In this paper, wireless power transfer (WPT) and energy harvesting (EH) technologies are reviewed in detail, and the application of metamaterials and metasurfaces for WPT and EH is discussed. Specifically, we focus on the metasurfaces for ambient radio frequency energy harvesting (AEH) in recent advances, comments, existing challenges, and future directions. The performance of metasurface- and antenna-based AEH systems is compared. The metasurfaces not only enable the efficient operation of the AEH system but also extend the potential function to various kinds of energy harvesting devices, which is influential progress of ambient electromagnetic energy harvesting
Energy harvesting for wireless communication networks is a new paradigm that allows terminals to rec...
Energy is nowadays the main concern for the whole world. Finding renewable sources of energy is a ch...
A dual-band metasurface array is presented in this paper for electromagnetic (EM) energy harvesting ...
A comprehensive review of metamaterials and metasurfaces for wireless power transfer (WPT) and wirel...
Radio frequency energy harvesting (RFEH) and wireless power transmission (WPT) are two emerging alte...
Radio frequency energy harvesting (RF-EH) is a potential technology via the generation of electromag...
Radio frequency energy harvesting (RF-EH) is a potential technology via the generation of electromag...
A dual-band and polarization-angle-independent rectifying metasurface (MS) with a miniaturized dimen...
Xiao, John Q.The microwave wireless power transfer system can be divided into five elements, includi...
Energy harvesting from ambient sources has attracted a lot of research recently due to the high dema...
In this letter, three hybrid simultaneous wireless information and power transfer (SWIPT)/ambient en...
Increasing energy demands have fuelled research into alternative, green energy harvesting methods su...
In this paper, wireless energy harvesting from Hz to GHz is discussed. At lower frequencies, the foc...
As a vital factor affecting system cost and lifetime, energy consumption in wireless sensor networks...
Metamaterials are materials with artificial structures, engineered to produce electromagnetic proper...
Energy harvesting for wireless communication networks is a new paradigm that allows terminals to rec...
Energy is nowadays the main concern for the whole world. Finding renewable sources of energy is a ch...
A dual-band metasurface array is presented in this paper for electromagnetic (EM) energy harvesting ...
A comprehensive review of metamaterials and metasurfaces for wireless power transfer (WPT) and wirel...
Radio frequency energy harvesting (RFEH) and wireless power transmission (WPT) are two emerging alte...
Radio frequency energy harvesting (RF-EH) is a potential technology via the generation of electromag...
Radio frequency energy harvesting (RF-EH) is a potential technology via the generation of electromag...
A dual-band and polarization-angle-independent rectifying metasurface (MS) with a miniaturized dimen...
Xiao, John Q.The microwave wireless power transfer system can be divided into five elements, includi...
Energy harvesting from ambient sources has attracted a lot of research recently due to the high dema...
In this letter, three hybrid simultaneous wireless information and power transfer (SWIPT)/ambient en...
Increasing energy demands have fuelled research into alternative, green energy harvesting methods su...
In this paper, wireless energy harvesting from Hz to GHz is discussed. At lower frequencies, the foc...
As a vital factor affecting system cost and lifetime, energy consumption in wireless sensor networks...
Metamaterials are materials with artificial structures, engineered to produce electromagnetic proper...
Energy harvesting for wireless communication networks is a new paradigm that allows terminals to rec...
Energy is nowadays the main concern for the whole world. Finding renewable sources of energy is a ch...
A dual-band metasurface array is presented in this paper for electromagnetic (EM) energy harvesting ...