期刊文献+
共找到5篇文章
< 1 >
每页显示 20 50 100
碳基无源器件研究进展综述 被引量:1
1
作者 王高峰 赵文生 孙玲玲 《电子学报》 EI CAS CSCD 北大核心 2017年第12期3037-3045,共9页
碳纳米材料具有诸多独特的物理特性,如极大的热导率和载流容量.根据国际半导体技术发展路线图给出的预测,碳纳米材料可望取代传统硅和铜材料成为下一代集成电路的基础材料.本文针对碳纳米材料在无源电子器件方面的发展现状和应用前景,... 碳纳米材料具有诸多独特的物理特性,如极大的热导率和载流容量.根据国际半导体技术发展路线图给出的预测,碳纳米材料可望取代传统硅和铜材料成为下一代集成电路的基础材料.本文针对碳纳米材料在无源电子器件方面的发展现状和应用前景,详细讨论了碳纳米管、石墨烯纳米带等碳基纳米互连结构的电学特性.进而,简要评述了片上电感、电容器等碳基高频无源器件,并介绍了碳纳米材料在集成电路热管理方面的应用. 展开更多
关键词 纳米 石墨烯 铜-碳纳米材料 互连线 片上电感 变容器 散热器
下载PDF
Effect of milling energy on preparation of Cu-Cr/CNT hybrid nano-composite by mechanical alloying 被引量:1
2
作者 M.MASROOR S.SHEIBANI A.ATAIE 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第5期1359-1366,共8页
Production of Cu-Cr/carbon nanotube (CNT) hybrid nano-composite by wet and dry milling processes at three different levels of milling energy was investigated in order to study the effect of milling energy in two dif... Production of Cu-Cr/carbon nanotube (CNT) hybrid nano-composite by wet and dry milling processes at three different levels of milling energy was investigated in order to study the effect of milling energy in two different media on dispersion of CNTs, and preparation of the nano-composite. The structural evolution and solid solution formation were evaluated by X-ray diffraction technique. The microstructure was characterized by scanning electron microscopy and transmission electron microscopy. Also, the mechanical properties were measured by microhardness test. The mean crystallite size was in the range of 20-63 nm depending on milling medium and energy. CNTs dispersion is a function of milling energy. According to FESEM images and microhardness results, it can be concluded that wet milling is more applicable in dispersing CNTs homogeneously in comparison to dry milling. It was also found that wet milling at higher milling energies can be a beneficial method of producing the homogeneous hybrid nano-composite with the least damages introducing on CNTs because of the higher microhardness which can be attributed to better dispersion of less damaged CNTs. Compared with crystallite size changes, CNTs dispersion and damages were considerably more effective on hardness. 展开更多
关键词 carbon nanotubes copper NANO-COMPOSITE mechanical alloying
下载PDF
Effects of ply-orientation on microstructure and properties of super-aligned carbon nanotube reinforced copper laminar composites 被引量:2
3
作者 Jing SHUAI Lun-qiao XIONG +1 位作者 Lin ZHU Wen-zhen LI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2017年第8期1747-1758,共12页
The super-aligned carbon nanotube(SACNT)films reinforced copper(Cu)laminar composites with different orientationsof CNT ply were fabricated by electrodeposition.The results show that the tensile strength and yield str... The super-aligned carbon nanotube(SACNT)films reinforced copper(Cu)laminar composites with different orientationsof CNT ply were fabricated by electrodeposition.The results show that the tensile strength and yield strength of cross-ply compositewith5.0%(volume fraction)of SACNT reach maximum of336.3MPa and246.0MPa respectively,increased by74.0%and124.5%compared with pure Cu prepared with the same method.Moreover,the electrical conductivities of all the prepared composites areover75%IACS.The result of TEM analysis shows that the size of Cu grain and the thickness of twin lamellae can be reduced byadding SACNT,and the refining effect in cross-ply composites is more significant than that in unidirectional ply composites.Theenhanced strength of the Cu/SACNT composites comes from not only the reinforcing effect of SACNT films but also the additionalstrengthening of the Cu grain refinement caused by CNT orientation. 展开更多
关键词 copper laminar composite super-aligned carbon nanotubes reinforcement ply-orientation mechanical properties electrical properties microstructure
下载PDF
Effect of electrical current on tribological property of Cu matrix composite reinforced by carbon nanotubes 被引量:9
4
作者 许玮 胡锐 +1 位作者 李金山 傅恒志 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第10期2237-2241,共5页
Cu matrix composite reinforced with 10%(volume fraction) carbon nanotubes(CNTs/Cu) and pure Cu bulk were prepared by powder metallurgy techniques under the same consolidation processing condition.The effect of ele... Cu matrix composite reinforced with 10%(volume fraction) carbon nanotubes(CNTs/Cu) and pure Cu bulk were prepared by powder metallurgy techniques under the same consolidation processing condition.The effect of electrical current on tribological property of the materials was investigated by using a pin-on-disk friction and wear tester.The results show that the friction coefficient and wear rate of CNTs/Cu composite as well as those of pure Cu bulk increase with increasing the electrical current without exception,and the effect of electrical current is more obvious on tribological property of pure Cu bulk than on that of CNTs/Cu composite;the dominant wear mechanisms are arc erosion wear and plastic flow deformation,respectively;CNTs can improve tribological property of Cu matrix composites with electrical current. 展开更多
关键词 CNTs/Cu composite pure Cu bulk electrical current tribological property
下载PDF
Fabrication of superaligned carbon nanotubes reinforced copper matrix laminar composite by electrodeposition 被引量:4
5
作者 靳宇 朱琳 +1 位作者 薛卫东 李文珍 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第9期2994-3001,共8页
A new kind of laminar metal matrix nanocomposite(MMC) was fabricated by an electrodeposition process with copper and superaligned carbon nanotubes film(SACNT film).The SACNT film was put on a titanium plate and th... A new kind of laminar metal matrix nanocomposite(MMC) was fabricated by an electrodeposition process with copper and superaligned carbon nanotubes film(SACNT film).The SACNT film was put on a titanium plate and then a layer of copper was electrodeposited on it.By repeating the above process,the laminar Cu/SACNT composite which contains dozens or hundreds of layers of copper and SACNT films was obtained.The thickness of a single copper layer was controlled by adjusting the process parameter easily and the thinnest layer is less than 2 μm.The microscopic observation shows that the directional alignment structure of SACNT is retained in the composite perfectly.The mechanical and electrical properties testing results show that the tensile and yield strengths of composites are improved obviously compared with those of pure copper,and the high conductivity is retained.This technology is a potential method to make applicable MMC which characterizes high volume fraction and directional alignment of carbon nanotubes. 展开更多
关键词 copper matrix laminar composite superaligned carbon nanotubes ELECTRODEPOSITION
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部