Molecular spectroscopy is a set of high-precision analytical methods for studying substances based on the interaction of molecules with electromagnetic radiation.
These methods allow determination of chemical composition, structure, concentration, and physicochemical properties of various materials and are widely used in pharmaceuticals, chemistry, biotechnology, environmental analysis, medicine, food industry, and scientific research.
Molecular spectroscopy systems provide fast, accurate, and non-destructive analysis of liquid, solid, and gaseous samples.
The category includes infrared molecular spectrophotometers, UV-VIS-NIR spectrophotometers, and fluorescence molecular spectrophotometers.
Purpose and Capabilities
determination of chemical composition;
identification of organic and inorganic compounds;
component concentration analysis;
molecular structure research;
product quality control;
pharmaceutical and laboratory analysis;
environmental monitoring;
scientific and biochemical research.
Infrared Molecular Spectrophotometers
Infrared spectrophotometers are analytical instruments designed to study molecular structure using infrared spectroscopy.
identification of organic compounds;
analysis of polymers and plastics;
pharmaceutical product control;
chemical material research;
analysis of oils, coatings, and composites;
quality control of raw materials and finished products.
UV-VIS-NIR Molecular Spectrophotometers
UV-VIS-NIR spectrophotometers are used to analyze substances in the ultraviolet, visible, and near-infrared spectral ranges.
determination of substance concentration in solutions;
analysis of pharmaceutical products;
food quality control;
biochemical and medical research;
environmental analysis;
research of optical properties of materials.
Fluorescence Molecular Spectrophotometers
Fluorescence spectrophotometers are highly sensitive analytical systems designed to study the fluorescence of substances.
analysis of biological and medical samples;
research of proteins, DNA, and biomolecules;
pharmaceutical control;
environmental monitoring;
analysis of organic substances;
scientific research.
Advantages
high accuracy and sensitivity;
non-destructive sample control;
fast result acquisition;
measurement automation;
wide range of analyzed materials;
minimal sample preparation;
digital processing and result storage;
efficiency for laboratory and industrial tasks.
Applications
pharmaceutical industry;
chemical and biotechnology laboratories;
food industry;
environmental control;
medical and biochemical research;
materials science;
research centers;
product quality control.
Why Choose Equipment from “Holeks Tech”?
wide range of modern spectroscopy systems;
equipment from leading global manufacturers;
high accuracy and reliability of analysis;
solutions for laboratory and scientific tasks;
professional consultation and equipment selection assistance;
technical support and service maintenance;
custom laboratory configuration according to individual needs.
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