Thin, flexible, and invisible solar cells will be a ubiquitous technology in the near future. Ultrathin crystalline silicon (c-Si) cells capitalize on the success of bulk silicon cells while being lightweight and mechanically flexible, but suffer from poor absorption and efficiency. Here we present a new family of surface texturing, based on correlated disordered hyperuniform patterns, capable of efficiently coupling the incident spectrum into the silicon slab optical modes. We experimentally demonstrate 66.5% solar light absorption in free-standing 1 μm c-Si layers by hyperuniform nanostructuring for the spectral range of 400 to 1050 nm. The absorption equivalent photocurrent derived from our measurements is 26.3 mA/cm2, which is far above...
Thin-film crystalline silicon (c-Si) solar cells with light-trapping structures can enhance light ab...
The main challenge with the use of silicon for photovoltaics is that silicon is not a strong absorbe...
Solar energy can fulfil mankind’s energy needs and secure a more balanced distribution of primary so...
Thin, flexible, and invisible solar cells will be a ubiquitous technology in the near future. Ultrat...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Action FP7-PEOPLE-2013-IEF through the DIELECTRIC PV project (Grant 629370). Grant SFRH/BPD/115566/2...
Cutting costs by progressively decreasing substrate thickness is a common theme in the crystalline s...
We report here several different superlattice photonic crystal based designs for 200nm thick c-Si so...
Thick wafer-silicon is the dominant solar cell technology. It is of great interest to develop ultra-...
This thesis provides new solutions for integrable PV by exploiting nanophotonic principles in nanosc...
This dissertation presents numerical and experimental studies of a unified light trapping approach t...
Ultrathin crystalline silicon solar cells are a promising technology roadmap to achieve more cost ef...
Light-trapping schemes implemented with ultrathin, 3 μm thick silicon solar cells offer excellent op...
Design concepts for ultra-thin (2 to 10 microns) high efficiency single-crystal silicon cells are di...
Efficient solar cells require both strong absorption and effective collection of photogenerated carr...
Thin-film crystalline silicon (c-Si) solar cells with light-trapping structures can enhance light ab...
The main challenge with the use of silicon for photovoltaics is that silicon is not a strong absorbe...
Solar energy can fulfil mankind’s energy needs and secure a more balanced distribution of primary so...
Thin, flexible, and invisible solar cells will be a ubiquitous technology in the near future. Ultrat...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Action FP7-PEOPLE-2013-IEF through the DIELECTRIC PV project (Grant 629370). Grant SFRH/BPD/115566/2...
Cutting costs by progressively decreasing substrate thickness is a common theme in the crystalline s...
We report here several different superlattice photonic crystal based designs for 200nm thick c-Si so...
Thick wafer-silicon is the dominant solar cell technology. It is of great interest to develop ultra-...
This thesis provides new solutions for integrable PV by exploiting nanophotonic principles in nanosc...
This dissertation presents numerical and experimental studies of a unified light trapping approach t...
Ultrathin crystalline silicon solar cells are a promising technology roadmap to achieve more cost ef...
Light-trapping schemes implemented with ultrathin, 3 μm thick silicon solar cells offer excellent op...
Design concepts for ultra-thin (2 to 10 microns) high efficiency single-crystal silicon cells are di...
Efficient solar cells require both strong absorption and effective collection of photogenerated carr...
Thin-film crystalline silicon (c-Si) solar cells with light-trapping structures can enhance light ab...
The main challenge with the use of silicon for photovoltaics is that silicon is not a strong absorbe...
Solar energy can fulfil mankind’s energy needs and secure a more balanced distribution of primary so...