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PV parameters calculator using i-v and EQE data
07 Aug 2023 | Contributor(s):: RAKESH SUTHAR, supravat karak
This application is build for the calculating various solar cell parameters using the raw I-V and EQE data within the second.
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venkatesha M
Dr. Venkatesha M, presently working as an Associate Professor in the Department of Electronics & Communication Engineering at Sai Vidya Institute of Technology, Bangalore, India. Dr. Venkatesh...
https://nanohub.org/members/330246
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Anik Paul
I am Anik Paul from Dhaka, Bangladesh. I am a final year undergraduate student at Bangladesh University of Engineering and Technology, my major is Electrical and Electronic Engineering.
https://nanohub.org/members/270693
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Md. Sajjad Alam
Hi I am Sajjad Alam. I am an Engineering student. I am studying B.Sc. in EEE in East West University, Dhaka, Bangladesh.
https://nanohub.org/members/194989
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Organic Solar Cells
Online Presentations | 29 Jan 2018 | Contributor(s):: Travis Benanti, NACK Network
OutlineIntroduction to solar energy conversionOverview of technology and materialsProcessing sequenceCharacterization of devicesTrends for the future
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Ali Husainat
https://nanohub.org/members/175765
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M M HASAN
https://nanohub.org/members/145375
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Muthaiyan kumar
https://nanohub.org/members/136727
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Simulation of Organic Solar Cell with Graphene Transparent Electrode
Online Presentations | 13 Nov 2015 | Contributor(s):: Paolo Paletti, giacomo ulisse, Giuseppe Iannaccone, Gianluca Fiori
IWCE 2015 presentation. We present a simulation study of the performance of organic solar cell (OSC) exploiting graphene as transparent electrode. The approach is based on a multi-scale/multi-physics simulation framework, which is able to provide relevant information regarding the design...
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Is there an analytical model for cnt based organic solar cells?
Q&A|Closed | Responses: 0
https://nanohub.org/answers/question/1552
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BISWAJIT PURKAIT
https://nanohub.org/members/119421
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Bulk Heterojunction Morphology Generator
Tools | 11 Feb 2013 | Contributor(s):: Michael C. Heiber
This tool creates nanoscale bulk heterojunction morphologies for use with organic photovoltaics simulations
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Luis Guillermo Gerling Sarabia
https://nanohub.org/members/98282
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Bulk Heterojunction Device Model Simulator Package
Downloads | 19 May 2013 | Contributor(s):: Adrien Pierre, Shaofeng Lu, Ian Howard, Antonio Facchetti, Ana Claudia Arias
This is a simulation package for bulk heterojunction organic photovoltaics from J. Appl. Phys. 113, 154506 (2013). The carrier concentration boundary conditions, mobility, exciton quenching efficiency, optical constants, dielectric constants and recombination rates can be entered into the...
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Exciton Dynamics Simulator
Tools | 31 Dec 2012 | Contributor(s):: Michael Heiber
Simulates the exciton dynamics in organic photovolatic devices
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Exciton Annihilation Simulator
Tools | 12 Dec 2012 | Contributor(s):: Michael Heiber
Simulates exciton-exciton annihilation behavior of organic semiconductors measured by pump-probe spectroscopy
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Vishnuvarthan Kumaresan
https://nanohub.org/members/58860
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Optimum Morphology and Performance Gains of Organic Solar Cells
Online Presentations | 20 Aug 2011 | Contributor(s):: Biswajit ray, Muhammad Alam
Morphology of light absorbing layer is known to dictate the power conversion efficiency of organic photovoltaic (OPV) cell. The innovation of bulk heterojunction (BHJ) led to significant improvement for exciton harvesting, but carrier recombination at the distributed interfaces and variability of...
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Solar Cells Lecture 5: Organic Photovoltaics
Online Presentations | 29 Aug 2011 | Contributor(s):: Muhammad A. Alam
Organic solar cells make use of low-cost organic polymers for photovoltaics. Although these solar cells may appear to be quite different from solar cells made with conventional, inorganic semiconductors (e.g. they make use of exciton generation rather than electron-hole generation) this tutorial...
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Solar Cell Fundamentals
Courses | 19 Aug 2011 | Contributor(s):: Mark Lundstrom, J. L. Gray, Muhammad A. Alam
A new version of the course has been posted here. The modern solar cell was invented at Bell Labs in 1954 and is currently receiving renewed attention as a potential contribution to addressing the world's energy challenge. This set of five tutorials is an introduction to solar...