柠檬导航

News

Aalto University receives almost 5,7 million euros key project funding from the Academy of Finland

The funding is especially geared towards early-career researchers.

The Academy of Finland has decided to grant funding to 101 research projects under the key project funding scheme 鈥淔orging ahead with Research鈥. The funds for this scheme were allocated to the Academy of Finland through the Government Programme with a view to strengthening the quality and impact of research and promoting active collaboration with end-users and beneficiaries of research results. The funding, 30 million euros in total, is especially geared towards early-career researchers whose projects have been highly rated in previous peer reviews.

The projects/Schools are:

Aalto CHEM

Tanja Kallio: Critical raw material free electrocatalysis for hydrogen electrolyser, 300 000 euros

Eero Kontturi: Towards realistic, green, and low-cost production of cellulose nanocrystals, 300 000

Aalto ELEC

Kalle Palom盲ki: Conversation assistant for the hearing impaired, 299 993

Hele Savin: Superior x-ray imaging using next-generation photosensor (VISION), 297 987

Zhipei Sun: High-performance ultrafast mid-infrared fiber lasers for health and wellbeing applications, 299 385

Aalto ENG

Matti Kummu: Global Water Scarcity Atlas: understanding resource pressure, causes, consequences, and opportunities (WASCO), 295 080

Tatiana Minav: Implementation of zonal integrated future fluid power systems (IZIF), 270 000

Aalto SCI

Petri Ala-Laurila: Novel real-time tools to characterize and manipulate freely moving animal behavior, 300 000

Mario DiFrancesco: Harnessing Available Spectrum for Mobile Video and Beyond (ASPECT), 300 000

Tuomo Kuusi: Quantification of diffusion in random porous media, 300 000

Russell Lake: An ultrasensitive microwave spectrum analyzer, 299 986

Peter Liljeroth: Atomically precise materials for future devices, 300 000

Mikko M枚tt枚nen: Development of the quantum circuit refrigerator towards commercially relevant purposes, 299 997

Robin Ras: Magnetic Microdroplets as Analytical Probes, 300 000

Patrick Rinke: Database driven science for new materials, 299 726

Tuukka Ruotsalo: Modeling User Intentions In-the-Wild, 295 098

Kari Smolander: Digital Infrastructures and Enterprise Integration, 299 530

Lide Yao: In-situ TEM characterization of next-generation perovskite solar cell, 300 000

Harri Piitulainen: Identification and quantification of sensorimotor deficits in cerebral palsy and rehabilitation of motor functions after stroke, 299 437

  • Updated:
  • Published:
Share
URL copied!

Read more news

arotor adjustable stiffness test setup
Cooperation, Research & Art Published:

Major funding powers development of next-generation machine technology aimed at productivity leap in export sectors

The BEST research project is developing new types of sealing, bearing, and damping technology.
TAIMI-hanke rakentaa tasa-arvoista ty枚el盲m盲盲. Kuva: Kauppakorkeakoulu Hanken.
Research & Art Published:

The TAIMI project builds an equal working life 鈥 a six-year consortium project seeks solutions to recruitment and skill challenges

Artificial intelligence (AI) is changing skill requirements, the population is aging, and the labor shortage is deepening. Meanwhile, the potential of international experts often remains unused in Finland. These challenges in working life are addressed by the six-year TAIMI project funded by the Strategic Research Council, and implemented by a broad consortium.
Unite! Seed Fund 2026: Call opens on 20 January. Applications open for student activities, teaching and learning, research and PhD.
Cooperation, Research & Art, Studies, University Published:

Unite! Seed Fund 2026: Call opens on 20 January 2026

Gain an early overview of the Unite! Seed Fund Call of Spring 2026. The call includes three funding lines: Student Activities, Teaching and Learning, and Research and PhD.
A large cargo ship loaded with colourful containers sails across the blue ocean under a partly cloudy sky.
Research & Art Published:

Study: Internal combustion engine can achieve zero-emission combustion and double efficiency

A new combustion concept that utilizes argon could completely eliminate nitrogen oxide emissions from internal combustion engines and double their efficiency compared to diesel engines.