论文标题

高温纳米复合材料具有光子组速度抑制热发射

High temperature nanocomposites with photonic group velocity suppression of thermal emission

论文作者

Mariño-López, Andrea, Ameneiro-Prieto, Oscar, Vecchio, Drew, Xiao, Xiaofei, Sousa-Castillo, Ana, Pazos-Perez, Nicolas, Maier, Stefan A., Giannini, Vincenzo, Kotov, Nicholas A., Correa-Duarte, Miguel A., Alvarez-Puebla, Ramon A.

论文摘要

在0 K上方的热发射的淬灭是一种异常的材料特性,对于将来的能源,运输和太空技术必不可少。尽管投入了巨大的努力,但仅在低温(低于373 K)和狭窄的频谱窗口中,使用仅适用于小型物体的复杂技术才能实现热辐射的完全淬火,而不是降低其通量。在这项工作中,我们提出了一种轻盈而柔韧的复合材料,可以抑制传播光子模式,并以这种方式释放热辐射,同时在房间和高于600 K以下的较高温度下保存热传递(通过热导导)。这是通过更改状态的局部光子密度来实现的,并以碳纳米纤维的热量为单位纳米纤维的热量,使NONNANONOFERISTIRISTIRISTIRISTIRESS形成NONNAN FARSIRIST。

Quenching of thermal emission above 0 K is an unusual material property, essential for future energy, transportation, and space technologies. Despite the great effort invested, nearly complete quenching of thermal radiation rather than some reduction of its flux has only been achieved at low temperatures (below 373 K) and in narrow spectral windows using complex techniques suitable only for small scale objects. In this work, we present a light and flexible composite material that can suppress propagating photonic modes and, in this way, quench thermal radiation while preserving heat transfer (by thermal conduction) at a room and higher temperature below 600 K. This has been achieved by altering the local photonic density of states and consequentially the thermal properties of carbon nanotubes forming a percolating nanofiber network with a thermostable polymeric matrix.

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