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功能化碳纳米管中单模声子能量传输。

Single mode phonon energy transmission in functionalized carbon nanotubes.

机构信息

Thermal Sciences and Materials Branch, Materials and Manufacturing Directorate, Air Force Research Laboratory, Wright Patterson Air Force Base, Ohio 45433, USA.

出版信息

J Chem Phys. 2011 Sep 14;135(10):104109. doi: 10.1063/1.3633514.

Abstract

Although the carbon nanotube (CNT) features superior thermal properties in its pristine form, the chemical functionalization often required for many applications of CNT inevitably degrades the structural integrity and affects the transport of energy carriers. In this article, the effect of the side wall functionalization on the phonon energy transmission along the symmetry axis of CNT is studied using the phonon wave packet method. Three different functional groups are studied: methyl (-CH(3)), vinyl (-C(2)H(3)), and carboxyl (-COOH). We find that, near Γ point of the Brillouin zone, acoustic phonons show ideal transmission, while the transmission of the optical phonons is strongly suppressed. A positive correlation between the energy transmission coefficient and the phonon group velocity is observed for both acoustic and optical phonon modes. On comparing the transmission due to functional groups with equivalent point mass defects on CNT, we find that the chemistry of the functional group, rather than its molecular mass, has a dominant role in determining phonon scattering, hence the transmission, at the defect sites.

摘要

虽然碳纳米管(CNT)在其原始形式下具有优异的热性能,但 CNT 的许多应用通常需要进行化学官能化,这不可避免地会降低其结构完整性,并影响能量载体的输运。本文使用声子波包方法研究了侧墙官能化对 CNT 对称轴上声子能量传输的影响。研究了三种不同的官能团:甲基(-CH(3))、乙烯基(-C(2)H(3))和羧基(-COOH)。我们发现,在布里渊区Γ点附近,声学声子表现出理想的传输,而光学声子的传输则被强烈抑制。对于声学和光学声子模式,能量传输系数与声子群速度之间存在正相关关系。通过将由于官能团引起的传输与 CNT 上等效点质量缺陷引起的传输进行比较,我们发现,官能团的化学性质而非其分子质量在决定缺陷处的声子散射和因此的传输方面起着主导作用。

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