ºÚÁÏÍø

News

Aalto University secures funding for critical green transition research

Granted by the Research Council of Finland, the funding will accelerate research in energy systems, microelectronics and sustainable cities
Aerial view of modern urban buildings with green rooftops and solar panels in a dense cityscape by the water.

The Research Council of Finland has granted Aalto University funding to strengthen its research profile in a field of pressing global concern – the transition towards a greener future.

Aalto’s Profi-8 funding application Driving green transition focused on three research strongholds within the university’s key research areas: Future electric energy systems, Sustainable microelectronic systems and Transformation of urban systems.

The three research themes complement each other and bring forward Aalto’s strengths in building a sustainable future. They stem from the university’s excellence in  sustainable energy technology, ICT, material sciences, economics and finance and urban planning and design. The 25.67 million euros in funding will support Aalto University’s role as a valuable research contributor in these fields.

‘We already have a strong track record in each of the three themes, and we now bring together complementary expertise from several fields to solve grand societal challenges. Furthermore, these themes form a coherent whole with the university’s earlier profiling areas,’ says Jyri Hämäläinen, Vice President for Research. 

Future electric energy systems

Research focuses on microeconomics, energy systems, data analysis, and artificial intelligence to support the redesign of electricity markets and the sustainable electrification of our society.

An increasing share of the energy consumed in Finland is in the form of electricity, and this will pose new requirements for both the technology and the markets. Analysis will focus on predicting the behaviour of the electric energy system and on electricity markets as new production and storage methods come into play.

Sustainable microelectronic systems

Researchers aim to develop complex electronic devices and their architectures to enhance energy efficiency, durability and recycling rates.

Microelectronics has revolutionised computing and mobile communications, and it is a critical enabler of artificial intelligence. However, the production and use of current microelectronic systems incur significant environmental costs, calling for new design and manufacturing methods and end-of life disposal. 

Transformation of urban systems

Research in the field creates solutions and tools for enabling the transformation towards reaching zero carbon, sustainable and just cities.

Cities play a pivotal role in achieving global climate neutrality. New indicators and models for monitoring the impacts of urban systems on planetary and social boundaries are needed. Collaboration with the public sector and industry will ensure that Finnish cities remain frontrunners in climate actions, while promoting the wellbeing of people and the planet.

Additionally, two embedded topics, risk-informed resilience and finance strengthen all three thematic areas. Risk-informed resilience provides enhanced capabilities for anticipating, withstanding and recovering from severe disruptions within complex and interconnected systems such as electricity networks, microchip production or urban systems. Finance focuses on financial decision-making and its implications for value creation, financial markets and society. 

The aim of the Research Council of Finland’s University Profiling funding is to support and develop the strategic profiling of Finnish universities. This was the eighth funding round issued by the RCF, in total allocating 100 million euros. The RCF made its funding decisions based on reviews performed by an international panel of experts. Aalto University has been very successful in all of the research profile funding rounds. Again, the share of funding received by Aalto is larger than Aalto’s nominal size compared to all universities in Finland. Aalto University will use the funding to hire professors, postdoctoral researchers and doctoral students working in the theme areas.

Photo: Mikko Raskinen, Aalto University

An art installation with geometric shapes on a round reflective table, people in motion are blurred in the background.

New research environments on the roadmap

The environments selected for the first time on the Roadmap for the Finnish Research Infrastructures will explore ice and wave modelling, human-centred virtualisation, industrial biotechnology as well as the universe and register-based data sets, among other things

News
A group of people posing on large stone steps in an amphitheatre. The building behind has large windows and a green roof.
News
Energy materials

Aalto granted 18.9 million euros to strengthen its research profile

The funding will accelerate research in quantum technology, hydrogen energy and new materials

News
Black and blue illustration of quantum world

Research & Art

Our research focuses on seven key areas combining four core competences in the fields of digitalisation, materials, arts and design, and business together with three grand challenges related to energy, living environments, and health.

  • Updated:
  • Published:
Share
URL copied!

Read more news

Modern red-brick building with tall black pillars, trees in front and people walking on the pavement
Cooperation, Studies Published:

Nordea and Aalto University to explore the future of AI and human-machine interaction

Aalto University and Nordea are launching a long term research and education partnership to explore how machine agency will shape the future of services.
Large white cruise ship named Legend of the Seas docked at an industrial shipyard under a clear blue sky.
Cooperation Published:

Meyer Turku donates EUR 800,000 ºÚÁÏÍø University

With the donation, Aalto will establish a five-year Professor of Practice to accelerate developments in marine technology and secure expertise in the field in Finland.
Brown-toned display of wood, pulp, fibre, thread cone and knitted fabric, showing stages from log to textile.
Research & Art Published:

The journey of a 17th-century shipwreck continues as a unique knitted dress

Researchers at Aalto University transformed surplus wood from the Hahtiperä shipwreck into textile fibre, spun it into yarn, and knitted it into a dress using new AI-assisted technology.
Small winding stream with rocks and tall grass in a sunny green park, trees and lawn in the background
Cooperation, Press releases, Research & Art Published:

The potential of urban greenery as a climate solution is not being fully utilized – a new handbook offers means to address this

The Handbook for carbon-smart urban green provides concrete tools for leveraging urban green spaces more effectively in climate and nature conservation efforts.