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- W2908425496 abstract "Wireless biomedical implantable devices provide a variety of applications based on identification, health, and safety of mankind. Power harvesting and power generation methods through human tissues are still looming challenges because of low efficiency and energy instability. The minimum tissue loss at the optical transparency windows of 650 nm-1350 nm. Photovoltaic cells can be effectively used to provide the necessary power for these implantable devices. However, there have been no previous investigations into the optimum dimensions nor properties of these solar cells. In this case, we show an accurate multi-physics simulation of the performance of photovoltaic cells for implantable devices under the skin. A combination of semiconductor and optical simulations are developed in order to analyse the electro-optic behaviour of these cells. In addition, the efficiencies of 8.97 % and 0.26 % were evaluated under air and air-skin multilayer respectively." @default.
- W2908425496 created "2019-01-11" @default.
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- W2908425496 date "2018-10-01" @default.
- W2908425496 modified "2023-10-17" @default.
- W2908425496 title "Simulation of Photovoltaic Cells for Implantable Sensory Applications" @default.
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- W2908425496 doi "https://doi.org/10.1109/icsens.2018.8589840" @default.
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