Publikation: Functional Gradient Inverse Opal Carbon Monoliths with Directional and Multinary Porosity
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2017
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Advanced Materials. 2017, 29(2), 1603356. ISSN 0935-9648. eISSN 1521-4095. Available under: doi: 10.1002/adma.201603356
Zusammenfassung
Nanoporous monoliths with hierarchical nanostructure are prepared via in situ assembly of template and carbon precursor gel by controlled ultracentrifugation experiments. Benefits of the gradient porosity are demonstrated for the Li-O2 battery.
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CHEN, Mengdi, Kay HAGEDORN, Helmut CÖLFEN, Sebastian POLARZ, 2017. Functional Gradient Inverse Opal Carbon Monoliths with Directional and Multinary Porosity. In: Advanced Materials. 2017, 29(2), 1603356. ISSN 0935-9648. eISSN 1521-4095. Available under: doi: 10.1002/adma.201603356BibTex
@article{Chen2017Funct-37511, year={2017}, doi={10.1002/adma.201603356}, title={Functional Gradient Inverse Opal Carbon Monoliths with Directional and Multinary Porosity}, number={2}, volume={29}, issn={0935-9648}, journal={Advanced Materials}, author={Chen, Mengdi and Hagedorn, Kay and Cölfen, Helmut and Polarz, Sebastian}, note={Article Number: 1603356} }
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