Luminescent solar concentrators (LSC) are used in photovoltaic applications to concentrate direct and diffuse sunlight without tracking. We employed 2D FDTD simulations to investigate the concept of a photonic LSC (PLSC), where the luminescent material is embedded in a photonic crystal to mitigate the primary losses in LSCs: the escape cone and reabsorption. We obtain suppressed emission inside the photonic band gap, which can be utilized to reduce reabsorption. Furthermore, the efficiency of light guiding is strongly enhanced in a broad spectral range, reaching up to 99.7%. Our optimization of design parameters suggests emitting layers of sub-wavelength thickness
Luminescent solar concentrators (LSCs) are typically planar low-concentration systems that absorb su...
Despite an overwhelming abundance of crude solar energy, current photovoltaic systems worldwide harn...
We propose a luminescent solar concentrator (LSC) characterized by a strong enhancement of the conce...
Luminescent solar concentrators (LSC) concentrate both diffuse and direct radiation with no need for...
Conventional luminescent solar concentrators (LSC) suffer from losses due to the escape cone of tota...
AbstractSun light concentration is a way to decrease photovoltaic devices cost. An original method t...
The Luminescent Solar Concentrator (LSC) consists of a transparent polymer plate containing luminesc...
This dissertation will highlight a path to achieve high photovoltaic conversion efficiency in lumine...
This thesis represents a collection of theoretical, modeling, experimental and fabrication work to a...
As a complementary device to photovoltaic (PV) cells, luminescent solar concentrators (LSCs) can red...
ABSTRACT: Sunlight that is incident to a luminescent solar concentrator (LSC) is absorbed and subseq...
Escape cone loss is one of the primary limiting factors for efficient photon collection in large-are...
Space-based solar power systems (SSPS) offer a renewable source of energy generation that features h...
This thesis describes and analyzes various kinds of engineering options for monocrystalline material...
This chapter reviews recent work by the Quantum Photovoltaic Group (QPV) at Imperial College London ...
Luminescent solar concentrators (LSCs) are typically planar low-concentration systems that absorb su...
Despite an overwhelming abundance of crude solar energy, current photovoltaic systems worldwide harn...
We propose a luminescent solar concentrator (LSC) characterized by a strong enhancement of the conce...
Luminescent solar concentrators (LSC) concentrate both diffuse and direct radiation with no need for...
Conventional luminescent solar concentrators (LSC) suffer from losses due to the escape cone of tota...
AbstractSun light concentration is a way to decrease photovoltaic devices cost. An original method t...
The Luminescent Solar Concentrator (LSC) consists of a transparent polymer plate containing luminesc...
This dissertation will highlight a path to achieve high photovoltaic conversion efficiency in lumine...
This thesis represents a collection of theoretical, modeling, experimental and fabrication work to a...
As a complementary device to photovoltaic (PV) cells, luminescent solar concentrators (LSCs) can red...
ABSTRACT: Sunlight that is incident to a luminescent solar concentrator (LSC) is absorbed and subseq...
Escape cone loss is one of the primary limiting factors for efficient photon collection in large-are...
Space-based solar power systems (SSPS) offer a renewable source of energy generation that features h...
This thesis describes and analyzes various kinds of engineering options for monocrystalline material...
This chapter reviews recent work by the Quantum Photovoltaic Group (QPV) at Imperial College London ...
Luminescent solar concentrators (LSCs) are typically planar low-concentration systems that absorb su...
Despite an overwhelming abundance of crude solar energy, current photovoltaic systems worldwide harn...
We propose a luminescent solar concentrator (LSC) characterized by a strong enhancement of the conce...