In this paper we propose a realistic nano-rectenna able to harvest from human heat in the infrared frequency band (around 30 THz). The full-wave designs of both an array and a multi-element antenna are presented, taking into account the non-trivial behavior of gold at these frequencies. The use of an original diode realized on a graphene layer, and the derivation of its model from ballistic theory, allow to compare the rectifying performance from both modelling and measurements point of view. Encouraging results in terms of both rectified current of a single nano-rectenna and of power rectified by a macro-system combining thousands of nano-rectennas are shown
In this paper we propose an in-depth investigation on energy harvesting solutions from THz to DC, de...
In this paper we propose an in-depth investigation on energy harvesting solutions from THz to DC, de...
ABSTRACT: Graphene is an attractive photoconductive material for optical detection due to its broad ...
In this paper we propose a realistic nano-rectenna able to harvest from human heat in the infrared f...
Due to recent advances in nanotechnology, the use of nano-devices and its network becomes more popul...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
The increasing energy demands of the world’s population and the quickly diminishing fossil fuel rese...
The ICP2020 committee has planned for the conference to be held via virtual conference program. All ...
With the more and more research and study on graphene, people have a more understanding on the new m...
Graphene has become an outstanding material for revolutionary wireless applications in the microwave...
Graphene has become an outstanding material for revolutionary wireless applications in the microwave...
Scattering of the terahertz radiation on a graphene-based nano-antenna is considered. Different elec...
The scattering of terahertz radiation on a graphene-based nano-patch antenna is numerically analyzed...
Scattering of the terahertz radiation on a graphene-based nano-antenna is considered. Different elec...
Graphene-enabled wireless communications constitute a novel paradigm which has been proposed to impl...
In this paper we propose an in-depth investigation on energy harvesting solutions from THz to DC, de...
In this paper we propose an in-depth investigation on energy harvesting solutions from THz to DC, de...
ABSTRACT: Graphene is an attractive photoconductive material for optical detection due to its broad ...
In this paper we propose a realistic nano-rectenna able to harvest from human heat in the infrared f...
Due to recent advances in nanotechnology, the use of nano-devices and its network becomes more popul...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
The increasing energy demands of the world’s population and the quickly diminishing fossil fuel rese...
The ICP2020 committee has planned for the conference to be held via virtual conference program. All ...
With the more and more research and study on graphene, people have a more understanding on the new m...
Graphene has become an outstanding material for revolutionary wireless applications in the microwave...
Graphene has become an outstanding material for revolutionary wireless applications in the microwave...
Scattering of the terahertz radiation on a graphene-based nano-antenna is considered. Different elec...
The scattering of terahertz radiation on a graphene-based nano-patch antenna is numerically analyzed...
Scattering of the terahertz radiation on a graphene-based nano-antenna is considered. Different elec...
Graphene-enabled wireless communications constitute a novel paradigm which has been proposed to impl...
In this paper we propose an in-depth investigation on energy harvesting solutions from THz to DC, de...
In this paper we propose an in-depth investigation on energy harvesting solutions from THz to DC, de...
ABSTRACT: Graphene is an attractive photoconductive material for optical detection due to its broad ...