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首页> 外文期刊>Nanoscale >Controlling local thermal gradients at molecular scales with Janus nanoheaters
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Controlling local thermal gradients at molecular scales with Janus nanoheaters

机译:使用Janus纳米加热器在分子尺度上控制局部热梯度

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The generation and control of heat transport with nanoparticles is an essential objective of thermoplasmonics. Janus nanoparticles consisting of dissimilar materials with contrasting interfacial Kapitza conductance provide a route to control heat transport at the nanoscale. Here we use the recently introduced Atomistic Nodal Approach to map the surface temperature and Kapitza conductance of Janus nanoparticles to individual atoms. We show that the transition in the thermal transport properties between the hydrophobic and hydrophilic interfaces is exceptionally abrupt, occurring over length scales below 1 nm. We demonstrate the generality of this result using coarse-grained and all-atom models of gold nanoparticles. Further, we show how this behaviour provides a route to sustain significant temperature differences, on the order of tens of degrees for μW heat rates, between adjacent molecular layers attached to heated gold nanoparticles. Our work provides fundamental insight into nanoscale heat transport and a principle to design heterogeneous Janus nanoparticles for thermal transport applications.
机译:热传输的生成和控制纳米粒子是一个重要的目标thermoplasmonics。不同材料的对比界面卡皮查电导提供路线在纳米尺度上控制热传输。我们使用最近推出了原子论的节点表面温度和映射方法卡皮查电导Janus的纳米颗粒单个原子。之间的热传输特性疏水性和亲水性的接口非常突然,发生在长度纳米尺度下1。这个结果的使用粗粒度和所有原子金纳米粒子的模型。这种行为提供了一个途径来维持吗明显的温度差异,订单几十度的μW热价,之间相邻的分子层连接到加热的黄金纳米粒子。了解纳米热传输和原理设计异构杰纳斯纳米颗粒的热传输的应用程序。

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