All objects

The project is aimed at the sustainable development of the CC SMEEST and its full integration into the research and innovation ecosystem of the country through foster research and innovation in the fields of mechatronics and clean technologies, for driving a smart transformation in various sectors of society:

  • Bringing together multidisciplinary teams of researchers, engineers, and experts to collaborate on developing cutting-edge solutions that integrate advanced mechatronics principles and clean technologies.
  • Upgrading and modernization of scientific research laboratories with implementation of additional equipment necessary for conducting scientific research.
  • Building expert capacity for research and innovation through talent attraction and retention, training and mobility of researchers and international collaboration with leading scientific organizations

Project activities enable research by a community of scientists, experts and change-makers to create sustainable innovations that safeguard our planet and elevate the well-being of current and future generations Through pioneering research, transformative education, and impactful industry engagement, the project activities envision a world where mechatronic systems and clean technologies converge to create smart, efficient, and ecologically friendly solutions. Project implementation cultivates a collaborative ecosystem that fosters education, research, and industry partnerships, driving the development of cutting-edge solutions that address global challenges while promoting a greener and more resilient future.

Center type

Competence Center "Intelligent Mechatronic, Eco- and Energy-Saving Systems and Technologies"

Regions

Sofia (stolitsa)

Municipalities

Stolichna

City

Sofia

Address

1504 Sofia, 15 Tsar Osvoboditel Blvd.

Contacts

Assoc. Prof. Dr. Krastanka Georgieva Marinova

+359886444352 km@lcpe.uni-sofia.bg

System for determining contact angles, surface energy and wetting micron drops on hard surfaces, incl. inclined and at different temperatures

Laser diffraction system for determining micron particle size in dispersions

Optical rheometer attachment for simultaneous rheological characterisation and variance monitoring

Ellipsometer with BAM for determination and visualization of objects with lateral dimensions up to 1 micrometer

Differential Thermal Analyzer with Thermal Gravimetry and Mass Spectrometer

Desktop Scanning Electron Microscope

Pore volume and size distribution analyser

Attachments for characterizing foam properties and surface rheology of disperse systems to a system for determining contact angles, surface energy and wetting

Published on: 30.09.2025