Sort by
Refine Your Search
-
Employer
-
Field
-
and plants at multiple scales, has been applying 3D electron microscopy (FIB-SEM) in this field, thanks to the technological environment of IRIG and its collaboration with IBS. This work has led
-
solid-state NMR • Electron microscopy (SEM, TEM) • Chromatography (HPLC, SEC) • X-ray diffraction • UV-Visible and IR spectroscopy • Light scattering • Material characterization equipment (DSC, TGA, DVS
-
, modification, and physicochemical characterization (XRD, TGA, SEM) of nanoporous materials (zeolites and zeotypes) or other oxydes. - Development of advanced spectroscopic characterization methodologies (IR
-
-precision dynamic biomechanical tests. Improve actuation control (speed, smoothness, accuracy). Synchronize with advanced imaging systems (micro-CT, OCT, multiphoton microscopy, SEM). Develop customized
-
other techniques. Development of advanced spectroscopic characterization methodologies (IR, Raman, UV, NMR). - Synthesis, modification, and physicochemical characterization (XRD, TGA, SEM) of nanoporous
-
. The laboratory provides access to state-of-the-art experimental facilities, including: (i) advanced materials characterization tools (SEM–EDX, confocal laser microscopy, and µ-Raman spectroscopy); (ii) cutting