Dissertation > Excellent graduate degree dissertation topics show
Study on Effects of Protons and Electrons Irradiation on Double Junction Amorphous Thin Film Silicon Solar Cell
Author: LiYanPeng
Tutor: ZhaoHuiJie
School: Harbin Institute of Technology
Course: Materials Science
Keywords: double junction amorphous silicon solar cell proton irradiation electron irradiation co-irradiation
CLC: TM914.4
Type: Master's thesis
Year: 2010
Downloads: 47
Quote: 0
Read: Download Dissertation
Abstract
|
This paper investigates the degradation in electrical property of double-junction amorphous silicon solar cells under the low energy protons, electrons respectively and protons electrons co-irradiation. The damage effect of different irradiation types to the inner structure and property of cell materials is explained. First, the cells with different numbers were irradiated with 80keV and 170keV protons respectively on the basis of ground-based simulation for space proton and electron co-irradiation. And then, 170keV electrons were used for the electrons irradiation on the amorphous silicon solar cells. At last, simulation experiments of proton and electron co-irradiation at 170keV were done. By the test and measure of I-V characteristics, reflectivity, series resistance, capacity, conductivity, performance degradation and damage mechanism of amorphous silicon solar cells were investigated.The irradiations testing show that, in comparison with 170keV protons irradiation, the degradation of the electric properties of the amorphous silicon solar cells irradiated by 80keV protons is more serious. The damage degree of double-junction amorphous silicon solar cells is decided by the damage of bottom junction. When the electrons energy is decided, the damage degree increases by the electrons irradiation with the increase of the fluence. The damage by co-irradiation is not equal to the addition of the damage of the protons irradiation and electrons irradiation independently. The changes of reflectivity and series resistance make the degradation of Isc and Pmax. The changes of capacity, conductivity influence the Isc. The damage by co-irradiation is due to the coeffects of ionization effect of radiation and displacement damage.
|
Related Dissertations
- 4H-SiC PiN diode minority carrier lifetime of,TN31
- Effect of Electron Irradiation on the Properties of Monocrystalline Silicon,TN304
- Proton and electron irradiation triple junction amorphous silicon solar cell performance degradation study,TM914.4
- Electron irradiation Czochralski Silicon vacancy related defects in the infrared absorption spectra,TN304.12
- Study on Irradiation Effects of Iron-Based Soft Magnetic Alloys,TG132.271
- Damage Effects of the Film-Type Secondary Surface Mirrors under Proton Irradiation and Atomic Oxygen Exposure,TB383.2
- Irradiation Effect of Alnico Permanent Magnet Materials,TM273
- A Study on the Optical-property Evolution & Its Damage Mechanisms of SiO2 Film Modified Kapton under Proton Irridiation,TB383.2
- Study on Antistatic Aluminum-doped Zinc Oxide Pigment and Its Proton Dadition Effect,TQ620
- Synthesis and Rheologic Behavior of Hydrophobically Associating PAM,O633.22
- Study on China Low Activation Martensitc Steel for Fusion Reactor by Positron Annihilation,O572.322
- The Study of Electrical Property Degradation of GaAs/Ge Solar Cells by Electron and Proton Co-Irradiation,TM914.4
- Electron Microscopy Study of Crystallization in Melt-Spun Zr-Al-Ni-Cu-Ag Amorphous Alloys,TG139.8
- The Degradation of Three-dimensional Chitosan Material and the Control of Its Degradation Rate,R318.08
- Properties Evolution and Damage Mechanisms of CF/BMI Composite in Simulated Space Environment,TB332
- Radiation Dosimetry Research for Rat Based on the Monte Carlo Method,R144
- The new short anode ring GTO thyristor,TN34
- Effect of High Pressure and Irradiation on Atomic Transportation in Bulk Amorphous Alloys,TG139.8
- High-temperature superconductors Irradiation Effects,TM26
- Study on Electron Irradiation of Poly-Si Thin Films and Poly-Si Thin Film Solar Cells and Preparing of Ceramic Silicon for Substrates of Poly-Si Thin Films,TM914.4
CLC: > Industrial Technology > Electrotechnical > Independent power supply technology (direct power) > Photocell > Solar cells
© 2012 www.DissertationTopic.Net Mobile
|