PPT-Graphene-based Polymer Bulk Heterojunction Solar Cells

Author : olivia-moreira | Published Date : 2018-10-21

Fei Yu and Vikram Kuppa School of Energy Environmental Biological and Medical Engineering College of Engineering and Applied Science University of Cincinnati APS

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Graphene-based Polymer Bulk Heterojunction Solar Cells: Transcript


Fei Yu and Vikram Kuppa School of Energy Environmental Biological and Medical Engineering College of Engineering and Applied Science University of Cincinnati APS March Meeting 2012 Boston. and Applications in Solar Cells. Jung Hwan Woo. Outline. Introduction. Self-assembly and distinctive features. Ordered air bubble in polymer film example. Polymer PV cells. Application. Highly efficient polymer PV cells using self-organized polymer. for the Treatment of . Oral and Head And Neck Carcinoma. MAIE A. ST. JOHN, MD, PHD. Department . of Head & Neck Surgery. David Geffen School of Medicine, UCLA. Jonsson Comprehensive Cancer . Center. Laura Bruce, Brian Dawes, James Horner, . Krupa. Patel, . Ronak. Patel, Nicholas Porto, . Steven . Scarfone. , Olivia Shabash, . Priyanka. Shah, Daphne Sun, . Jisoo. Yoon.  . Advisor: Dr. Paul V. Quinn Sr.. E. ffectiveness and Efficiency. Group 16: Angel Needham-Gilles, . Nico. . Mongillo. and Nick Pauley. Project Overview. As a group we decided to go the analytical route. The purpose of. our . project was to investigate the physics of solar panels including . Perovskite. Semiconductor . Joshua Lewis. , jjm73@wildcats.unh.edu. ; Parsons Hall, 23 Academic Way, Durham NH 03824. Introduction . . Perovskite. is an . organo. -metallic semiconducting material that can be integrated into photovoltaic (PV) solar cells as an absorptive compound. The . lattice vacancies in the graphene membrane occurs in ~ 1 sec and therefore much faster than the rates we measure. We therefore conclude that the graphene layer is essentially perfect and for all inten Breaking down the Procedure. Storage Capacity. = 1000mAh. Total Nominal . Voltage. = 11.1V. Nominal . Voltage . =. . 11.1/3 =. . 3.7v/cell. Fully charged. = 4.2v/cell. Minimum . safe . charge. = 3.0v/cell. chromator. LED. Signal . analysis. probe light. pump light. PIA. EA. SAC, KVA, Stockholm, September . 19. , . 2013.. Hybrid . Inorganic-Organic. Photovoltaics, HI-OPV. Anders Hagfeldt, Uppsala University. crystalline. X-ray diffraction. pattern, and it does not have a first-order melting transition.. Solid or Liquid?. Is there any Chain Order in Amorphous State?. Short Range Interactions. In axial direction of a chain. Earth abundant, non-toxic & manufacturing friendly. Light weight power for portable electronics. Solution process for roll-to-roll manufacture. Tunable transparency & Color. & Flexibility. www.polymat.eu. Centro Joxe Mari Korta. Avda. Tolosa, 72. 20018, Donostia-San Sebastian . Research. . areas. :. Advanced. . Polymer. . Synthesis. Waterborne. . Dispersed. . Polymers. Polymer. . PNWSCT Coatings Fest. Victoria, BC. October 10 – 12, 2018. Specialty Polymers, Inc . www.specpoly.com. Concrete Sealers. Uses. Protection. Appearance. Improve Cure. Acrylic Technologies. HEJC March 6. th. , 2020. Robert Gustafson. What are perovskites?. Lev . Perovski. . 1792 - 1856. ABX. 3. A. B. C. Li, et al, . Chemistry of Materials,. . 28. , 1 (2016). Amazingly tunable!. 1D, 2D perovskites!… not really. Dr. Satyanarayan Dhal. Lecture-24. Why Graphene ?. Discovery : 2004, . Geim. and . Nosovelov. at Manchester University. Extraordinary electronic, chemical, mechanical, thermal and optical properties. .

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