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Experimental study of thermal rectification in suspended monolayer graphene

机译:悬浮单层石墨烯热精馏的实验研究

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Thermal rectification is a fundamental phenomenon for active heat flow control. Significant thermal rectification is expected to exist in the asymmetric nanostructures, such as nanowires and thin films. As a one-atom-thick membrane, graphene has attracted much attention for realizing thermal rectification as shown by many molecular dynamics simulations. Here, we experimentally demonstrate thermal rectification in various asymmetric monolayer graphene nanostructures. A large thermal rectification factor of 26% is achieved in a defect-engineered monolayer graphene with nanopores on one side. A thermal rectification factor of 10% is achieved in a pristine monolayer graphene with nanoparticles deposited on one side or with a tapered width. The results indicate that the monolayer graphene has great potential to be used for designing high-performance thermal rectifiers for heat flow control and energy harvesting.
机译:精馏是主动热流控制的基本现象。预计在不对称的纳米结构(例如纳米线和薄膜)中将存在大量的热整流作用。石墨烯作为一种单原子厚的膜,在实现热精馏方面引起了很多关注,如许多分子动力学模拟所示。在这里,我们通过实验证明了各种不对称单层石墨烯纳米结构中的热整流。在缺陷设计的单层石墨烯的一侧具有纳米孔,可实现26%的大热整流系数。在原始纳米单层石墨烯的一侧沉积有一定宽度或锥度宽度的热精馏系数达到10%。结果表明,单层石墨烯具有很大的潜力可用于设计高性能热整流器,以进行热流控制和能量收集。

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