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Abnormally High Thermal Conductivity in Fivefold Twinned Diamond Nanowires

Computational Physics 2022-01-13 v3 Mesoscale and Nanoscale Physics

Abstract

Fivefold twins (5FTs), discovered nearly 200 years ago, are a common multiply twinned structure that usually dramatically deteriorate the thermal transport properties of nanomaterials. Here, we report the anomalous thermal conductivity (κ\kappa) in a novel fivefold twinned diamond nanowires (5FT-DNWs). The κ\kappa of 5FT-DNWs is effectively enhanced by the defects of 5FT boundaries, and non-monotonically changes with the cross-sectional area (S\textit{S}). Above the critical S\textit{S} = 7.1 nm2^{2}, 5FT-DNWs show a constant value of κ\kappa, whereas below it, there appears a sharp increase in κ\kappa with decreasing S\textit{S}. More importantly, 5FT-DNWs with minimal S\textit{S} show a superior κ\kappa over the bulk diamond. By confirming the Normal-process-dominated scattering event, it is demonstrated that the phonon hydrodynamic behavior plays a determinative role in abnormally high κ\kappa of 5FT-DNWs with small S\textit{S}. The super-transported phonon hydrodynamic phenomenon unveiled in the twinned diamond nanowires may provide a new route for pursuing highly thermally conductive nanomaterials.

Keywords

Cite

@article{arxiv.2112.13757,
  title  = {Abnormally High Thermal Conductivity in Fivefold Twinned Diamond Nanowires},
  author = {Ting Liang and Ke Xu and Meng Han and Yimin Yao and Zhisen Zhang and Xiaoliang Zeng and Jianbin Xu and Jianyang Wu},
  journal= {arXiv preprint arXiv:2112.13757},
  year   = {2022}
}

Comments

39 pages, 15 figures. Keywords: Fivefold twins; Diamond nanowires; Thermal conductivity; Normal scattering event; Phonon hydrodynamics