Marko Melander

Marko Melander

Yliopistonlehtori
Yksikkö
Matemaattis-luonnontieteellinen tiedekunta
Laitos / Vastuualue
Kemian laitos
Organisaatioyksikkö
Kemian laitos, Fysikaalinen kemia
Huonenumero
YNC 312
Postiosoite
Survontie 9
Tieteenalat
116 Kemia

Esittely

My research focuses on understanding what controls electrochemical energy conversion and storage from the atomic scale. This is the key question in all electrochemical technologies ranging from hydrogen production through water splitting to green electricity generation using fuel cells, CO2-to-chemicals concepts, sustainable ammonia production for fertilizers and fuels, and various other applications.

To answer this question, we develop and apply theoretical and computational method to address electrochemical processes at different  time- and length-scales. We are developing combining constant potential density functional theory, rate theory, model Hamiltonian approaches, and multiscale methods: combining these methods allows us to study electrochemical systems under realistic experimental conditions from the atomic level to reactor scales. These tools are then applied to understand and find better materials for electrocatalytic applications in hydrogen production and CO2 conversion, the oxygen reduction reaction in fuel cells, and glycerol oxidation to valueable chemicals. Besides applications in green processes, we also study the basics of electrochemical systems such as electrode potential, solvent and electrolyte effects, (proton-coupled) electron transfer kinetics and thermodynamics, and reaction mechanims at electrochemical interfaces. 

I am currently an Academy of Finland Research Fellow at the Department of Chemistry and the Nanoscience Center. I also hold a docenture (Adjunt professorship) in physical electrochemistry.

Tutkimuskuvaus

Electrocatalysis: Hydrogen production, oxygen reduction, CO2 reduction, ammonia production
Electrochemistry: Solvent and electrolyte effects, outer-sphere electron transfer, non-adiabatic effects
Theory and simulation: Computational methods for electrochemical interfaces, solid-liquid interfaces, nuclear tunnelling, non-adiabatic effects

Liitetiedostot

Julkaisut

Julkaisu
2024
Saatavilla Open Access kautta
Journal of Chemical Physics.
Mortensen, Jens Jørgen
Larsen, Ask Hjorth
Kuisma, Mikael
Ivanov, Aleksei V.
Taghizadeh, Alireza
Peterson, Andrew
Haldar, Anubhab
Dohn, Asmus Ougaard
Schäfer, Christian
Jónsson, Elvar Örn
Hermes, Eric D.
Nilsson, Fredrik Andreas
Kastlunger, Georg
Levi, Gianluca
Jónsson, Hannes
Häkkinen, Hannu
Fojt, Jakub
Kangsabanik, Jiban
Sødequist, Joachim
Lehtomäki, Jouko
Heske, Julian
Enkovaara, Jussi
Winther, Kirsten Trøstrup
Dulak, Marcin
Melander, Marko M.
Ovesen, Martin
Louhivuori, Martti
Walter, Michael
Gjerding, Morten
Lopez-Acevedo, Olga
Erhart, Paul
Warmbier, Robert
Würdemann, Rolf
Kaappa, Sami
Latini, Simone
Boland, Tara Maria
Bligaard, Thomas
Skovhus, Thorbjørn
Susi, Toma
Maxson, Tristan
Rossi, Tuomas
Chen, Xi
Schmerwitz, Yorick Leonard A.
Schiøtz, Jakob
Olsen, Thomas
Jacobsen, Karsten Wedel
Thygesen, Kristian Sommer