Band-Gap Engineering of Zinc Oxide Colloids via Lattice Substitution with Sulfur Leading to Materials with Advanced Properties for Optical Applications Like Full Inorganic UV Protection
Band-Gap Engineering of Zinc Oxide Colloids via Lattice Substitution with Sulfur Leading to Materials with Advanced Properties for Optical Applications Like Full Inorganic UV Protection
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2012
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Chemistry of Materials ; 24 (2012), 10. - pp. 1771-1778. - ISSN 0897-4756. - eISSN 1520-5002
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540 Chemistry
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metal oxides,semiconductors,band gap engineering,precursor chemistry,UV protection,aerosol synthesis
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LEHR, Daniela, Martin LUKA, Markus R. WAGNER, Max BÜGLER, Axel HOFFMANN, Sebastian POLARZ, 2012. Band-Gap Engineering of Zinc Oxide Colloids via Lattice Substitution with Sulfur Leading to Materials with Advanced Properties for Optical Applications Like Full Inorganic UV Protection. In: Chemistry of Materials. 24(10), pp. 1771-1778. ISSN 0897-4756. eISSN 1520-5002. Available under: doi: 10.1021/cm300239qBibTex
@article{Lehr2012BandG-23242, year={2012}, doi={10.1021/cm300239q}, title={Band-Gap Engineering of Zinc Oxide Colloids via Lattice Substitution with Sulfur Leading to Materials with Advanced Properties for Optical Applications Like Full Inorganic UV Protection}, number={10}, volume={24}, issn={0897-4756}, journal={Chemistry of Materials}, pages={1771--1778}, author={Lehr, Daniela and Luka, Martin and Wagner, Markus R. and Bügler, Max and Hoffmann, Axel and Polarz, Sebastian} }
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