Cellulose nanofibril (CNF) substrates that are inexpensive, biodegradable, and quickly incinerable, are potential substrates for disposable RF applications. In this paper, high-performance flexible microwave lumped elements and filters fabricated on flexible CNF substrates are reported. A spiral inductor with a resonance frequency of 29.8 GHz and quality (Q) factor of 8.5 and a metal-insulator-metal (MIM) capacitor with a resonance frequency of 45 GHz and Q factor of 85.2 were achieved in a 200 μm thick CNF substrate. Meanwhile, the inductor and capacitor exhibit outstanding mechanical bendability, that is negligible performance changes were observed when they were bent to a radius as small as 15 mm. Based on the spiral inductor and ...
Abstract The continuously increasing demand for faster data traffic of our telecommunication device...
Low cost and flexible devices such as wearable electronics, e-labels and distributed sensors will ma...
International audienceThe interest toward nanocellulose materials has exponentially grown in recent ...
A series of flexible, lightweight, and highly conductive cellulose nanopapers were fabricated throug...
With the advent of newer technologies in the electronic and telecommunication sectors, the extent of...
Though flexible microwave integrated circuits (MICs) are desirable for the construction of functiona...
International audienceIn this paper, a bandpass filter realized on a flexible substrate made of a ce...
Flexible electromagnetic interference (EMI) shielding materials are in urgent need in the flexible a...
Lots of work has been done to develop microwave absorbing materials (MAM) utilized as flexible elect...
International audienceIn this paper, a bio-based and biocompatible polymer, Cellulose Laurate (CL), ...
The study intended to utilizing waste organic fiber for low-cost semi-flexible substrate fabrication...
This paper presents three novel substrate materials with efficient dielectric characteristics. Diffe...
Cellulose-based paper is essential in everyday life, but it also has further potentials for use in l...
Flexible and ultrathin wide-band metamaterial absorbers are suggested and demonstrated in the microw...
International audienceThis article presents the realization of a bandpass filter on a flexible biopo...
Abstract The continuously increasing demand for faster data traffic of our telecommunication device...
Low cost and flexible devices such as wearable electronics, e-labels and distributed sensors will ma...
International audienceThe interest toward nanocellulose materials has exponentially grown in recent ...
A series of flexible, lightweight, and highly conductive cellulose nanopapers were fabricated throug...
With the advent of newer technologies in the electronic and telecommunication sectors, the extent of...
Though flexible microwave integrated circuits (MICs) are desirable for the construction of functiona...
International audienceIn this paper, a bandpass filter realized on a flexible substrate made of a ce...
Flexible electromagnetic interference (EMI) shielding materials are in urgent need in the flexible a...
Lots of work has been done to develop microwave absorbing materials (MAM) utilized as flexible elect...
International audienceIn this paper, a bio-based and biocompatible polymer, Cellulose Laurate (CL), ...
The study intended to utilizing waste organic fiber for low-cost semi-flexible substrate fabrication...
This paper presents three novel substrate materials with efficient dielectric characteristics. Diffe...
Cellulose-based paper is essential in everyday life, but it also has further potentials for use in l...
Flexible and ultrathin wide-band metamaterial absorbers are suggested and demonstrated in the microw...
International audienceThis article presents the realization of a bandpass filter on a flexible biopo...
Abstract The continuously increasing demand for faster data traffic of our telecommunication device...
Low cost and flexible devices such as wearable electronics, e-labels and distributed sensors will ma...
International audienceThe interest toward nanocellulose materials has exponentially grown in recent ...