Atomic Layer-coated Graphene Electrode-based Micro-flexible and Structural Supercapacitors (ARMS)
Forskningsprojekt, 2023 – 2027

The overall objective of the ARMS project (Atomic layer-coated gRaphene electrode-Based Micro-flexible and Structural supercapacitors (ARMS) is to integrate comprehensive materials and processes, including graphene-rich bio-based carbon materials and graphene-decorated carbon fibers, and to develop scalable and cost-effective atomic layer deposition (ALD) manufacturing technology to fabricate totally eco-friendly supercapacitors with energy density reaching > 50 Wh/kg that is comparable to batteries without sacrificing the power density, cycle life or eco-friendliness, and open up opportunities to establish a new value chain for supercapacitor manufacturing with European SMEs as key players. The consortium will achieve this goal by a combination of factors, working in a coordinated fashion: process modification to enable production of high-graphene-content porous carbon for printed flexible energy storage, conformal graphene coating onto carbon fibres for structural supercapacitors, decoration of both types of electrodes with ultra-thin conformal ALD coating of MnO2 and Fe2O3 for increased stability and voltage window (to be scaled up to roll-to-roll by Beneq), and development of novel, environmentally-friendly electrolytes. The energy storage devices enabled by this work will be integrated into two use-case demonstrators to show the viability of the concept: a wireless sensor device powered a printed flexible supercapacitor, and a drone powered by structural supercapacitors which are simultaneously structural parts of the drone.

Deltagare

Jinhua Sun (kontakt)

Chalmers, Industri- och materialvetenskap, Material och tillverkning

Samarbetspartners

Asociación de Investigación Metalúrgica del Noroeste AIMEN

Porriño, Spain

BENEQ OY

Espoo, Finland

CIDETEC

Donostia - San Sebastian, Spain

INNOCELL APS

Svendborg, Denmark

Kungliga Tekniska Högskolan (KTH)

Stockholm, Sweden

Latvian State Institute of Wood Chemistry

Riga, Latvia

Latvijas Universitate

Riga, Latvia

LYNXDRONE

Canejan, France

Syddansk Universitet

Odense, Denmark

Tampereen Yliopisto

Tampere, Finland

Finansiering

Europeiska kommissionen (EU)

Projekt-id: EC/HE/101120677
Finansierar Chalmers deltagande under 2023–2027

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Hållbar utveckling

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Senast uppdaterat

2023-10-29