Nell'ambito della seconda sessione del 41° ciclo, sono disponibili le seguenti borse a tematica vincolata per il corso di dottorato in "Scienza e Tecnologia dei Materiali":
- AMMIN - Biobased polymeric materials for 3D printing by liquid deposition modelling
- DISAT - Paint consolidation: switching from conservation current practice to greener and more user friendly polymers and solvents
- DISAT - Paint consolidation: towards the use of natural polymers for more sustainable products
- CRT/DISAT - Towards sustainable Flame-Retardant polymers: processing, microstructure, and performance relationships
- DISAT - Design, fabrication, and advanced characterization of multifunctional membranes for CO2/H2O capture and ion transport
- AMMIN/DISAT - Nanomaterials for Advanced Light Energy Management
- DISAT - Advanced functional nanofibrous materials by green electrospinning
- CRT/DISAT - Laser processing of polymer-based materials
- DISAT - Sustainable materials and processes for emerging energy technologies
- CRT/DISAT - 3D printing of ceramic and glass materials for biomedical and energy applications
- DISAT - Advanced characterization of functional materials for electrochemical energy storage
- DISAT - Molecular Modelling of Supramolecular Materials in Chemical Gradients
- IIT - 3D printing enabling morphological tactile sensing and mechanical interaction at different scales
- IIT - Electrochemical devices for integrated carbon capture and conversion
- IIT - Advanced and operando characterizations of functional materials and systems for the energy transition
Nell'ambito della prima sessione del 41° ciclo, sono disponibili le seguenti borse a tematica vincolata per il corso di dottorato in "Scienza e Tecnologia dei Materiali":
- AMMIN - Data Driven Approaches for Complex Molecular Systems and Materials
- AMMIN - Joining and integration of Protonic ceramic electrolysis cells
- AMMIN - Innovative scaffolds for tissue engineering: joining DLP technology with multi-functional ceramic particles
- Ammin/DISAT - Solid state and quasi solid state electrolytes for next generation Li-based batteries
- DISAT - Molecular Model and simulation of chemicalgradient-responsive Supramolecular Materials
- DISAT - Molecular Modelling of supramolecular systems response to concentration fluctuations
- DISAT - Molecular simulations of self-assembling systems in chemical gradients
- AMMIN - Development of additive manufacturing for functional inorganic materials
- AMMIN - Development of high-performance Ni-based superalloys by Additive Manufacturing processes
- CRT/CIM 4.0/DISAT - Development of new alloys for laserbased additive manufacturing
- INRiM - Optical and electrical techniques for fabrication and metrological characterization of transport properties in materials for energy applications
- DISAT - Next-generation materials and processes for industrial-scale rechargeable batteries
- DISAT - Materials and processes for the preparation of potassium batteries electrodes
- DISAT - Versatile materials for batteries and electrocatalysis