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Summary form only given. Vertically-aligned multi-walled carbon nanotubes (VAMWNTs) have received extensive attention recently. The chemical vapor deposition (CVD) has been regarded as a primary candidate for the large-scale production of vertically-aligned nanotubes [1-4]. It is well known that the structural characteristics of VAMWNTs grown by CVD depend on growth parameters such as reaction time,...
Carbon nanotubes (CNTs) have been proposed for applications in microelectronic applications, especially for electrical interconnects and nanodevices, due to their excellent electrical, thermal and mechanical properties. Usually, the CNTs produced by arcing, laser ablation or chemical vapor deposition (CVD) are inevitably close-ended. Due to the weak coupling of the individual walls and close ends,...
Carbon nanotubes (CNTs) have been proposed for applications in microelectronic applications, especially for electrical interconnects and nanodevices, due to their excellent electrical, thermal and mechanical properties. In order to create interconnect structures comprised of CNT units, it is necessary to control the growth of CNTs in predefined orientations and configurations at a temperature compatible...
As IC performance increases, many technical challenges appear in the areas of power delivery, thermal management, I/O density, and thermal-mechanical reliability. To address these problems, the use of aligned carbon nanotubes (CNTs) is proposed in IC packaging as electrical interconnect and thermal interface materials. The superior electrical, thermal, and mechanical properties of CNTs promise to...
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