色色啦

Department of Applied Physics

Energy Materials & Interfaces (EMI)

The Energy Materials & Interfaces (EMI) group investigates materials, interfaces, and technologies for sustainable energy storage and conversion.
Scientific illustration of the Energy Materials & Interfaces (EMI) research group, highlighting batteries, energy conversion, electrode鈥揺lectrolyte interfaces, and advanced characterization.
Energy Materials & Interfaces (EMI) research overview.

We integrate advanced experimental characterization, electrochemical and optical analysis, and physics-based and data-driven modeling to understand fundamental mechanisms and translate them into improved materials, devices, and energy technologies.

Electrochemical Energy Conversion and Storage

Led by Professor Yaolin Xu

Our research focuses on understanding and engineering materials, interfaces, and processes for electrochemical energy conversion and storage. We combine advanced operando and ex situ characterization, including cryo-EM, in situ TEM, electrochemical AFM (EC-AFM), and synchrotron- and neutron-based spectroscopy, with electrochemical analysis, materials and interface engineering, and physics-based and data-driven modeling to reveal fundamental mechanisms and link them to electrochemical performance and durability.

Our research spans rechargeable batteries and electrochemical ammonia synthesis, including battery materials and interfaces, fast and pulsed charging, degradation and failure mechanisms, state estimation and lifetime prediction, and lithium-mediated nitrogen reduction for green ammonia production.

Solar Energy Research

Led by University Lecturer Janne Halme

Our solar energy research focuses on developing sustainable photovoltaic and photoelectrochemical technologies by integrating materials science, device physics, optics, and electrochemistry.

Our research spans coloured and flexible photovoltaics, building-integrated solar technologies, photoelectrochemical energy conversion, and nature-inclusive and regenerative approaches to renewable energy systems.

Group News and Events

Selected Research Projects

Our research projects address fundamental and applied challenges across electrochemical energy storage, energy conversion, and solar technologies.

Research Facilities & Infrastructure

EMI combines dedicated in-house laboratories with access to advanced shared research infrastructures at Aalto University and partner institutions. Our facilities support electrochemical cell preparation, testing, and cycling, advanced characterization, and the development and validation of new energy technologies.

In-house facilities

  • Controlled-atmosphere glovebox facilities
  • Electrochemical characterization and battery cycling systems
  • Flow and batch electrochemical reactor systems for optimization and operando studies
  • In situ and ex situ spectroscopy, imaging, and structural characterization
  • Solar cell printing lab
  • Photovoltaic characterization lab

Advanced shared infrastructure

  • Center for X-ray Spectroscopy, University of Helsinki
    Advanced laboratory-based X-ray absorption and emission spectroscopy for structural, chemical, and operando characterization.
  • Nanomicroscopy Center (NMC)
    Advanced microscopy and X-ray characterization through Aalto University's OtaNano infrastructure.

Electrochemical Energy Research Team

 Yaolin Xu

Yaolin Xu

Assistant Professor
Electrochemical energy materials and interfaces: mechanisms, advanced characterization, battery aging and modeling.

Haoxuan You

Doctoral Researcher
Electrochemistry and interface science for energy materials, integrating materials engineering and mechanistic analysis.

Antti-Jussi Kallio

Postdoctoral Researcher
Operando X-ray spectroscopy of batteries and Li-mediated N鈧 reduction to probe atomic and electronic structures.

Ziyi Wan

Doctoral Researcher
Isolated Li in anode-free Li-metal batteries: characterization, recoverability, and electrochemical recovery strategies.

Lume Xi Lin

Doctoral Researcher
Electronic and structural evolution of battery cathodes: oxygen redox, TM鈥揙 covalency, and advanced X-ray spectroscopy.
 Shansong Bi

Shansong Bi

Doctoral Researcher
Battery electrochemistry and physics-informed modeling: nonlinear dynamics, response analysis, degradation, and safety.

Miseung Kim

Doctoral Researcher
Sodium-ion battery electrolytes and SEI: advanced TEM, fluorine-free electrolytes, and low-temperature electrochemistry.

Subham Khange

Postdoctoral Researcher
Physics-based electrochemical and thermal aging modelling of Li- and Na-ion batteries, fast charging & optimization.

Jinghua Sun

Postdoctoral Researcher
Battery modeling and electrochemical diagnostics connecting mechanistic insights with engineering-oriented applications.
 Laela Ezra

Laela Ezra

Postdoctoral Researcher
SEI formation in Li-mediated N鈧 reduction: operando X-ray and neutron studies of mechanisms, selectivity, and stability.

Solar Energy Research Team

 Janne Halme

Janne Halme

University Lecturer
Solar energy technologies spanning advanced photovoltaics, electrochemical conversion, and regenerative sustainability.

Liza Helen Kuttappassery

Doctoral Researcher
Sustainable electrically heated textiles: conductive coatings, electrothermal modeling, and printed electronics.

Ongoing Thesis Students

Yanping Gao

Master's Thesis Student
Modelling of sodium-ion batteries and battery performance.

Joni Ranta

Bachelor's Thesis Student
Deep-learning methods for battery SOH prediction across pulse-charging conditions.

Theses, Former Members & Teaching

Latest Publications

Liza Helen Kuttappassery, Janne Halme 2026 Materials Research Express

Syeda Qudsia, Alexander Weiss, Saara Sirki盲, Fuzeng Wang, Emil Rosqvist, Teresa De Los Arcos, Christian Weinberger, Janne Halme, Marianna Kemell, Jan Henrik Sm氓tt 2026 Applied Surface Science

Jinghua Sun, Zhebin Cai, Josef Kainz, Yaolin Xu 2026 Applied Energy

Jinghua Sun, Yaolin Xu, Josef Kainz 2026 Journal of Materials Chemistry A

Yaolin Xu, Kang Dong, Zdravko Kochovski, Qingping Wu, Yan Lu 2026 EES Batteries

Wenxuan Zhao, Zhu Cheng, Victor Vanpeene, Anastasia K. Lavrinenko, Alexandros Vasileiadis, Moumita Rana, Meng fu Tu, Lars Bannenberg, Victor Landgraf, Sandrine Lyonnard, Yaolin Xu, Lide Yao, Swapna Ganapathy, Marnix Wagemaker 2026 Joule

Jia Guo, Pengwei Li, Francesco Piccolo, Yulin Jie, Haojun Jia, Ruiguo Cao, Shuhong Jiao, Philipp Adelhelm, Yaolin Xu 2025 ACS Energy Letters

Jia Guo, Yaolin Xu, Yanchen Liu, Pengwei Li, Yunhong Che, Yaqi Li, Kjeld Pedersen, G枚tz Schuck, Peter Kj忙r Kristensen, Volodymyr Baran, Yanan Sun, Philipp Adelhelm, Daniel Ioan Stroe 2025 Energy Storage Materials

Seyede Maryam Mousavi, Mostafa Othman, Fanxing Zou, Noora Lamminen, Girish Tewari, Hossein Baniasadi, Pedro Silva, Yujiao Dong, Janne Halme, A茂cha Hessler-Wyser, Christian M. Wolff, Paola Vivo, Muhammad Imran Asghar, Jaana Vapaavuori 2025 Small Science

Jia Guo, Yaolin Xu, Pengwei Li, Kjeld Pedersen, Miran Gaber拧膷ek, Daniel Ioan Stroe 2024 ChemPhysChem
More information on our research in the Aalto research portal.

Featured News

Four men in formal attire, each in different settings. One wears a turtleneck, others wear suits with ties.
Research & Art Published:

Future makers research batteries, cryptography and plastic recycling

The Technology Industries of Finland Centennial Foundation awarded 3.5 million euros in research funding to eight projects, five from Aalto University.
Photo of prof. Yaolin Xu by Mikko Raskinen/Aalto University.
Awards and Recognition Published:

Prof. Yaolin Xu鈥檚 battery research awarded prestigious energy storage prize

Track record and future potential in building better energy storage solutions landed Assistant Professor Xu the Energy Storage Materials Young Scientist Award.
Photo of prof. Yaolin Xu by Mikko Raskinen/Aalto University.
Appointments, Research & Art Published:

Prof. Yaolin Xu combines physics and chemistry for better batteries

Newly appointed Assistant Professor Xu looks to build up his lab and team at the Department of Applied Physics to pursue better batteries for a sustainable future in energy storage.
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