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Date of download: 6/23/2016 Copyright © ASME. All rights reserved. From: A New Approach for Fabricating Low Cost DSSC by Using Carbon-Ink From Inkjet Printer.

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Presentation on theme: "Date of download: 6/23/2016 Copyright © ASME. All rights reserved. From: A New Approach for Fabricating Low Cost DSSC by Using Carbon-Ink From Inkjet Printer."— Presentation transcript:

1 Date of download: 6/23/2016 Copyright © ASME. All rights reserved. From: A New Approach for Fabricating Low Cost DSSC by Using Carbon-Ink From Inkjet Printer and Its Improvement Efficiency by Depositing Metal Bridge Between Titanium Dioxide Particles J. Sol. Energy Eng. 2014;136(4):044504-044504-5. doi:10.1115/1.4027695 SEM images of TiO 2 film: (a) top view and (b) cross section Figure Legend:

2 Date of download: 6/23/2016 Copyright © ASME. All rights reserved. From: A New Approach for Fabricating Low Cost DSSC by Using Carbon-Ink From Inkjet Printer and Its Improvement Efficiency by Depositing Metal Bridge Between Titanium Dioxide Particles J. Sol. Energy Eng. 2014;136(4):044504-044504-5. doi:10.1115/1.4027695 (a) SEM image of the carbon-coated electrode and (b) the corresponding EDX spectra Figure Legend:

3 Date of download: 6/23/2016 Copyright © ASME. All rights reserved. From: A New Approach for Fabricating Low Cost DSSC by Using Carbon-Ink From Inkjet Printer and Its Improvement Efficiency by Depositing Metal Bridge Between Titanium Dioxide Particles J. Sol. Energy Eng. 2014;136(4):044504-044504-5. doi:10.1115/1.4027695 (a) X-ray diffraction patterns of TiO 2 film and (b) carbon-coated electrode Figure Legend:

4 Date of download: 6/23/2016 Copyright © ASME. All rights reserved. From: A New Approach for Fabricating Low Cost DSSC by Using Carbon-Ink From Inkjet Printer and Its Improvement Efficiency by Depositing Metal Bridge Between Titanium Dioxide Particles J. Sol. Energy Eng. 2014;136(4):044504-044504-5. doi:10.1115/1.4027695 I–V curves of platinum-based and carbon-based DSSCs under solar illumination (light intensity of 67.08 mW/cm 2 ). The active areas of both the carbon and the platinum counter electrode devices are 1 cm 2. Figure Legend:

5 Date of download: 6/23/2016 Copyright © ASME. All rights reserved. From: A New Approach for Fabricating Low Cost DSSC by Using Carbon-Ink From Inkjet Printer and Its Improvement Efficiency by Depositing Metal Bridge Between Titanium Dioxide Particles J. Sol. Energy Eng. 2014;136(4):044504-044504-5. doi:10.1115/1.4027695 Calculation of serial resistances from J–V curves of DSSC devices at different light intensities, using (a) carbon-coated and (b) platinum-coated electrodes Figure Legend:

6 Date of download: 6/23/2016 Copyright © ASME. All rights reserved. From: A New Approach for Fabricating Low Cost DSSC by Using Carbon-Ink From Inkjet Printer and Its Improvement Efficiency by Depositing Metal Bridge Between Titanium Dioxide Particles J. Sol. Energy Eng. 2014;136(4):044504-044504-5. doi:10.1115/1.4027695 EIS results and an equivalent circuit for DSSC solar cells (inset): (a) carbon -based DSSC and (b) platinum based DSSC Figure Legend:

7 Date of download: 6/23/2016 Copyright © ASME. All rights reserved. From: A New Approach for Fabricating Low Cost DSSC by Using Carbon-Ink From Inkjet Printer and Its Improvement Efficiency by Depositing Metal Bridge Between Titanium Dioxide Particles J. Sol. Energy Eng. 2014;136(4):044504-044504-5. doi:10.1115/1.4027695 SEM image of Cu coated TiO 2 film Figure Legend:

8 Date of download: 6/23/2016 Copyright © ASME. All rights reserved. From: A New Approach for Fabricating Low Cost DSSC by Using Carbon-Ink From Inkjet Printer and Its Improvement Efficiency by Depositing Metal Bridge Between Titanium Dioxide Particles J. Sol. Energy Eng. 2014;136(4):044504-044504-5. doi:10.1115/1.4027695 I–V curves of uncoated DSSC and Cu coated DSSCs under solar illumination (light intensity of 67.08 mW/cm 2 ) Figure Legend:


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