Several carbon nanotubes and spinel ferrite-based nanocomposites have been created in recent years and are considered to be viable options for an effective electromagnetic interference (EMI) shielding and microwave absorber material. The current development of carbon nanotube and spinel ferrite-based nanocomposites for EMI shielding and microwave absorption is the topic of this study. The fundamental mechanism of EMI shielding and microwave absorption is described. The EMI shielding and microwave absorption properties of carbon nanotubes and spinel ferrite, as well as their numerous components such as graphene, MXene, semiconductor nanoparticles, polymer, rubber, and so on, are thoroughly examined. This paper also discusses potential proble...
In this work, rubber composites were fabricated by incorporation of manganese-zinc ferrite alone and...
A surge in the usage of electronic devices has led to a new kind of problem; electromagnetic (EM) in...
Nowadays, low-power microwaves (2 to 40 GHz) are ubiquitously used for wireless data communication. ...
An ideal electromagnetic interference shielding and microwave absorber material should have dielectr...
Composites based on acrylonitrile-butadiene rubber, carbon nanotubes, and manganese-zinc ferrite wer...
The world has dominated by automation, wireless communication and various electronic equipments, whi...
A surge in the usage of electronic devices has led to a new kind of problem; electromagnetic (EM) in...
This study demonstrates lightweight microwave absorber materials designed using polycarbonate (PC) n...
Electromagnetic interference (EMI) shielding refers to the ability of a material to block the EM wav...
New magnetic nanocomposites based on carbon nanotubes (CNT) are very promising for high-frequency ap...
Mención Internacional en el título de doctorThe response of nanocomposites towards electromagnetic (...
Following the development of the new electronic systems and communication networks, the levels of e...
In recent years, there has been an increasing demand for electromagnetic interference (EMI) shieldin...
Herein, we report the development of soft polymeric composites containing multiwall carbon nanotubes...
Insights into advances in portable and flexible electronic devices can be gained from the integratio...
In this work, rubber composites were fabricated by incorporation of manganese-zinc ferrite alone and...
A surge in the usage of electronic devices has led to a new kind of problem; electromagnetic (EM) in...
Nowadays, low-power microwaves (2 to 40 GHz) are ubiquitously used for wireless data communication. ...
An ideal electromagnetic interference shielding and microwave absorber material should have dielectr...
Composites based on acrylonitrile-butadiene rubber, carbon nanotubes, and manganese-zinc ferrite wer...
The world has dominated by automation, wireless communication and various electronic equipments, whi...
A surge in the usage of electronic devices has led to a new kind of problem; electromagnetic (EM) in...
This study demonstrates lightweight microwave absorber materials designed using polycarbonate (PC) n...
Electromagnetic interference (EMI) shielding refers to the ability of a material to block the EM wav...
New magnetic nanocomposites based on carbon nanotubes (CNT) are very promising for high-frequency ap...
Mención Internacional en el título de doctorThe response of nanocomposites towards electromagnetic (...
Following the development of the new electronic systems and communication networks, the levels of e...
In recent years, there has been an increasing demand for electromagnetic interference (EMI) shieldin...
Herein, we report the development of soft polymeric composites containing multiwall carbon nanotubes...
Insights into advances in portable and flexible electronic devices can be gained from the integratio...
In this work, rubber composites were fabricated by incorporation of manganese-zinc ferrite alone and...
A surge in the usage of electronic devices has led to a new kind of problem; electromagnetic (EM) in...
Nowadays, low-power microwaves (2 to 40 GHz) are ubiquitously used for wireless data communication. ...