Carbon nanotubes (CNTs) and other related CNT-based materials with a high thermal conductivity can be used as promising heat dissipation materials. Meanwhile, the miniaturization and high functionality of portable electronics, such as laptops and mobile phones, are achieved at the cost of overheating the high power-density components. The heat removal for hot spots occurring in a relatively narrow space requires simple and effective cooling methods. Here, an auxiliary passive cooling approach by the aid of a flat plate (aluminum–magnesium alloy) is investigated to accommodate heat dissipation in a narrow space. The cooling efficiency can be raised to 43.5%. The cooling performance of several CNT-based samples is compared under such circumst...
The power density of electronic packages has substantially increased. The thermal interface resistan...
Thanks to the IT technologies, our living−standard has improved greatly. Electronic devices thus bec...
The paper presents studies on the use of nanomodified materials with phase transitions. The rmostabl...
The performances of microelectronic and optoelectronic devices are often severely limited by high te...
Carbon nanotubes (CNTs) are one of the most valuable materials with high thermal conductivity (2000 ...
Copyright © 2013 Bui HungThang et al.This is an open access article distributed under theCreativeCom...
Heat dissipation is one of the factors limiting the continuous miniaturization of electronics. In th...
Vertically-aligned carbon nanotube forests (VACNTs) with excellent axial heat dissipation properties...
As electronic circuits grow denser and their power consumption per unit area is increasing, new, mor...
Computer Integrated Circuit (IC) microprocessors are becoming more powerful and densely packed while...
Carbon nanotubes (CNTs) are known for high thermal conductivity and have potential use as nano-radia...
Abstract- Carbon nanotubes(CNTs) aresomeof most valuable materials that have highest thermal conduct...
Advisors: Iman Salehinia.Committee members: Nicholas Pohlman; John Shelton.Includes illustrations.In...
DATA AVAILABILITY : Data will be made available on request.In this paper, brushing technique was use...
Continuous miniaturization of electronic devices gives rise toan exponential growth of power densiti...
The power density of electronic packages has substantially increased. The thermal interface resistan...
Thanks to the IT technologies, our living−standard has improved greatly. Electronic devices thus bec...
The paper presents studies on the use of nanomodified materials with phase transitions. The rmostabl...
The performances of microelectronic and optoelectronic devices are often severely limited by high te...
Carbon nanotubes (CNTs) are one of the most valuable materials with high thermal conductivity (2000 ...
Copyright © 2013 Bui HungThang et al.This is an open access article distributed under theCreativeCom...
Heat dissipation is one of the factors limiting the continuous miniaturization of electronics. In th...
Vertically-aligned carbon nanotube forests (VACNTs) with excellent axial heat dissipation properties...
As electronic circuits grow denser and their power consumption per unit area is increasing, new, mor...
Computer Integrated Circuit (IC) microprocessors are becoming more powerful and densely packed while...
Carbon nanotubes (CNTs) are known for high thermal conductivity and have potential use as nano-radia...
Abstract- Carbon nanotubes(CNTs) aresomeof most valuable materials that have highest thermal conduct...
Advisors: Iman Salehinia.Committee members: Nicholas Pohlman; John Shelton.Includes illustrations.In...
DATA AVAILABILITY : Data will be made available on request.In this paper, brushing technique was use...
Continuous miniaturization of electronic devices gives rise toan exponential growth of power densiti...
The power density of electronic packages has substantially increased. The thermal interface resistan...
Thanks to the IT technologies, our living−standard has improved greatly. Electronic devices thus bec...
The paper presents studies on the use of nanomodified materials with phase transitions. The rmostabl...