Explore the core technologies that power our scientific solutions. We provide advanced analytical and measurement techniques from leading global manufacturers, supported by local expertise and application-driven guidance to help researchers and industry professionals achieve reliable results.
Raman Spectroscopy is a non-destructive analytical technique used to identify molecular composition, chemical structure, and material properties.
A label-free optical technique for real-time measurement of molecular binding kinetics and affinity at surfaces — widely used in drug discovery, biosensor development and protein interaction studies.
A highly sensitive optical technique that measures the emission of light by fluorescent molecules following excitation — providing chemical identification, quantification and dynamic information from UV to NIR wavelengths.
A scanning probe technique that images and measures surface properties at the nanometer scale by detecting tip-surface forces — operating in air, liquid or vacuum without special sample preparation.
Quantitative measurement of particle size and shape distributions in powders, granules, suspensions and sprays — from sub-micron to millimeter scale using dynamic image analysis and laser diffraction.
QCM-D is an ultra-sensitive surface analytical technique that simultaneously measures mass changes and viscoelastic properties of thin films adsorbed on sensor surfaces in real time.
Circular Dichroism spectroscopy measures differential absorption of circularly polarized light to reveal the secondary structure, folding, and stability of chiral biomolecules such as proteins and nucleic acids.
X-ray fluorescence and glow discharge spectroscopy provide fast, accurate multi-element composition analysis of solid materials and thin films, from bulk characterization to nanometer-scale depth profiling.
KSV NIMA Langmuir trough systems enable precise control and characterization of molecular films at air-water interfaces and controlled deposition of organized mono- and multilayer films onto solid substrates.
Stopped-flow and quenched-flow instrumentation for following fast reactions on the millisecond timescale.