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面向过程的无机膜透氧工艺设计 被引量:1
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作者 廖传华 徐南平 时钧 《石油与天然气化工》 CAS CSCD 北大核心 2003年第1期1-3,共3页
根据无机膜透氧过程的高温特点 ,并结合工业应用的经济性要求 ,对无机膜透氧过程的工艺路线进行了探索性研究 ,初步实现了无机膜透氧过程与能量回收和高温过程的耦合 ,构筑了面向过程的无机膜透氧工艺设计 ,为实现无机膜透氧过程的工业... 根据无机膜透氧过程的高温特点 ,并结合工业应用的经济性要求 ,对无机膜透氧过程的工艺路线进行了探索性研究 ,初步实现了无机膜透氧过程与能量回收和高温过程的耦合 ,构筑了面向过程的无机膜透氧工艺设计 ,为实现无机膜透氧过程的工业化应用提供了指南。 展开更多
关键词 面向过程 无机膜 透氧工艺 设计
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Simulation of high conversion efficiency and open-circuit voltages of α-si/poly-silicon solar cell 被引量:2
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作者 CHEN AQing SHAO QingYi 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2011年第8期1466-1470,共5页
The P+ α-Si /N+ polycrystalline solar cell is molded using the AMPS-1D device simulator to explore the new high efficiency thin film poly-silicon solar cell. In order to analyze the characteristics of this device and... The P+ α-Si /N+ polycrystalline solar cell is molded using the AMPS-1D device simulator to explore the new high efficiency thin film poly-silicon solar cell. In order to analyze the characteristics of this device and the thickness of N+ poly-silicon, we consider the impurity concentration in the N+ poly-silicon layer and the work function of transparent conductive oxide (TCO) in front contact in the calculation. The thickness of N+ poly-silicon has little impact on the device when the thickness varies from 20 μm to 300 μm. The effects of impurity concentration in polycrystalline are analyzed. The conclusion is drawn that the open-circuit voltage (Voc) of P+ α-Si /N+ polycrystalline solar cell is very high, reaching 752 mV, and the conversion efficiency reaches 9.44%. Therefore, based on the above optimum parameters the study on the device formed by P+ α-Si/N+ poly-silicon is significant in exploring the high efficiency poly-silicon solar cell. 展开更多
关键词 P+ α-Si/N+ poly-silicon solar cell photovoltaics thin-film polycrystalline-silicon
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