Kurilich Matthew, Park Jin Gyu, Degraff Joshua, Wu Qiang, Liang Richard
High-Performance Materials Institute (HPMI), Florida State University, Tallahassee, FL 32310, USA.
Department of Materials Science and Engineering, FAMU-FSU College of Engineering, Tallahassee, FL 32310, USA.
Nanomaterials (Basel). 2024 Oct 1;14(19):1587. doi: 10.3390/nano14191587.
Hybrid carbon nanotube (CNT) sheets were fabricated by mixing CNTs with silver nanowires (AgNWs) and MXene to study their electromagnetic-interference (EMI)-shielding properties. CNT/AgNW and CNT/MXene hybrid sheets were produced by ultrasonic homogenization and vacuum filtration, resulting in free-standing CNT sheets. Three different weight ratios of AgNW and MXene were added to the CNT dispersions to produce hybrid CNT sheets. Microstructure characterization was performed using scanning electron microscopy, and the Wiedemann-Franz law was used to characterize transport properties. The resulting hybrid sheets exhibited improved electrical conductivity, thermal conductivity, and EMI-shielding effectiveness compared to pristine CNT sheets. X-band EMI-shielding effectiveness improved by over 200%, while electrical conductivity improved by more than 1500% in the hybrid sheets due to a higher charge-carrier density and synergistic effects between nanomaterials. The addition of AgNW to CNT sheets resulted in a large improvement in electrical conductivity and EMI shielding; however, this may also result in increased weight and sample thickness. Similarly, the addition of MXene to CNT sheets may result in an increase in weight due to the presence of the denser MXene flakes.
通过将碳纳米管(CNT)与银纳米线(AgNWs)和MXene混合来制备混合碳纳米管片材,以研究其电磁干扰(EMI)屏蔽性能。通过超声均质化和真空过滤制备了CNT/AgNW和CNT/MXene混合片材,从而得到独立的碳纳米管片材。将三种不同重量比的AgNW和MXene添加到碳纳米管分散液中,以制备混合碳纳米管片材。使用扫描电子显微镜进行微观结构表征,并使用维德曼-弗兰兹定律来表征传输性能。与原始碳纳米管片材相比,所得混合片材的电导率、热导率和EMI屏蔽效能均有所提高。由于更高的载流子密度和纳米材料之间的协同效应,混合片材的X波段EMI屏蔽效能提高了200%以上,而电导率提高了1500%以上。向碳纳米管片材中添加AgNW可使电导率和EMI屏蔽性能大幅提高;然而,这也可能导致重量和样品厚度增加。同样,由于存在更致密的MXene薄片,向碳纳米管片材中添加MXene可能会导致重量增加。