VERTEX 70 (Bruker) FT-IR spectrometer: Difference between revisions

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With its high sensitivity, stability and temporal resolution the device represents the best example of in its field, Bruker Vertex 70 is an ideal instrument for demanding research offering a wide range of applications. Those are some of them:
With its high sensitivity, stability and temporal resolution the device represents the best example of in its field, Bruker Vertex 70 is an ideal instrument for demanding research offering a wide range of applications. Those are some of them:
Purity assessment
a. Purity assessment
Base polymer composition
b. Base polymer composition
additive/contaminant identification
c. additive/contaminant identification
It is also a good technique to analyse the unknown material if you need to know its general type.
It is also a good technique to analyse the unknown material if you need to know its general type.
Platinum-ATR allows the measurements of liquids, powders, thin films. The spectra can be taken as absorbance or transmittance and easily converted one to another within a spectral range of 6,000 cm-1 - 80 cm-1 in a single step measurement.
Platinum-ATR allows the measurements of liquids, powders, thin films. The spectra can be taken as absorbance or transmittance and easily converted one to another within a spectral range of 6,000 cm-1 - 80 cm-1 in a single step measurement.
Additional accessories and their exploitation:
Additional accessories and their exploitation:
Specular reflection measurements under the variable angle 5°-85° with Harrick "Auto-Seagull" module
a. Specular reflection measurements under the variable angle 5°-85° with Harrick "Auto-Seagull" module
Diffuse reflection measurements with a gold-coated integration sphere
b. Diffuse reflection measurements with a gold-coated integration sphere


== Important rules ==



== Technical Dokumentation ==
== Technical Documentation ==
[https://www.bruker.com/fileadmin/user_upload/8-PDF-Docs/OpticalSpectrospcopy/FT-IR/VERTEX/Brochures/VERTEX70_Brochure_EN.pdf]
[https://www.bruker.com/fileadmin/user_upload/8-PDF-Docs/OpticalSpectrospcopy/FT-IR/VERTEX/Brochures/VERTEX70_Brochure_EN.pdf]



Revision as of 18:16, 16 August 2017

FTIR Bruker Vertex 70.jpg

Device name: Bruker - FT-IR spektrometer

Model: Vertex 70

Device responsibles: Roman Lyubimenko, Deski Beri

Room: R203

Wavenumber range: 6000 - 80 cm-1

Spectral Resolution: ≤ 0.4 cm-1(apodized), optional 0.16 cm-1

Dimensions (W x D x H): 1020 mm x 630 mm x 300 mm

Short description

The Vertex 70 is a fully digital Fourier-transform(FT-IR) spectrometer for obtaining infrared spectra of solid, liquid and gas samples in absorption or transmission mode. MIR-FIR spectrum of a metal complex sample measured in one go from 4000 cm-1 to 130 cm-1 using Platinum diamond ATR and purged VERTEX 70 equipped with the standard MIR source, ultra wide range far-mid IR beamsplitter and room temperature DLaTGS detector at 4 cm-1 spectral resolution.


The data acquisition is based on two channel delta-sigma ADCs with 24-bit dynamic range, which are integrated into the detector preamplifier electronics. This advanced DigiTectTM technology prevents external signal disturbance and guarantees the highest signal-to-noise ratio.

With its high sensitivity, stability and temporal resolution the device represents the best example of in its field, Bruker Vertex 70 is an ideal instrument for demanding research offering a wide range of applications. Those are some of them: a. Purity assessment b. Base polymer composition c. additive/contaminant identification

It is also a good technique to analyse the unknown material if you need to know its general type. Platinum-ATR allows the measurements of liquids, powders, thin films. The spectra can be taken as absorbance or transmittance and easily converted one to another within a spectral range of 6,000 cm-1 - 80 cm-1 in a single step measurement. Additional accessories and their exploitation: a. Specular reflection measurements under the variable angle 5°-85° with Harrick "Auto-Seagull" module b. Diffuse reflection measurements with a gold-coated integration sphere

Important rules

Technical Documentation

[1]


Eingewiesene Nutzer

Roman Lyubimenko

Deski Beri