首页> 外文会议>International Baltimore SAMPE Symposium and Exhibition >METAL DECORATED MULTI-WALLED CARBON NANOTUBE/POLYIMIDE COMPOSITES WITH HIGH DIELECTRIC CONSTANTS AND LOW LOSS FACTORS
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METAL DECORATED MULTI-WALLED CARBON NANOTUBE/POLYIMIDE COMPOSITES WITH HIGH DIELECTRIC CONSTANTS AND LOW LOSS FACTORS

机译:金属装饰多壁碳纳米管/聚酰亚胺复合材料,具有高介电常数和低损耗因子

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The measurement of observable electromagnetic phenomena in materials and their derived intrinsic electrical material properties are of prime importance in the discovery and development of material systems for electronic and aerospace applications. Nanocomposite materials comprised of metal decorated multi-walled carbon nanotubes (MWCNTs) were prepared by a facile method and characterized. Metal particles such as silver (Ag), platinum (Pt) and palladium (Pd) with diameters ranging from less than 5 to over 50 nanometers were distributed randomly on the MWCNTs. The present study is focused on silver decorated MWCNTs dispersed in a polyimide matrix. The Ag-containing MWCNTs were melt mixed into Ultem and the mixture extruded as ribbons. The extruded ribbons exhibited a moderate to high degree of MWCNT alignment as determined by HRSEM. These ribbons were then fabricated into test specimens while maintaining MWCNT alignment and subsequently characterized for electrical and electromagnetic properties at 8-12 GHz. The results of the electromagnetic characterization showed that certain sample configurations exhibited a decoupling of the permittivity (ε') and loss factor (ε") indicating that these properties could be tailored within certain limits. The decoupling and independent control of these fundamental electrical material parameters offers a new class of materials with potential applications in electronics, microwave engineering and optics.
机译:材料和它们所衍生的内在电材料特性的可观察电磁现象的测量在电子和航空航天应用的材料系统的发现和开发方面具有重要意义。通过容易的方法制备由金属装饰的多壁碳纳米管(MWCNT)组成的纳米复合材料并表征。在MWCNT上随机分布,诸如银(Ag),铂(Pt),铂(Pt)和钯(Pd)的金属颗粒随机分布在mwcnts上的少于5至超过50纳米。本研究专注于分散在聚酰亚胺基质中的银色装饰MWCNT。将含有Ag的MWCNT熔融混合成ULTEM,并将混合物挤出为带。挤出的丝带显示出通过HRSEM确定的中等至高度的MWCNT对准。然后将这些丝带制成测试样品,同时保持MWCNT取向,随后以8-12GHz的电磁特性表征。电磁表征的结果表明,某些样品配置表现出介电常数(ε')和损耗因子(ε“)的去耦,表明这些特性可以在一定限度内定制。对这些基本电气材料参数的解耦和独立控制提供一流的材料,具有电子,微波工程和光学器件的潜在应用。

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