Physicochemical analysis of samples

Physicochemical analysis is the fundamental basis for the development, quality control, and engineering of innovative materials in a wide range of fields—from materials science and nanoelectronics to precision chemistry and cosmetology.
This comprehensive approach provides a detailed, multifactorial characterization of materials at the micro- and nano-levels, covering the structural, morphological, and chemical parameters that determine their functional properties. The results of this comprehensive analysis are indispensable for optimizingproduction cycles, resolving quality issues, and accelerating the launch of innovative products to market.

We offer in-depth material analysis covering three key areas necessary for evaluating their functionality and stability:

Physical-colloidal characterization —we precisely measure the size, polydispersity, and zeta potential of particles. These parameters allow us to predict the stability of suspensions, emulsions, and colloidal systems, as well as to evaluate their behavior in media such as paints, coatings, and ceramic suspensions.

Molecular identification —we perform structural and chemical verification of material composition using spectroscopic methods (FTIR, micro-Raman). This allows us to confirm authenticity, detect chemical changes or polymorphism, and verify compliance with specifications.

Structural and Elemental Analysis — We generate high-resolution images of the morphology and internal structure of samples using SEM and TEM, and perform local elemental mapping (EDS). This allows us to monitor homogeneity and phase distribution, and to detect microimpurities or inclusions that may affect the stability and quality of materials.