Thermophysical properties of a single-wall carbon nanotube thin film on Au electrodes evaluated by a time-domain thermoreflectance method
Thermophysical properties of a single-wall carbon nanotube thin film on Au electrodes evaluated by a time-domain thermoreflectance method
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DOI:
10.7567/1347-4065/ab57b7
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发表时间:
2019-11
影响因子:
1.5
通讯作者:
Kan Ueji;Y. Matsuoka;H. Matsuo;Yohei Yomogida;Kuniharu Nomoto;K. Miyamura;T. Yagi;K. Yanagi
中科院分区:
文献类型:
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作者:
Kan Ueji;Y. Matsuoka;H. Matsuo;Yohei Yomogida;Kuniharu Nomoto;K. Miyamura;T. Yagi;K. Yanagi
Precise evaluation of the thermophysical properties of thin films is crucial for realizing high-performance flexible electrical and energy devices. The ultrafast laser-based time-domain thermoreflectance (TDTR) method is one of the most effective methods for examining the thermophysical properties of thin films attached to metals; however, conventional TDTR methods are mainly employed for an aluminum transducer layer, which is not used for conventional metal electrodes. Here, we developed a TDTR system designed for a gold transducer, which is a typical metal electrode in electronic devices, and evaluated the thermophysical properties of a carbon nanotube thin film adhered on a gold surface.