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寒热并用配伍治疗过敏性鼻炎 被引量:3
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作者 胡少旭 曹兰秀 《吉林中医药》 2019年第6期834-837,共4页
论述过敏性鼻炎的病因病机,分析历代医家对过敏性鼻炎的选方用药特点,提出运用寒热并用法治疗郁热和湿热型过敏性鼻炎,并以现代医家临床研究及治疗疗效为佐证,探究寒热并用法在过敏性鼻炎治疗中的重要作用。
关键词 过敏性鼻炎 病因病机 寒热并用
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Analysis of effects of front and back surface dopants on silicon vertical multi-junction solar cell by 2D numerical simulation
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作者 XING YuPeng HAN PeiDe +7 位作者 WANG Shuai LIANG Peng LOU ShiShu ZHANG YuanBo hu shaoxu Zhu huiShi MI YanHong ZHAO Chunhua 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第11期2798-2807,共10页
The silicon vertical multi-junction (VMJ) solar cell has a good potential in high concentration, but it requires high quality front and back surface passivation layers to keep its high efficiency. We try to add dopa... The silicon vertical multi-junction (VMJ) solar cell has a good potential in high concentration, but it requires high quality front and back surface passivation layers to keep its high efficiency. We try to add dopants into the front and back surfaces of the VMJ cell to release this strict requirement in this work. The effects of recombination velocities, doping types and doping pro- files of front and back surfaces on the performance of the P-type VMJ cell were calculated under 1 sun and 1000 suns. The 2D numerical simulation tool TCAD software was used. The performance of the VMJ cell without front and back surface dopants was also calculated for comparison. It was found that the requirement of high quality front and back surface passivation layers could be released remarkably by adding either N-type or W-type front and back surface dopants. For the two types of front surface dopants, the highest efficiencies of the cells were got by light dopant; for the two types of back surface dopants, the doping type and profile affected little on the performance of the cell in our calculation range. It was also found that the series resistance of the VMJ cell with N-type front surface dopant was decreased by the 2D effect of front surface emitter. The VMJ cell with W-type front surface dopant had the highest efficiency under 1000 suns and the VMJ cell with N-type front surface dopant had the highest efficiency under 1 sun in our calculation range. 展开更多
关键词 vertical junction CONCENTRATION 2D numerical simulation doping profile
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