Department of Mechanical Engineering , Vanderbilt University , Nashville , Tennessee 37235 , United States.
School of Mechanical Engineering and Jiangsu Key Laboratory for Design and Manufacture of Micro-Nano Biomedical Instruments , Southeast University , Nanjing 210096 , PR China.
ACS Nano. 2018 Mar 27;12(3):2634-2642. doi: 10.1021/acsnano.7b08718. Epub 2018 Feb 27.
Van der Waals (vdW) crystals with covalently bonded building blocks assembled together through vdW interactions have attracted tremendous attention recently because of their interesting properties and promising applications. Compared to the explosive research on two-dimensional (2D) vdW materials, quasi-one-dimensional (quasi-1D) vdW crystals have received considerably less attention, while they also present rich physics and engineering implications. Here we report on the thermal conductivity of exfoliated quasi-1D TaPdSe vdW nanowires. Interestingly, even though the interatomic interactions along each molecular chain are much stronger than the interchain vdW interactions, the measured thermal conductivity still demonstrates a clear dependence on the cross-sectional size up to >110 nm. The results also reveal that partial ballistic phonon transport can persist over 13 μm at room temperature along the molecular chain direction, the longest experimentally observed ballistic transport distance with observable effects on thermal conductivity so far. First-principles calculations suggest that the ultralong ballistic phonon transport arises from the highly focused longitudinal phonons propagating along the molecular chains. These data help to understand phonon transport through quasi-1D vdW crystals, facilitating various applications of this class of materials.
范德华(vdW)晶体由共价键连接的构建块通过 vdW 相互作用组装在一起,由于其有趣的性质和广阔的应用前景,最近引起了极大的关注。与二维(2D)vdW 材料的爆炸式研究相比,准一维(quasi-1D)vdW 晶体受到的关注要少得多,但它们也具有丰富的物理和工程意义。在这里,我们报告了剥离的 TaPdSe vdW 纳米线的热导率。有趣的是,尽管每个分子链上的原子间相互作用比链间 vdW 相互作用要强得多,但测量到的热导率仍然明显依赖于横截面尺寸,最大可达>110nm。结果还表明,在室温下,沿着分子链方向,部分弹道声子输运可以持续超过 13μm,这是迄今为止在热导率方面观察到的最长的弹道输运距离。第一性原理计算表明,超长弹道声子输运是由沿着分子链传播的高度集中的纵向声子引起的。这些数据有助于理解通过准一维 vdW 晶体的声子输运,从而促进了这类材料的各种应用。