Aitkaliyeva Assel, Chen Di, Shao Lin
Materials Science and Engineering Program, Texas A&M University, College Station, Texas, 77843, USA.
Sci Rep. 2013 Sep 27;3:2774. doi: 10.1038/srep02774.
Thermal transport in carbon nanotube (CNT) mats, consisting of randomly networked multi-walled carbon nanotubes (MWNTs), is not as efficient as in an individual CNT because of the constrained tube-to-tube phonon transport. Through experiments and modeling, we discover that phonon transport in CNT mats is significantly improved by ion irradiation, which introduces inter-tube displacements, acting as stable point contacts between neighboring tubes. Inter-tube displacement-mediated phonon transport enhances conductivity, while inter-tube phonon-defect scattering reduces conductivity. At low ion irradiation fluence, inter-tube thermal transport enhancement leads to thermal conductivity increase by factor>5, while at high ion irradiation fluence point defects within tubes cause a decrease in thermal conductivity. Molecular dynamics simulations support the experimentally obtained results and the proposed mechanisms. Further conductivity enhancement in irradiated mats was obtained by post-irradiation heat treatment that removes majority of the defects within the tubes without affecting thermally stable inter-tube displacements.
由随机网络状多壁碳纳米管(MWNT)组成的碳纳米管(CNT)垫中的热传输效率不如单个碳纳米管,这是由于管间声子传输受到限制。通过实验和建模,我们发现离子辐照显著改善了碳纳米管垫中的声子传输,离子辐照引入了管间位移,在相邻管之间形成稳定的点接触。管间位移介导的声子传输提高了电导率,而管间声子-缺陷散射降低了电导率。在低离子辐照通量下,管间热传输增强导致热导率增加超过5倍,而在高离子辐照通量下,管内点缺陷导致热导率降低。分子动力学模拟支持实验结果和所提出的机制。通过辐照后热处理去除管内大部分缺陷,同时不影响热稳定的管间位移,从而进一步提高了辐照垫的电导率。