Solar Technology Engineered by Chemistry
Lightweight photovoltaic solutions for SmallSat systems

Solar Technology Engineered by Chemistry
Lightweight photovoltaic solutions for SmallSat systems
Advanced Solar Technology for Space
At SantakaPV, we develop lightweight and durable perovskite photovoltaic solutions designed for integration into Small Satellite power systems and consumer electronics.
Lightweight


Optimized for high power-to-weight ratio in SmallSat systems.
Engineered by Chemistry
Engineered for durable performance through molecular-level materials design.
Integration-Ready
Designed for integration into SmallSat power modules.




Target Applications
Developing perovskite photovoltaic technology for integration into advanced space systems and next-generation consumer electronics, blending research with scalable innovation.
Consumer electronics
Parallel research explores ultra-thin perovskite photovoltaic layers for integration into emerging portable and lightweight electronic devices.
Current work investigates materials stability, scalable fabrication approaches, and integration pathways for embedded energy solutions beyond conventional silicon-based technologies.
Space systems
Ongoing R&D focuses on lightweight perovskite photovoltaic architectures for integration into Small Satellite power modules and future orbital platforms.
Research activities include materials optimization, interface engineering, and device architecture development targeting high power-to-weight performance in space-relevant environments.


Our Technology
SantakaPV develops next-generation perovskite photovoltaic architectures engineered through advanced materials science and interface design.
Materials Design
We design and optimize functional materials for perovskite-based photovoltaic systems, focusing on charge transport layers, molecular engineering, and structural stability.


Interface Engineering
We investigate interfacial chemistry and surface passivation strategies to enhance charge extraction and long-term operational stability.
We develop lightweight thin-film device configurations on rigid and flexible substrates tailored for integration into compact and modular systems.
Device Architecture






Our research considers fabrication compatibility and scalable deposition approaches aligned with future industrial translation.
Scalable Pathways
Contact
Reach out for collaborations or inquiries
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ADDRESS
Eduardo Andrė 14-5, LT-02232, Vilnius, Lithuania










