the ester group present in the molecular chain of highly ordered structure and the adsorption band at 1279cm corresponds to ester bonding.Figure 17.5 shows FTIR spectrum of PHB. [Pg.588]

Fourier Transform Infrared Spectroscopy Analysis A ThermoNicolet Nexus 470 spectrometer was used for FTIR analysis to detect the presence of functional groups in the membranes. Thin membrane samples were attached to a polyethylene substrate FTIR card from Thermo Electron Cotp. and analyzed at ambient temperature. All spectra were obtained from 100 scans at 4.0 cm resolution with spectra ranging from 400 to 4000 cm. ... [Pg.196]

Fourier transform infrared spectroscopy (FTIR) can measure the optical mass of the assembled material by detecting chemical bond vibrations hence, film growth can be monitored in terms of chemical composition of the film. Information can also be obtained on specific functional groups, specific ion pairings, or specific interactions, such as secondary stmctures within the multilayers of proteins or polypeptides. FTIR can be... [Pg.175]

The intermolecular interaction between the hydroxyl functional group of BC and the carboxyl functional group of alginate was detected using Fourier transform infrared [FT-IR] spectroscopy. [Pg.501]

High quality IR spectra of different carbon surfaces were obtained by photo-thermal beam deflection spectroscopy (IR-PBDS) [123,124]. This technique was developed with the intention of providing an IR technique that could be used to study the surface properties of materials that are difficult or impossible to examine by conventional means. Recently, diffuse reflectance infrared Fourier transform spectroscopy (DRIFTS) has been successfully applied to study the effect of different pretreatments on the surface functional groups of carbon materials [101,125-128]. Several studies aiming to improve the characterization of the carbon electrode surface and the electrode-electrolyte interface have been carried out using various in situ IR techniques [14,128-132]. The development of in situ spec-troelectrochemical methods has made it possible to detect changes in the surface oxides in electrolyte solutions during electrochemical actions. [Pg.136]


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See also in sourсe #XX -- [ Pg.671 , Pg.672 ]




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Detection infrared spectroscopy

Detection spectroscopy

Fourier spectroscopy

Fourier transform function

Fourier transform infrared

Fourier transform infrared detection

Fourier transform infrared functional groups detection

Fourier transform spectroscopy

Fourier transform spectroscopy infrared

Function Fourier

Functional detection

Functional group transformations

Functional group transformations groups

Infrared detection

Infrared functional groups

Infrared spectroscopy groups

Infrared spectroscopy, fourier

Infrared spectroscopy, function

Spectroscopy functional

Spectroscopy functional groups

Transformation function

Transformation groups

Transformed infrared spectroscopy

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