In this work, we demonstrate a four-terminal tandem solar cell consisting of a luminescent solar concentrator (LSC) based on silicon quantum dots (SiQDs) in front of a 4 cm × 4 cm perovskite solar cell (PSC). The LSC front surface is uniformly covered with a nanoporous poly(methyl methacrylate) (PMMA) antireflection coating, which can enhance the transmission by up to 3% from the visible to the near-infrared range. The colloidal SiQDs inside the LSC primarily absorb the UV portion of the solar irradiation, re-emitting red fluorescence, which propagates to the waveguide edges for generating electricity while allowing the rest of the incident sunlight to be absorbed in the back PSC. With an air gap between the SiQD-LSC and PSC, compared to t...
The fabrication of a low reabsorption emission loss, high efficient luminescent solar concentrator (...
We introduce and demonstrate the concept of quantum cutting luminescent solar concentrators (QC-LSCs...
University of Minnesota Ph.D. dissertation. August 2019. Major: Mechanical Engineering. Advisor: Uwe...
Luminescence downshifting (LDS) layer integration has been proven to be an efficient way to ameliora...
Solar cells based on GaAs often include a wide-bandgap semiconductor as a window layer to improve su...
The fabrication and full characterization of luminescent solar concentrators (LSCs) comprising CdSe ...
The solar cell has a poor spectral response in the UV region, which affects its power conversion eff...
Luminescent solar concentrators (LSCs) can serve as large-area sunlight collectors for terrestrial a...
Solar energy has long been lauded as an inexhaustible fuel source with more energy reaching the eart...
We propose a design for a concentrated photovoltaic (CPV) module with features that can capture both...
Harvesting optical energy from the sun has been an alternative since many years ago, with the use of...
Luminescent solar concentrators (LSCs) harness light generated by luminophores embedded in a light-t...
Silicon-based photovoltaics typically convert less than 30 % of the solar spectrum into usable elect...
Anthropogenic climate change is a massive threat to our planet’s stability and habitability. Carbon ...
Hybrid perovskite materials are an emergent class of materials that display optical and electronic q...
The fabrication of a low reabsorption emission loss, high efficient luminescent solar concentrator (...
We introduce and demonstrate the concept of quantum cutting luminescent solar concentrators (QC-LSCs...
University of Minnesota Ph.D. dissertation. August 2019. Major: Mechanical Engineering. Advisor: Uwe...
Luminescence downshifting (LDS) layer integration has been proven to be an efficient way to ameliora...
Solar cells based on GaAs often include a wide-bandgap semiconductor as a window layer to improve su...
The fabrication and full characterization of luminescent solar concentrators (LSCs) comprising CdSe ...
The solar cell has a poor spectral response in the UV region, which affects its power conversion eff...
Luminescent solar concentrators (LSCs) can serve as large-area sunlight collectors for terrestrial a...
Solar energy has long been lauded as an inexhaustible fuel source with more energy reaching the eart...
We propose a design for a concentrated photovoltaic (CPV) module with features that can capture both...
Harvesting optical energy from the sun has been an alternative since many years ago, with the use of...
Luminescent solar concentrators (LSCs) harness light generated by luminophores embedded in a light-t...
Silicon-based photovoltaics typically convert less than 30 % of the solar spectrum into usable elect...
Anthropogenic climate change is a massive threat to our planet’s stability and habitability. Carbon ...
Hybrid perovskite materials are an emergent class of materials that display optical and electronic q...
The fabrication of a low reabsorption emission loss, high efficient luminescent solar concentrator (...
We introduce and demonstrate the concept of quantum cutting luminescent solar concentrators (QC-LSCs...
University of Minnesota Ph.D. dissertation. August 2019. Major: Mechanical Engineering. Advisor: Uwe...