Experimental evidence of flexural phonons in low-temperature heat capacity of carbon nanotubes

IF 3.1 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
M.S. Barabashko , A.I. Krivchikov , A. Jeżowski , O. Bezkrovnyi , M.I. Bagatskii , V.V. Sumarokov , V. Boiko , D. Szewczyk
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Abstract

Low-temperature specific heat of multi-walled carbon nanotubes (MWCNTs) with different grinding was studied. Two sets of modified, milled and oxidized/milled MWCNTs with an average outer diameter of 9.4 nm were used. The experimental results were compared with literature data for different carbon systems: bundles of single-walled carbon nanotubes (SWCNTs), graphite and other MWCNTs. The contributions of phonon spectrum characteristics and intertube interactions were found to be significant factors influencing the heat capacity both in the case of MWCNTs and bundles of SWCNTs. The grinding effect, associated with the reduction of the size of MWCNTs agglomerates, leads to an increased heat capacity. It was demonstrated that the lowest-temperature heat capacity consists of two main contributions: the Debye (C3T3) and the dispersive (C5T5) one. The obtained negative C5 parameter indicated flexural dispersion for phonons. The magnitudes of Debye and flexural dispersive components depend on structural parameters of nanotubes: such as the diameter of individual nanotubes, the average diameter of the bundle and the size of agglomerates. A monotonic proportional correlation was observed between C3 and |C5| parameters: |C5| increases following a power law with an exponent of 1.5 with the increase of C3. The maximum values of C3 and |C5| correspond to SWCNT systems, while the minimum values correspond to MWCNTs. These results show that the heat capacity of the nanotube system increases if the interaction forces between neighbouring SWCNTs in the bundle or between the walls inside of MWCNTs decrease. This dependence is confirmed by the grinding effect in the MWCNTs.

Abstract Image

研究了不同磨削方式下多壁碳纳米管的低温比热。采用了两组平均外径为9.4 nm的改性、铣削和氧化/铣削MWCNTs。实验结果与不同碳体系的文献数据进行了比较:单壁碳纳米管束(SWCNTs)、石墨和其他MWCNTs。在MWCNTs和SWCNTs束的情况下,声子谱特性和管间相互作用的贡献被发现是影响热容的重要因素。研磨效应与MWCNTs团聚体尺寸的减小有关,导致热容增加。结果表明,低温热容主要由德拜热容(C3T3)和色散热容(C5T5)两种热容组成。得到的负C5参数表示声子的弯曲色散。德拜和弯曲色散组分的大小取决于纳米管的结构参数:如单个纳米管的直径、束的平均直径和团聚体的大小。C3与|、C5、|参数呈单调正比关系,|、C5、|随C3的增加呈指数1.5的幂律增加。C3和|C5|的最大值对应swcnts体系,而最小值对应MWCNTs体系。这些结果表明,如果纳米管束中相邻SWCNTs之间或MWCNTs内部壁之间的相互作用力减小,则纳米管系统的热容量增加。这种依赖性通过MWCNTs中的研磨效应得到了证实。
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来源期刊
Carbon Trends
Carbon Trends Materials Science-Materials Science (miscellaneous)
CiteScore
4.60
自引率
0.00%
发文量
88
审稿时长
77 days
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