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Nanoarchitecture Effects on Persistent Room Temperature Photoconductivity and Thermal Conductivity in Ceramic Semiconductors: Mesoporous, Yolk–Shell, and Hollow ZnO Spheres

Nanoarchitecture Effects on Persistent Room Temperature Photoconductivity and Thermal Conductivity in Ceramic Semiconductors: Mesoporous, Yolk–Shell, and Hollow ZnO Spheres

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DILGER, Stefan, Martin WESSIG, Markus R. WAGNER, Juan S. REPARAZ, Clivia M. SOTOMAYOR TORRES, Qijun LIANG, Thomas DEKORSY, Sebastian POLARZ, 2014. Nanoarchitecture Effects on Persistent Room Temperature Photoconductivity and Thermal Conductivity in Ceramic Semiconductors: Mesoporous, Yolk–Shell, and Hollow ZnO Spheres. In: Crystal Growth & Design. 14(9), pp. 4593-4601. ISSN 1528-7483. eISSN 1528-7505. Available under: doi: 10.1021/cg500680g

@article{Dilger2014Nanoa-29110, title={Nanoarchitecture Effects on Persistent Room Temperature Photoconductivity and Thermal Conductivity in Ceramic Semiconductors: Mesoporous, Yolk–Shell, and Hollow ZnO Spheres}, year={2014}, doi={10.1021/cg500680g}, number={9}, volume={14}, issn={1528-7483}, journal={Crystal Growth & Design}, pages={4593--4601}, author={Dilger, Stefan and Wessig, Martin and Wagner, Markus R. and Reparaz, Juan S. and Sotomayor Torres, Clivia M. and Liang, Qijun and Dekorsy, Thomas and Polarz, Sebastian} }

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Dateiabrufe seit 14.10.2014 (Informationen über die Zugriffsstatistik)

Dilger_255263.pdf 148

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