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Towards the smart w...
Towards the smart window : progress in electrochromics
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- Granqvist, Claes-Göran (author)
- Uppsala universitet,Institutionen för materialvetenskap,Department of Materials Science, Uppsala University, Uppsala, Sweden
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- Azens, A (author)
- Uppsala universitet,Institutionen för materialvetenskap,Department of Materials Science, Uppsala University, Uppsala, Sweden
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- Isidorsson, Jan (author)
- Uppsala universitet,Institutionen för materialvetenskap,Department of Materials Science, Uppsala University, Uppsala, Sweden
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- Kharrazi, M (author)
- Uppsala universitet,Institutionen för materialvetenskap,Department of Materials Science, Uppsala University, Uppsala, Sweden
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- Kullman, Lisen (author)
- Uppsala universitet,Institutionen för materialvetenskap,Department of Materials Science, Uppsala University, Uppsala, Sweden
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- Lindström, T (author)
- Uppsala universitet,Institutionen för materialvetenskap,Department of Materials Science, Uppsala University, Uppsala, Sweden
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- Niklasson, Gunnar A. (author)
- Uppsala universitet,Institutionen för materialvetenskap
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- Ribbing, Carl-Gustaf (author)
- Uppsala universitet,Institutionen för materialvetenskap,Department of Materials Science, Uppsala University, Uppsala, Sweden
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- Rönnow, Daniel (author)
- Uppsala universitet,Institutionen för materialvetenskap,Department of Materials Science, Uppsala University, Uppsala, Sweden
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- Strömme, Maria (author)
- Uppsala universitet,Institutionen för materialvetenskap,Department of Materials Science, Uppsala University, Uppsala, Sweden
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- Veszelei, M (author)
- Uppsala universitet,Institutionen för materialvetenskap,Department of Materials Science, Uppsala University, Uppsala, Sweden
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(creator_code:org_t)
- 1997
- 1997
- English.
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In: Journal of Non-Crystalline Solids. - 0022-3093 .- 1873-4812. ; 218, s. 273-279
- Related links:
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https://urn.kb.se/re...
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https://doi.org/10.1...
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Abstract
Subject headings
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- Electrochromic devices have the ability to produce reversible and persistent changes of their optical properties. The phenomenon is associated with joint ion and electron transport into/out of an electrochromic thin film, in most cases being a transition metal oxide. This paper outlines the various applications of such devices in smart windows suitable for energy-conscious architecture, in variable-reflectance mirrors, and in display devices. Critical materials issues and design concepts are discussed. The paper also covers two specific research topics: computed electronic structure of crystalline WO3 incorporating ionic species, showing how reflectance modulation emerges from a first-principles calculation; and Li+ dynamics in heavily disordered Ti oxide, illustrating how diffusion constants derived from impedance spectroscopy can be reconciled with the Anderson—Stuart model.
Subject headings
- TEKNIK OCH TEKNOLOGIER -- Nanoteknik (hsv//swe)
- ENGINEERING AND TECHNOLOGY -- Nano-technology (hsv//eng)
Keyword
- IMPEDANCE SPECTROSCOPY; OPTICAL-PROPERTIES; OXYFLUORIDE FILMS; OXIDE-FILMS; THIN-FILMS
Publication and Content Type
- ref (subject category)
- art (subject category)
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To the university's database
- By the author/editor
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Granqvist, Claes ...
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Azens, A
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Isidorsson, Jan
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Kharrazi, M
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Kullman, Lisen
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Lindström, T
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show more...
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Niklasson, Gunna ...
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Ribbing, Carl-Gu ...
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Rönnow, Daniel
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Strömme, Maria
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Veszelei, M
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show less...
- About the subject
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- ENGINEERING AND TECHNOLOGY
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ENGINEERING AND ...
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and Nano technology
- Articles in the publication
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Journal of Non-C ...
- By the university
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Uppsala University
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University of Gävle