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Showing 1 to 20 of 60 for “"Light trapping"”.

  1. Nanoimprint lithography for light trapping applications in solar cells

    … (SCIL) process is adopted to fabricate efficient light trapping structures for thin-film solar cells. The SCIL process can achieve economical and large area patterns with high fidelity sub-micron resolution over non-planar surfaces without involving intense curing processes. We study and compare …

    aus-cath Repository record for Nanoimprint lithography for light trapping applications in solar cells (opens in a new tab)

  2. Nanoimprint lithography for light trapping applications in solar cells

    … (SCIL) process is adopted to fabricate efficient light trapping structures for thin-film solar cells. The SCIL process can achieve economical and large area patterns with high fidelity sub-micron resolution over non-planar surfaces without involving intense curing processes. We study and compare …

    anu Repository record for Nanoimprint lithography for light trapping applications in solar cells (opens in a new tab)

  3. Sensing and timekeeping using a light-trapping diamond waveguide

    Solid-state quantum systems have emerged as promising sensing platforms. In particular, the spin properties of nitrogen vacancy (NV) color centers in diamond make them outstanding sensors of magnetic fields, electric fields, and temperature under ambient conditions. This thesis focuses on …

    mit Repository record for Sensing and timekeeping using a light-trapping diamond waveguide (opens in a new tab)

  4. Ultrathin crystalline silicon solar cells incorporating advanced light-trapping structures

    … from reduced photon absorption. A range of light management structures have been proposed in the literature to address this issue and many have been demonstrated to provide high absorption across the spectral range relevant to crystalline silicon, but their promise has yet to be realized in …

    mit Repository record for Ultrathin crystalline silicon solar cells incorporating advanced light-trapping structures (opens in a new tab)

  5. Technological assessment of light-trapping technology for thin-film Si solar cell

    The proposed light trapping technology of Distributed Bragg Reflector (DBR) with Diffraction Grating (DG) and Anti-Reflection Coating (ARC) for thin film Si solar cell was analyzed from the technology, market, and implementation perspectives. Two applications were investigated. For monocrystalline …

    mit Repository record for Technological assessment of light-trapping technology for thin-film Si solar cell (opens in a new tab)

  6. A ray tracing investigation of light trapping due to grooves in solar cells

    … is to texture the cell surface so that it traps light better, allowing more light to be absorbed and converted to electrical energy. Professor Sachs and Dr. James Bredt have developed a texturing scheme that consists of trenches etched on the top surface of the silicon cell. The profile of the …

    mit Repository record for A ray tracing investigation of light trapping due to grooves in solar cells (opens in a new tab)

  7. High efficiency thin film silicon solar cells with novel light trapping : principle, design and processing

    … indirect bandgap. This thesis invents a novel light trapping scheme, the textured photonic crystal (TPC) backside reflector, which can enhance path length by at least several hundred times the film thickness for sufficient absorption. Physical principles and design optimization of TPC are …

    mit Repository record for High efficiency thin film silicon solar cells with novel light trapping : principle, design and processing (opens in a new tab)

  8. High Performance Silicon Optoelectronic Devices Enabled by Photocarrier Transport-Recombination Engineering and Surface Light-Trapping Topologies

    … optoelectronic devices. The need for light-trapping strategies to enhance the overall optical absorption of semiconductor devices has inspired a wide variety of studies and applications. Consequently, understanding and effectively manipulating surface recombination and carrier …

    toronto-retro Repository record for High Performance Silicon Optoelectronic Devices Enabled by Photocarrier Transport-Recombination Engineering and Surface Light-Trapping Topologies (opens in a new tab)

  9. Ultrathin mono-crystalline silicon photovoltaic cells with mechanically flexible and stretchable designs, and light-trapping structures

    In recent years, research in flexible electronic systems has paid increasing attention to their potential to create and manipulate new classes of applications (e.g., foldable and flexible display, flexible photovoltaic, epidermal electronics, and other systems) that can be integrated outside of …

    uiuc Repository record for Ultrathin mono-crystalline silicon photovoltaic cells with mechanically flexible and stretchable designs, and light-trapping structures (opens in a new tab)

  10. Low cost manufacturing of light trapping features on multi-crystalline silicon solar cells : jet etching method and cost analysis

    … to determine low cost methods to improve the light trapping ability of multi-crystalline solar cells. We focused our work on improving current wet etching methods to achieve the desired light trapping features which consists in micro-scale trenches with parabolic cross-sectional profiles with …

    mit Repository record for Low cost manufacturing of light trapping features on multi-crystalline silicon solar cells : jet etching method and cost analysis (opens in a new tab)

  11. Investigation of porous alumina as a self-assembled diffractive element to facilitate light trapping in thin film silicon solar cells

    … to the poor absorption of longer wavelengths of light in the very thin active layer. One method of improving the efficiency of thin film solar cells is to use light trapping to increase the path length of long wavelength light to increase the probability of absorption. Previous work has yielded a …

    mit Repository record for Investigation of porous alumina as a self-assembled diffractive element to facilitate light trapping in thin film silicon solar cells (opens in a new tab)

  12. Chalcogenide glasses for advanced photonic and photovoltaic applications

    … glasses can be used for the solar cell light trapping applications. We theoretically analyzed and numerically designed novel light-trapping grating structures which provides light trapping enhancement well exceeding the conventional Lambertian limit, by breaking the structural symmetry …

    udel Repository record for Chalcogenide glasses for advanced photonic and photovoltaic applications (opens in a new tab)

  13. Thin-film silicon solar cells : photonic design, process and fundamentals

    … photonic crystal (PC) based structure to improve light absorption in thin-film Si solar cells. The PC structure combines a dielectric grating layer and a distributed Bragg reflector (DBR) for effcient light scattering and reflection, increasing light path length in the thin-film cell. We have …

    mit Repository record for Thin-film silicon solar cells : photonic design, process and fundamentals (opens in a new tab)

  14. Ultra-thin photovoltaic technologies with nanophotonic textures for enhanced solar energy harvesting

    … is intrinsically related to the efficiency of sunlight absorption and power generation. Maximising the absorption of sunlight in ultra-thin solar cells requires careful optimisation of the full device design, tailored to minimise i) front surface reflection by means of antireflection coatings, ii) …

    cambridge Repository record for Ultra-thin photovoltaic technologies with nanophotonic textures for enhanced solar energy harvesting (opens in a new tab)

  15. Self-assembled Plasmonic Nanostructures for Thin Film Photovoltaics

    … metallic nanoparticles (NPs) for the light trapping application in thin lm photovoltaics (PV). Photovoltaics is able provide safe and clean electricity of the future, inparticular, thin lms solar cells have a potential to increase the competitiveness of PV through a substantial …

    catania Repository record for Self-assembled Plasmonic Nanostructures for Thin Film Photovoltaics (opens in a new tab)

  16. Local absorption enhancement of light in tailored disordered amorphous silicon thin-films

    … films are investigated with regards to their light trapping capabilities and local absorption. Computational optimization of thin films leads to design guidelines by which several nanotextures are fabricated. The investigation of the fabricated nanotextures via short laser pulse excitation …

    bielefeld Repository record for Local absorption enhancement of light in tailored disordered amorphous silicon thin-films (opens in a new tab)

  17. Structure, Rheology and Optical Properties of Plasmonic Fluids

    … for applications such as molecular detection and light trapping in photovoltaics. Cationic surfactants such as cetyl-trimethylammonium bromide have the ability to self assemble with metallic nanoparticles to form a corona or a double-layer vesicular structure. These structures upon further …

    syracuse-diss Repository record for Structure, Rheology and Optical Properties of Plasmonic Fluids (opens in a new tab)

  18. Assessment of the micromorph tandem solar cell

    … through high-rate silicon deposition, light trapping, and film growth make efficiencies of 15% possible. Current micromorph cells in the market are competitive in performance and cost to other similar technologies. This paper reviews the research progress and market penetration of this …

    mit Repository record for Assessment of the micromorph tandem solar cell (opens in a new tab)

  19. Liquid phase crystallized silicon on sinusoidal textured glass substrates

    The aim of this thesis is to identify a light trapping scheme for liquid phase crystallized silicon thin-film solar cells providing anti-reflective properties in the wavelength range of interest and to demonstrate its suitability for maintaining the silicon material quality. Since the silicon …

    tu-berlin Repository record for Liquid phase crystallized silicon on sinusoidal textured glass substrates (opens in a new tab)

  20. Electron-beam evaporated polycrystalline silicon thin-film solar cells: paths to better performance

    … etc. The second part is a systematic study on light trapping, a very critical issue for thin-film silicon solar cells. It is found that glass texturing is hardly compatible with evaporated cells due to the defects associated with the micro-columnar structures introduced by the texture …

    unsw Repository record for Electron-beam evaporated polycrystalline silicon thin-film solar cells: paths to better performance (opens in a new tab)

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