Fabrication of carbon/refractory metal nanocomposites as thermally stable metallic photonic crystals?
Journal of Materials Chemistry Pub Date: 2011-06-21 DOI: 10.1039/C1JM10997A
Abstract
Metallic photonic crystals (MPhCs), three-dimensionally nanostructured metals, have been previously investigated as efficient emitters for thermophotovoltaic conversion of solar energy and waste heat into electricity. However, the thermal stability of these nanoscaled structures is limited at high temperatures. Here we present a fabrication scheme for preparing metal-coated carbon inverse opal photonic crystal structures that may be useful for thermal emission modification. Three-dimensionally ordered macroporous (3DOM) carbon films and monoliths, which can maintain their structure up to at least 2200 °C in argon, were used as thermally stable scaffolds for
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Journal Name:Journal of Materials Chemistry
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CAS no.: 89640-58-4