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Tampere Supercapacitor Company Finland

SUINK research on supercapacitors to be presented at LOPEC

We are happy to announce that Dr. Chirag Mevada (Tampere University) will be featured in the program of the LOPEC Conference 2025, which will be held in Munich on 25-26

About | SMARAGDI | Tampere Universities

Establishing a state-of-the-art experimental superconducting magnet laboratory at Tampere University will foster future collaboration with Finnish companies wishing to explore

Sustainable and green electronics for circular economy

Tampere University develops wearable health monitoring and energy storage for environmentally compatible single-use electronics. Bio-based and recycled materials are used

Tampere University is leading an EU consortium to enhance eco

The four-year project led by Tampere University, Finland, partners five academics, three research institutes, and three industrial partners from six European countries.

MSCA Doctoral Researcher (Printed supercapacitor)

This 3-year doctoral project at the University of Tampere focuses on the development of printed, biodegradable supercapacitors designed for wearable technology applications.

Tampere Supercapacitor Company Finland

Supercapacitors, or ultracapacitors, are state-of-the-art energy storage devices that have the potential to completely transform a number of different industries.

Finnish Supercapacitor Breakthroughs: How Nordic Innovation is

From material harvesters in Lapland''s forests to quantum physicists in Espoo''s labs, this tech is reshaping Finland''s economy while solving energy''s hardest problems.

Finland energy storage supercapacitors

It''''s also the first city in Finland to transition to 100% renewable electricity, making it a natural fit for Skeleton''''s mission to revolutionize energy storage with its supercapacitors and SuperBattery

Hamed Pourkheirollah: Advancing energy storage with innovative

Hamed Pourkheirollah delves into the intricate realm of supercapacitors (SCs). The work provides a comprehensive exploration of supercapacitors, their behavior, modeling,

Atomic layer-coated gRaphene electrodes for Micro-flexible and

To overcome the obstacle of low energy density in supercapacitors, the ARMS project (Atomic layer-coated gRaphene electrode-based Micro-flexible and Structural