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Fabrication of carbon/refractory metal nanocomposites as thermally stable metallic photonic crystals

机译:碳/难熔金属纳米复合材料作为热稳定金属光子晶体的制备

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摘要

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 chemical vapor deposition (CVD) of the refractory metals tungsten, molybdenum, or tantalum, all with a thin hafnia interlayer. The tungsten-coated photonic crystals were found to be stable after heat treatment at 1000 °C for at least five hours, under high vacuum (10~(-6) torr). The thermal stability of these nanocomposite materials is mainly limited by the adhesion of the refractory metals on the 3DOM carbon scaffold. The hafnia interlayer serves as an adhesion promoter for this material, and structures without a hafnia coating show metal agglomeration after heat treatment at 1000 °C, as demonstrated with millimetre-sized 3DOM carbon monoliths that were only partially coated with hafnia. These results can have important implications not only for the development of efficient thermophotovoltaic emitters, but also for fabrication of other thermally stable, functional nanocomposite materials.
机译:三维纳米结构金属金属光子晶体(MPhCs)先前已被研究为将太阳能和废热热转换为电能的有效发射器。然而,这些纳米级结构的热稳定性在高温下受到限制。在这里,我们提出了一种制备金属包覆碳反蛋白石光子晶体结构的制造方案,该结构可用于热发射修饰。三维排列的大孔(3DOM)碳膜和整料可在氩气中保持至少2200°C的结构,用作热稳定的支架,用于难熔金属钨,钼或碳的化学气相沉积(CVD)。钽,都带有薄的氧化f中间层。发现在高真空(10〜(-6)torr)下于1000°C热处理至少五个小时后,钨包覆的光子晶体稳定。这些纳米复合材料的热稳定性主要受限于难熔金属在3DOM碳支架上的粘附。氧化inter中间层充当该材料的粘合促进剂,没有氧化f涂层的结构在1000°C热处理后显示出金属团聚,如毫米大小的3DOM碳整料仅部分涂覆了氧化coated所证明。这些结果不仅对开发有效的热光伏发射器具有重要意义,而且对制造其他热稳定的功能纳米复合材料也具有重要意义。

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