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Towards a Tuneable Thermal Conductivity Material via Low Voltage Ordering of CNT Networks

机译:通过CNT网络的低压有序化实现可调谐导热材料

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Traditionally we seal our devices and insulate our houses with static materials that possess no ability to change their insulation value. This inevitably leads to increased energy consumption due to thermal management needs: a device may be required to be cooler or warmer, and an insulating material, of static thermal conductivity, doesn't help in this regard. Here we examine the real-time tuneable thermal conductivity properties of a low-voltage device, consisting of a Carbon Nanotube Network embedded in a gel matrix and sandwiched between custom made electrodes. The operating principle is that the thermal conductivities of disordered networks tend to be insulating, while highly aligned networks become metallic. The thermal conductivity, durability, power consumption and extensibility properties of the device are examined.
机译:传统上,我们会密封设备,并用无法改变其绝缘值的静态材料来绝缘我们的房屋。由于热管理的需要,这不可避免地导致能耗增加:设备可能需要更冷或更热,而具有静态热导率的绝缘材料在这方面无济于事。在这里,我们研究了一种低压设备的实时可调热导率特性,该低压设备由嵌入凝胶基质中并夹在定制电极之间的碳纳米管网络组成。工作原理是无序网络的热导率趋于绝缘,而高度对齐的网络则变成金属。检查设备的导热性,耐用性,功耗和可扩展性。

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