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纳米材料中的量子声子输运:原子论与非平衡格林函数技术相结合

Quantum Phonon Transport in Nanomaterials: Combining Atomistic with Non-Equilibrium Green's Function Techniques.

作者信息

Medrano Sandonas Leonardo, Gutierrez Rafael, Pecchia Alessandro, Croy Alexander, Cuniberti Gianaurelio

机构信息

Institute for Materials Science and Max Bergmann Center of Biomaterials, TU Dresden, 01062 Dresden, Germany.

Center for Advancing Electronics Dresden, TU Dresden, 01062 Dresden, Germany.

出版信息

Entropy (Basel). 2019 Jul 27;21(8):735. doi: 10.3390/e21080735.

Abstract

A crucial goal for increasing thermal energy harvesting will be to progress towards atomistic design strategies for smart nanodevices and nanomaterials. This requires the combination of computationally efficient atomistic methodologies with quantum transport based approaches. Here, we review our recent work on this problem, by presenting selected applications of the PHONON tool to the description of phonon transport in nanostructured materials. The PHONON tool is a module developed as part of the Density-Functional Tight-Binding (DFTB) software platform. We discuss the anisotropic phonon band structure of selected puckered two-dimensional materials, helical and horizontal doping effects in the phonon thermal conductivity of boron nitride-carbon heteronanotubes, phonon filtering in molecular junctions, and a novel computational methodology to investigate time-dependent phonon transport at the atomistic level. These examples illustrate the versatility of our implementation of phonon transport in combination with density functional-based methods to address specific nanoscale functionalities, thus potentially allowing for designing novel thermal devices.

摘要

提高热能收集的一个关键目标是朝着智能纳米器件和纳米材料的原子级设计策略迈进。这需要将计算效率高的原子方法与基于量子输运的方法相结合。在这里,我们通过展示PHONON工具在描述纳米结构材料中的声子输运方面的选定应用,回顾我们最近在这个问题上的工作。PHONON工具是作为密度泛函紧束缚(DFTB)软件平台的一部分开发的一个模块。我们讨论了选定的褶皱二维材料的各向异性声子能带结构、氮化硼-碳异质纳米管声子热导率中的螺旋和横向掺杂效应、分子结中的声子过滤,以及一种在原子水平上研究时间相关声子输运的新颖计算方法。这些例子说明了我们结合基于密度泛函的方法实现声子输运以解决特定纳米级功能的通用性,从而有可能设计新型热器件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1025/7515264/33fe8f532ba7/entropy-21-00735-g001.jpg

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