Multi-walled carbon nanotube (MWCNT)/Portland cement (PC) composites have been prepared to evaluate their electromagnetic wave absorbing properties. The effects of MWCNTs content and sample thickness were discussed in the frequency ranges of 2–18 GHz. Results show that the absorbing properties of cement-based composites are affected by the content of MWCNT and the thickness of the samples. When MWCNTs contents are 0, 0.25, 0.50, 0.75, and 1.00%, absorbing property of sample of 5 mm is unstable due to the resonance absorption. Samples of 10 mm and 15 mm thickness show stable microwave absorbing properties, and a sample of 15 mm thickness has better absorbing property than that of 10 mm. Optimum contents of carbon nanotube (CNT) of 0.75, 0.50...
In the ongoing search for new materials for microwave absorption applications, Carbon Nanotubes dese...
The response of materials to impinging electromagnetic waves is mainly determined by their dielectri...
Abstract—In the ongoing search for new materials for microwave absorption applications, Carbon Nanot...
Multi-walled carbon nanotube (MWCNT)/portland cement(PC) composites have been fabricated to evaluate...
Electromagnetic (EM) shielding has become an essential element in the modern world alongside the inc...
The electromagnetic properties of carbon nanotube powder reinforced concretes are numerically and ex...
The shielding effectiveness of carbon nanotube reinforced concrete composite is analyzed by using a ...
The enhancement of microwave shielding effectiveness of commercial concrete by the inclusion of carb...
In the ongoing search for new materials for microwave absorption applications, carbon nanotubes (CN...
Carbon nanotube reinforced concrete composites (RCC) were characterized in microwave bands currently...
In this paper, a three-layered cement-based wave-absorbing board is designed and prepared by mixing ...
In the ongoing search for new materials for microwave absorption applications, carbon nanotubes (CNT...
In the ongoing search for new materials for microwave absorption applications, carbon nanotubes (CNT...
Double-layer structure absorbing materials based on the impedance matching principle and transmissio...
This study focuses on different techniques for dispersing Multi-Walled Carbon Nanotubes (MWCNTs) in ...
In the ongoing search for new materials for microwave absorption applications, Carbon Nanotubes dese...
The response of materials to impinging electromagnetic waves is mainly determined by their dielectri...
Abstract—In the ongoing search for new materials for microwave absorption applications, Carbon Nanot...
Multi-walled carbon nanotube (MWCNT)/portland cement(PC) composites have been fabricated to evaluate...
Electromagnetic (EM) shielding has become an essential element in the modern world alongside the inc...
The electromagnetic properties of carbon nanotube powder reinforced concretes are numerically and ex...
The shielding effectiveness of carbon nanotube reinforced concrete composite is analyzed by using a ...
The enhancement of microwave shielding effectiveness of commercial concrete by the inclusion of carb...
In the ongoing search for new materials for microwave absorption applications, carbon nanotubes (CN...
Carbon nanotube reinforced concrete composites (RCC) were characterized in microwave bands currently...
In this paper, a three-layered cement-based wave-absorbing board is designed and prepared by mixing ...
In the ongoing search for new materials for microwave absorption applications, carbon nanotubes (CNT...
In the ongoing search for new materials for microwave absorption applications, carbon nanotubes (CNT...
Double-layer structure absorbing materials based on the impedance matching principle and transmissio...
This study focuses on different techniques for dispersing Multi-Walled Carbon Nanotubes (MWCNTs) in ...
In the ongoing search for new materials for microwave absorption applications, Carbon Nanotubes dese...
The response of materials to impinging electromagnetic waves is mainly determined by their dielectri...
Abstract—In the ongoing search for new materials for microwave absorption applications, Carbon Nanot...