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Showing 1 to 6 of 6 for “"Semi-artificial photosynthesis"”.

  1. Integrating photosystem II and electroactive bacteria with three-dimensional electrodes for semi-artificial photosynthesis

    Artificial photosynthesis is at the forefront of strategies to tackle the global reliance on fossil fuels and shape the contour of a sustainable future fuelled by renewable resources. In this way, solar energy is harvested and stored into chemical bonds to render it viable for transport and …

    cambridge Repository record for Integrating photosystem II and electroactive bacteria with three-dimensional electrodes for semi-artificial photosynthesis (opens in a new tab)

  2. Photoelectrochemical tandem cells with enzymes wired to hierarchically-structured electrodes for solar fuel synthesis

    In photosynthesis, solar energy drives the conversion of CO2 and H2O into chemical energy carriers and building blocks, releasing O2 as a by-product. Artificial photosynthesis attempts to mimic this process to produce a renewable and storable fuel, such as H2. Semi-artificial photosynthesis

    cambridge Repository record for Photoelectrochemical tandem cells with enzymes wired to hierarchically-structured electrodes for solar fuel synthesis (opens in a new tab)

  3. Photoelectrochemical fuel synthesis using organic semiconductors with (bio)molecular catalysts

    … expands the scope of reactions driven by organic semiconductors (OSCs). The devices were further interfaced with a molecular cobalt CO2 reduction catalyst, demonstrating tunable and selective CO production under 0.1 sun irradiation. Their early onset potentials and complementary light absorption …

    cambridge Repository record for Photoelectrochemical fuel synthesis using organic semiconductors with (bio)molecular catalysts (opens in a new tab)

  4. Elucidating the bio-electrochemical mechanism of exoelectrogenesis of the cyanobacterium Synechocystis sp. PCC6803

    … transfer processes and pathways that make up photosynthesis, respiration and exoelectrogenesis. The protocol was used to probe exoelectrogenesis systematically under different conditions, to aid in elucidating the bio-electrochemical mechanism. The protocol was applied to identify the source …

    cambridge Repository record for Elucidating the bio-electrochemical mechanism of exoelectrogenesis of the cyanobacterium Synechocystis sp. PCC6803 (opens in a new tab)

  5. Semi-Artificial Photoelectrochemistry through Perovskite Integration and Elucidation of the Local Environment

    Semi-artificial photoelectrochemistry combines state-of-the-art semiconductors developed in the photovoltaic industry with highly selective and active biological catalysts evolved for specific fuel-forming reactions. The biohybrids combine the benefits of both photovoltaic and bioelectrochemical …

    cambridge Repository record for Semi-Artificial Photoelectrochemistry through Perovskite Integration and Elucidation of the Local Environment (opens in a new tab)

  6. Electrochemical wiring of cyanobacteria to anodes using polymers towards biohybrid devices for solar-chemical production

    To accelerate the phasing out of fossil fuels, the innovation of sustainable technologies that convert solar energy to chemical energy will be crucial. Bio-photoelectrochemical devices using living microorganisms as catalysts for solar-fuel conversion could fill this gap. As a material, living …

    cambridge Repository record for Electrochemical wiring of cyanobacteria to anodes using polymers towards biohybrid devices for solar-chemical production (opens in a new tab)