Schedule at a Glance

A - Perovskite and Emergent Photovoltaics
A1 Lead-free perovskites: Fundamentals and device application
A2 Progress in Narrow-Bandgap Perovskites: Fundamentals and Optoelectronic Applications 
A3 Flexible Perovskite Solar Cells: Materials, Interfaces and Stability
A4 Emerging Hybrid and Inorganic Solar Absorbers: Beyond ABX3
A5 From halide perovskites to perovskite-inspired materials - Synthesis, Modelling and Application
A6 Future of Metal Halide Perovskites: Fundamental Approaches and Technological Challenges

 

C - Nanocrystals and Nanomaterials

C1 Structural Foundations of Nanomaterials Properties
C2 Advances in low-dimensional Nanocrystals: Fundamental approaches and technological perspectives
C3 Solid Compositionally Complex Nanocrystals: Synthesis and Application
C4 Precision synthesis of nanocrystals and nanochemestry

 

E - Catalysis and electrochemistry for energy and transformation

E1 Breaking New Bonds: Electrocatalysis for Emerging Transformations
E2 Critical Raw Material (CRM) Substitution in Electrochemical Technology
E3 Photocatalysis for solar fuel and chemical synthesis
E4 Photo-assisted chemical reactions: materials, characterization and mechanisms

 

G - Advanced Measurement 

G1 Advanced Characterization of perovskites: electrons and photons
G2 Monitoring the degradation mechanisms of photovoltaic devices by optoelectronic characterization
G3 Stability Challenges and Solutions in metal halide Perovskites materials
G4 In situ/operando characterization of energy-related materials with synchrotron X-ray techniques
G5 In situ and Operando Characterization Across Disciplines: Advanced Lab-Based Techniques for Energy Conversion Research
G6 Operando and Correlative Characterization of Sustainable Materials and Interfaces

 

I - Emerging Material and Devices
I1 Novel materials and strategies for organic bioelectronics
I2 Organic materials and devices for sustainable and transient electronics
I3 Next-Generation Photonics: Emerging Trends and Innovations in Photon Sources, Detectors and Photonic Technologies with Halide Perovskite Materials
I4 Digital Discovery: From Energy Materials to Devices
B - Organic Materials, Devices and Technologies

B1 Future of Organic Solar cells: What is next?
B2 Strategies to push the efficiency and stability limits of organic photovoltaics at a multiscale
B3 Chemical and Electrochemical Doping of Organic Semiconductor
B4 Photophysics of organic semiconductors

 

D - Quantum Dots and 2D Materials

D1 Colloidal QDs in visible optoelectronics: focosing on non III-V nanocrystals
D2 Quantum dots from III-V semiconductors - from synthesis to applications
D3 Chalcogenide Quantum Dots: Materials and Devices for Infrared Light Harvesting Sensing and Emission
D4 Synthesis and Integration of 2D Materials for Electronics, Photonics and Functional Devices
D5 2D Layered Materials for Sustainable Energy Conversion and Storage
D6 Emerging Low-Dimensional Perovskite Emitters - Synthesis, Photophysics and Application
D7 Low-Dimensional Halide Perovskites - Exploring Unique Challenges and Opportunites in 0D, 1D and 2D Material

 

F - Energy Storage Devices

F1 Safe Materials for Advanced Battery Systems
F2 Electrochemical Energy Storage for a Green Future: Innovations in Materials, Manufacturing and Recycling
F3 Processing and manufacturing of next generation batteries
F4 Discovery and Engineering of Energy Nanomaterials: From Robotics to Digital Twin
F5 Lithium Batteries and Beyond: From Fundamental to Materials Discovery

 

H - Unconvencional Computation and Quantum System
H1 Quantum and Probabilistic Computation
H2 Halide perovskites for quantum technologies
H3 Neuromorphic Materials
H4 Neuromorphic devices and systems
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