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    updated on 20 August, 2026

Next-Generation Functional Semiconductors for Energy and Electronics: From Perovskites to Organic Devices 3/3

 
   17 Sept. clessidra che gira 14:00 - 15:30
 
CHIPS & MICRO NANO ELECTRONICS
CHIPS & MICRO-NANO ELECTRONICS
ENERGY & ENVIRONMENT
ENERGY & ENVIRONMENT
TT.VII - Technical Parallel Track Sessions
Next-Generation Functional Semiconductors for Energy and Electronics: From Perovskites to Organic Devices 3/3
Co-organised with FBK
Chair: Mujeeb U. CHAUDRHY, Durham University

This symposium focuses on recent advances in next-generation semiconductor technologies, spanning hybrid, organic, and perovskite-based systems for energy and electronic applications. Rapid progress in materials design, interface engineering, and scalable fabrication has enabled significant improvements in device performance, stability, and manufacturability.

The session aims to bring together researchers working on perovskite solar cells, organic field-effect transistors (OFETs), organic light-emitting diodes (OLEDs), and hybrid semiconductor platforms. Particular emphasis will be placed on functional materials, interfacial engineering strategies, defect passivation approaches, and novel architectures that enhance efficiency, operational stability, and large-area scalability.

Topics of interest include, but are not limited to:
- Advanced functional materials (e.g., polymers, 2D materials, clays, polyoxometalates)
- Interface engineering and charge transport layers
- stability enhancement and degradation mechanisms
- Scalable and printable semiconductor technologies
- Emerging device architectures (flexible, wearable, large-area systems)
- AI-assisted materials discovery and device optimization
- Sustainable and environmentally friendly semiconductor approaches

This symposium aims to foster interdisciplinary collaboration and provide insights into bridging the gap between laboratory-scale innovation and industrial-scale implementation.

The symposium is part of WS.V
TT.VII.J.1
WS.V.3.1
İmren HATAY PATIR - CV
Selçuk University
Photocatalytic Hydrogen Production: Recent Advances and Opportunities in Heterojunction Photocatalysts
HATAY PATIR İmren  
TT.VII.J.2
WS.V.3.2
Emre ASLAN - CV
Selçuk University
Clay-Based Interfacial Bond Engineering: Clays as Charge-Transfer Mediators for Photo/Piezocatalytic Hydrogen Production
ASLAN Emre  
TT.VII.J.3
WS.V.3.3
Yiğit OSMAN AKYILDIZ - CV
Selçuk University
Electrodeposited High-Entropy Alloy/CNT Electrocatalyst for Enhanced Hydrogen Evolution Reaction
AKYILDIZ OSMAN Yigit  
TT.VII.J.4
WS.V.3.4
Şevval YILDIZ - CV
Selçuk University
Rational Design and Preparation of S-Scheme Heterojunction Photocatalysts for Photocatalytic Hydrogen Production
YILDIZ Sevval  
TT.VII.J.5
WS.V.3.5
Talha KURU - CV
Selçuk University
In Situ Piezodeposited Noble-Metal Schottky Junctions on Laponite/ZnO for Enhanced Piezocatalytic Hydrogen Evolution
KURU Talha  
TT.VII.J.6
WS.V.3.6
Zeki TARIK UNLU - CV
Selçuk University
Photocatalytic hydrogen evolution by Smectite-based clay composite catalyst
UNLU TARIK Zeki  
 

 

 
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