Research on Optimizing Material Structure Based on Optoelectronic Physical Performance System
Dinghan Ma
Abstract
Open-access reader
Dinghan Ma
Abstract
Open-access reader
Abstract High-voltage technology can effectively adjust the crystal lattice and electronic state of optoelectronic materials. It is a feasible means to adjust the physical properties of optoelectronic materials and an important method for synthesizing new optoelectronic materials. This article summarizes the current status of high-voltage research on optoelectronic materials at home and abroad, and introduces the effect of high-voltage on the crystal structure, electronic configuration and physical properties of optoelectronic materials. At the same time, the thesis looks forward to the development of high-voltage research on photovoltaic materials based on the properties of PbS gel mass dot solar cell photovoltaic materials.
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Abstract High-voltage technology can effectively adjust the crystal lattice and electronic state of optoelectronic materials. It is a feasible means to adjust the physical properties of optoelectronic materials and an important method for synthesizing new optoelectronic materials. This article summarizes the current status of high-voltage research on optoelectronic materials at home and abroad, and introduces the effect of high-voltage on the crystal structure, electronic configuration and physical properties of optoelectronic materials. At the same time, the thesis looks forward to the development of high-voltage research on photovoltaic materials based on the properties of PbS gel mass dot solar cell photovoltaic materials.
Key concepts: Photovoltaic system, Optoelectronics, Materials science, Voltage, Solar cell, Engineering physics, Electrical engineering, Engineering