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      SCI SCIE SCOPUS

      Design and analysis of a highly reliable large-area Z-type transparent module for dye-sensitized solar cells

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      https://www.riss.kr/link?id=A107512576

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      <P><B>Abstract</B></P> <P>The design methodologies for large-area transparent dye-sensitized solar cells (DSSCs) and modules for building-integrated photovoltaic (BIPV) windows are presented. Using electrochemical impeda...

      <P><B>Abstract</B></P> <P>The design methodologies for large-area transparent dye-sensitized solar cells (DSSCs) and modules for building-integrated photovoltaic (BIPV) windows are presented. Using electrochemical impedance spectroscopy and the optical/electrical measurements of a small-sized (∼9×5mm) test cell, the basic circuitry of a DSSC is generated in a unit cell for building the 2-dimensional equivalent circuit model of a large-area Z-type transparent DSSC module (300×300mm) on P-Spice. Based on solar irradiation at a window-side monitored for a year, we have proposed a DSSC module design that generates the maximal electrical energy for the best levelized cost of electricity. While simulations using the developed model estimated a module efficiency of ∼3.23% and an annual electrical energy generation of 448kWh/m<SUP>2</SUP>, the fabricated module with a cell width of ∼18mm exhibited an efficiency of ∼3.19%; the design is also conducive for practical manufacturing and thermal reliability. The developed model demonstrates the operational behaviors of DSSC modules under local shadowing conditions that match with the experiments. The feasibility of the DSSC as a reverse diode, working as a distributed by-pass diode eliminating the current mismatch loss is also demonstrated; this is beneficial for long-term operations. This work can be applied to other types of DSSCs and can be used for producing DSSC-based BIPV windows.</P> <P><B>Highlights</B></P> <P> <UL> <LI> The design methodologies for DSSCs and modules for BIPV windows are presented. </LI> <LI> Equivalent circuit models are established using EIS and the optical/electrical measurements. </LI> <LI> Large-area Z-type transparent DSSC module (300×300mm) are designed and fabricated. </LI> <LI> Annual maximal electricity of 448kWh/m<SUP>2</SUP> are expected for the best LCOE. </LI> </UL> </P>

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