Title: | Modeling photoelectrolysis: hydrogen evolution overpotential on platinum nanoparticles Fotoelektrolyysin mallinnus: vedyntuoton ylipotentiaali platinananopartikkelien pinnalla |
Author(s): | Kemppainen, Erno |
Date: | 2016 |
Language: | en |
Pages: | 102 + app. 81 |
Department: | Teknillisen fysiikan laitos Department of Applied Physics |
ISBN: | 978-952-60-7134-3 (electronic) 978-952-60-7135-0 (printed) |
Series: | Aalto University publication series DOCTORAL DISSERTATIONS, 238/2016 |
ISSN: | 1799-4942 (electronic) 1799-4934 (printed) 1799-4934 (ISSN-L) |
Supervising professor(s): | Lund, Peter, Prof., Aalto University, Department of Applied Physics, Finland |
Thesis advisor(s): | Halme, Janne, Dr., Aalto University, Department of Applied Physics, Finland |
Subject: | Energy |
Keywords: | photoelectrolysis, hydrogen evolution reaction, photoelectrochemistry, platinum, reaction kinetics, mass transport, fotoelektrolyysi, vedyntuottoreaktio, valosähkökemia, platina, reaktiokinetiikka, massansiirto |
Archive | yes |
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Abstract:Valosähkökemiallisessa (photoelectrochemical, PEC) veden elektrolyysissa, yleisemmin veden fotoelektrolyysissa, auringon säteilyenergia muunnetaan vedyksi (H2). Kokonaisreaktio koostuu vedyn- (hydrogen evolution reaction, HER) ja hapentuottoreaktioista (oxygen evolution reaction, OER). Aurinkoenergian suora muunnos polttoaineeksi ratkaisee keskeisiä ongelmia, kuten auringonvalon intensiteetin vaihtelun. PEC vedyntuotannon toiminta voidaan pääpiirteittäin jakaa valon absorptioon, varausten kuljetukseen, sähkökemiaan ja reaktiotuotteiden keräykseen. Koska vakiotilassa nämä ilmiöt vaikuttavat toisiinsa varsin staattisesti, ne voidaan ensimmäisen asteen approksimaatiossa mallintaa erikseen. Tarkassa analyysissa on huomioitava, miten eri ilmiöt vaikuttavat toisiinsa. |
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Parts:[Publication 1]: E. Kemppainen, J. Halme, P. Lund. Physical Modeling of Photoelectrochemical Hydrogen Production Devices. The Journal of Physical Chemistry C, 119, 21747–21766, July 2015. Post-print version in Aaltodoc: http://urn.fi/URN:NBN:fi:aalto-201607062838. DOI: 10.1021/acs.jpcc.5b04764 View at Publisher [Publication 2]: E. Kemppainen, A. Bodin, B. Sebok, T. Pedersen, B. Seger, B. Mei, D. Bae, P.C.K. Vesborg, J. Halme, P.D. Lund, I. Chorkendorff. Scalability and feasibility of photoelectrochemical H2 evolution: the ultimate limit of Pt nanoparticle as an HER catalyst. Energy & Environmental Science, 8, 2991–2999, August 2015. Final version in Aaltodoc: http://urn.fi/URN:NBN:fi:aalto-201607062837. DOI: 10.1039/c5ee02188j View at Publisher [Publication 3]: E. Kemppainen, J. Halme, O. Hansen, B. Seger, P.D. Lund. Two-phase model of hydrogen transport to optimize nanoparticle catalyst loading for hydrogen evolution reaction. International Journal of Hydrogen Energy, 41, 7568–7581, May 2016. DOI: 10.1016/j.ijhydene.2015.12.207 View at Publisher [Publication 4]: E. Kemppainen, J. Halme, P.D. Lund. An analytical model of hydrogen evolution and oxidation reactions on electrodes partially covered with catalyst. Physical Chemistry Chemical Physics, 18, 13616–13628, May 2016. Post-print version in Aaltodoc: http://urn.fi/URN:NBN:fi:aalto-201607062840. DOI: 10.1039/c6cp00908e View at Publisher |
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