Daniela da Silva Nunes Gomes (CENIMAT|i3N and CEMOP/UNINOVA, Department of Materials Science, NOVA School of Science and Technology)
Emanuel Abreu Antunes Carlos (CENIMAT|i3N and CEMOP/UNINOVA, Department of Materials Science, NOVA School of Science and Technology)
Henrique Martiniano Vazão de Almeida (CENIMAT|i3N and CEMOP/UNINOVA, Department of Materials Science, NOVA School of Science and Technology)
Joana Maria Dória Vaz Pinto Morais Sarmento (CENIMAT|i3N and CEMOP/UNINOVA, Department of Materials Science, NOVA School of Science and Technology)
Target audience: Undegraduate students, Master Students, PhD Students, Post-doctoral fellows, Professors
Duration: 4h or 6h (morning and afternoon)
Room: To be announced
This short course provides an integrated overview of functional materials and their role in emerging technological applications across energy, electronics, healthcare, and intelligent surfaces. The programme is structured into four focused one-hour modules, offering participants both a broad perspective and targeted insights into key areas of materials science.
The first module introduces functional materials, with particular emphasis on metal oxide nanomaterials and their applications in energy, while addressing materials for energy conversion and storage, as well as sustainability challenges, current technological limitations, and future opportunities. Particular attention will be given to device fabrication, cleanroom technologies, and advanced processing techniques (Prof. Joana Pinto).
The second module explores solution-based metal oxides and 2D materials, including advanced semiconductor materials, coating and printing technologies, and memristor devices for next-generation electronic technologies (Dr. Emanuel Carlos).
The third module focuses on biomaterials, with particular emphasis on tissue engineering and the development of materials for biomedical applications (Dr. Henrique Almeida).
The fourth module introduces intelligent surfaces, focusing on multifunctional nanomaterials and solution-based techniques for applications such as photocatalysis, self-cleaning, and environmental remediation (Prof. Daniela Gomes).
A transversal perspective on processing and manufacturing technologies will be integrated throughout the course, emphasising how material synthesis, fabrication methods, process optimisation, scalability, and technological integration influence material performance and ultimately determine the transition from laboratory-scale research to real-world applications.