C
Claes-Göran Granqvist
Researcher at Uppsala University
Publications - 537
Citations - 34222
Claes-Göran Granqvist is an academic researcher from Uppsala University. The author has contributed to research in topics: Electrochromism & Thin film. The author has an hindex of 73, co-authored 535 publications receiving 31523 citations. Previous affiliations of Claes-Göran Granqvist include Chalmers University of Technology & Texas A&M University.
Papers
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Silver-based crystalline nanoparticles, microbially fabricated
TL;DR: Transmission electron microscopy, quantitative energy-dispersive x-ray analysis, and electron diffraction established that the crystals comprise at least three different types, found both in whole cells and thin sections, in Pseudomonas stutzeri AG259.
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Electrochromics for smart windows: thin films of tungsten oxide and nickel oxide, and devices based on these
TL;DR: In this paper, a conceptual model for structural characteristics of amorphous W oxide films, based on notions of defects in the ideal ammorphous state, is given for thin film deposition by sputtering, electronic band structure and ion diffusion.
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Transparent and conducting ITO films: new developments and applications
TL;DR: In this article, the authors review data on transparent and electrically conducting films of ITO (i.e., In2O3:Sn) and outline quantitative theories for the optical properties and their applications, for uses in optimized electrochromic window coatings capable of yielding indoor comfort and energy efficiency.
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Band-gap tailoring of ZnO by means of heavy Al doping
Bo E. Sernelius,Bo E. Sernelius,Karl-Fredrik Berggren,Z.-C. Jin,I. Hamberg,Claes-Göran Granqvist +5 more
TL;DR: Optical band gaps, evaluated from spectrophotometric data, were widened in proportion to the Al doping, and could be quantitatively reconciled with an effective-mass model for n-doped semiconductors, provided the polar character of ZnO was accounted for.
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Electrochromics for smart windows: Oxide-based thin films and devices
TL;DR: In this article, the authors present a detailed review of the state-of-the-art for electrochromics and its applications in smart windows and provide ample references to current literature of particular relevance.