Dr. Anastasia Soultati | Technological Networks | Research Excellence Award

National Centre for Scientific Research (NCSR) “Demokritos” | Greece

Dr. Anastasia Soultati is an Associate Researcher specializing in perovskite, organic, and hybrid optoelectronic materials, with a strong focus on photovoltaic devices, neuromorphic components, and photonic applications. She is currently affiliated with the Department of Electrical and Computer Engineering at Hellenic Mediterranean University, Greece, and Ajman University, UAE. Her research spans bifacial and transparent perovskite photovoltaics for greenhouse and building integration, perovskite-based memristors for neuromorphic computing, and advanced perovskite laser devices. Dr. Soultati has extensive experience in project management, device fabrication, and materials characterization, including thin films, crystals, and photosensitive materials. She has led and contributed to multiple national and international research projects, supported by competitive personal funding and postdoctoral fellowships, addressing sustainable energy, green semiconductor processing, smart packaging, and climate-resilient materials.

Citation Metrics (Scopus)

2100
800
500
100
0

Citations
2050

Documents
70

h-index
25

Citations

Documents

h-index


View Scopus Profile
View Orcid Profile
View Google Scholar Profile

Featured Publications

Strain Relaxation and Multidentate Anchoring in n-type Perovskite Transistors and Logic Circuits
– Nature Electronics, 2024 · 25 Citations
Aggregation-Driven Photoinduced α-C(sp3)-H Bond Hydroxylation/C(sp3)-C(sp3) Coupling of Boron Dipyrromethene Dye in Water Reported by Near-Infrared Emission
– Journal of the American Chemical Society, 2024 · 3 Citations · Open Access
Plasmonic Enhanced OLED Efficiency upon Silver–Polyoxometalate Core-Shell Nanoparticle Integration into the Hole Injection/Transport Layer
– Scientific Reports, 2024 · 3 Citations
Highly Robust Double Memristive Device Based on Perovskite/Molybdenum Oxide-Sulfide Compound Heterojunction System
– Advanced Electronic Materials, 2025 · 1 Citation
Sulfur-Doped ZnO as Cathode Interlayer for Efficient Inverted Organic Solar Cells
– Materials, 2025 · 1 Citation
Anastasia Soultati | Technological Networks | Research Excellence Award

You May Also Like