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Bifacial Silicon Solar Cell Steady Photoconductivity under Constant Magnetic Field and Junction Recombination Velocity Effects 被引量:7
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作者 Amadou Diao Mamadou Wade +1 位作者 Moustapha Thiame Grégoire Sissoko 《Journal of Modern Physics》 2017年第14期2200-2208,共9页
The paper reported a theoretical study on the photoconductivity of a bifacial silicon solar cell under polychromatic illumination and a constant magnetic field effect. By use of the continuity equation in the base of ... The paper reported a theoretical study on the photoconductivity of a bifacial silicon solar cell under polychromatic illumination and a constant magnetic field effect. By use of the continuity equation in the base of the solar cell maintained in a constant temperature at 300 K, an expression of the excess minority carriers’ density was determined according to the applied magnetic field, the base depth and the junction recombination velocity. From the expression of the minority carriers’ density, the photoconductivity of the solar cell was deduced and which allowed us to predict some recombination phenomena, the use of such solar cell in optoelectronics. The profile of the photoconductivity also permitted us to utilize a linear model in order to determine an electrical capacitance that varied with magnetic field. 展开更多
关键词 bifacial solar cell PHOTOCONDUCTIVITY JUNCTION Recombination VELOCITY Magnetic Field Electrical CAPACITANCE
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n型双面TOPCon太阳电池钝化技术 被引量:4
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作者 于波 史金超 +3 位作者 李锋 庞龙 刘克铭 于威 《半导体技术》 CAS 北大核心 2019年第5期368-373,共6页
隧穿氧化物钝化接触(TOPCon)技术已成为当前产业化高效太阳电池的重点研究方向之一。报道了可应用于规模化生产的n型双面TOPCon太阳电池技术,对前表面SiO_2/多晶硅钝化层进行了优化设计。为了有效降低接触电阻,太阳电池的背表面采用了... 隧穿氧化物钝化接触(TOPCon)技术已成为当前产业化高效太阳电池的重点研究方向之一。报道了可应用于规模化生产的n型双面TOPCon太阳电池技术,对前表面SiO_2/多晶硅钝化层进行了优化设计。为了有效降低接触电阻,太阳电池的背表面采用了全面积SiO_2/多晶硅钝化层结构;为避免多晶硅层对太阳光的寄生吸收,仅将SiO_2/多晶硅钝化层应用于前表面金属接触的底部。J-V特性和少子寿命等分析显示,双面TOPCon结构设计显著提升了太阳电池的表面钝化接触性能,其开路电压和短路电流密度显著增加。所制备的面积为239 cm^2的双面TOPCon太阳电池的平均正面转换效率可达20.33%,相对正面无SiO_2/多晶硅钝化层的常规钝化发射极及背表面全扩散(PERT)结构的太阳电池转换效率提升了0.29%。 展开更多
关键词 隧穿氧化物钝化接触(TOPCon)太阳电池 选择性钝化接触 隧穿氧化层 多晶硅 双面太阳电池
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n型TOPCon-PERT双面太阳电池发电特性分析 被引量:4
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作者 汪洋 吕欣 +1 位作者 侯少攀 崇峰 《太阳能》 2020年第11期72-75,共4页
随着将隧穿氧化层钝化接触(TOPCon)技术应用在n型钝化发射极背表面全扩散(PERT)太阳电池上,电池效率得到了进一步提升,n型TOPCon-PERT太阳电池因具有少子寿命高、无光致衰减及功率温度系数小等优点,已成为当前太阳电池技术研究的热点之... 随着将隧穿氧化层钝化接触(TOPCon)技术应用在n型钝化发射极背表面全扩散(PERT)太阳电池上,电池效率得到了进一步提升,n型TOPCon-PERT太阳电池因具有少子寿命高、无光致衰减及功率温度系数小等优点,已成为当前太阳电池技术研究的热点之一。通过对比叠加TOPCon技术前、后n型PERT双面太阳电池的量子效率,并根据p型PERC双面光伏组件、n型PERT双面光伏组件及n型TOPCon-PERT双面光伏组件的户外发电特性及衰减率等实测数据,验证了n型TOPCon-PERT双面太阳电池的发电量增益。 展开更多
关键词 PERT 双面太阳电池 隧穿氧化层钝化接触 量子效率 衰减率
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双面单晶硅光伏电池技术及工艺探索 被引量:3
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作者 张中伟 张小宾 +1 位作者 侯泽荣 黄仑 《东方电气评论》 2014年第4期17-21,共5页
对双面晶体硅电池技术和工艺做了初步的阐述,并以双面P型单晶硅电池为研究对象,对双面电池制程中的硼扩散、边缘刻蚀、硼扩散面钝化几个关键技术和工艺展开研究和探索,得出其中工艺参数与电池性能之间的相互联系,实验制作得到的P型双面... 对双面晶体硅电池技术和工艺做了初步的阐述,并以双面P型单晶硅电池为研究对象,对双面电池制程中的硼扩散、边缘刻蚀、硼扩散面钝化几个关键技术和工艺展开研究和探索,得出其中工艺参数与电池性能之间的相互联系,实验制作得到的P型双面电池片最高综合效率达20.04%。这些技术和制备工艺流程对于未来高效晶硅电池的研发和生产具有重要的参考价值。 展开更多
关键词 双面光伏电池 硼扩散 钝化
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Three-Dimensional Study of the Effect of the Angle of Incidence of a Magnetic Field on the Electrical Power and Conversion Efficiency of a Polycrystalline Silicon Solar Cell under Multispectral Illumination
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作者 Idrissa Sourabié Vinci de Dieu Bokoyo Barandja +5 位作者 Mahamadi Savadogo Ramatou Konaté Alain Doua Gnabahou Martial Zoungra Issa Zerbo Frédéric Ouattara 《Smart Grid and Renewable Energy》 CAS 2022年第12期295-304,共10页
A three-dimensional approach to the effect of magnetic field incidence angle on electrical power and conversion efficiency is performed on a front-illuminated polycrystalline silicon bifacial solar cell. A solution of... A three-dimensional approach to the effect of magnetic field incidence angle on electrical power and conversion efficiency is performed on a front-illuminated polycrystalline silicon bifacial solar cell. A solution of the continuity equation allowed us to present the equations of photocurrent density, photovoltage and electric power. The influence of the angle of incidence of the magnetic field on the photocurrent density, the photovoltage and the electric power has been studied. The curves of electrical power versus dynamic junction velocity were used to extract the values of maximum electrical power and dynamic junction velocity and to calculate those of conversion efficiency. From this study, it is found that the conversion efficiency values increase with the angle of incidence of the magnetic field. 展开更多
关键词 Angle of Incidence Magnetic Field Electric Power bifacial solar cell Conversion Efficiency
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Impact of the Thicknesses of the p and p+ Regions on the Electrical Parameters of a Bifacial PV Cell
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作者 Ramatou Konate Bernard Zouma +3 位作者 Adama Ouedraogo Bruno Korgo Martial Zoungrana Sié Kam 《Energy and Power Engineering》 2022年第2期133-145,共13页
The present paper is about a contribution to the bifacial PV cell performances improvement. The PV cell efficiency is weak compared to the strong energy demand. In this study, the base thickness impacts and the p+<... The present paper is about a contribution to the bifacial PV cell performances improvement. The PV cell efficiency is weak compared to the strong energy demand. In this study, the base thickness impacts and the p+</sup> zone size influence are evaluated on the rear face of the polycrystalline back surface field bifacial silicon PV cell. The photocurrent density and photovoltage behaviors versus thickness of these regions are studied. From a three-dimensional grain of the polycrystalline bifacial PV cell, the magneto-transport and continuity equations of excess minority carriers are solved to find the expression of the density of excess minority carriers and the related electrical parameters, such as the photocurrent density, the photovoltage and the electric power for simultaneous illumination on both sides. The photocurrent density, the photovoltage and electric power versus junction dynamic velocity decrease for different thicknesses of base and the p+</sup> region increases for simultaneous illumination on both sides. It is found that the thickness of the p+</sup> region at 0.1 μm and the base size at 100 μm allow reaching the best bifacial PV cell performances. Consequently, it is imperative to consider the reduction in the thickness of the bifacial PV cell for exhibition of better performance. This reduced the costs and increase production speed while increasing conversion efficiency. 展开更多
关键词 Doped p+ Region bifacial PV cell Photocurrent Density PHOTOVOLTAGE Polycrystalline solar cell
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P型双面单晶硅太阳电池单元宽度的优化 被引量:2
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作者 照日格图 夏婷婷 《激光与光电子学进展》 CSCD 北大核心 2017年第11期437-443,共7页
在正面光照和背面光照两种条件下,利用半导体器件仿真软件分析了单元电池宽度对产业化P型双面单晶硅太阳电池电学性能的影响。为进一步提高双面太阳电池光电转换效率,对单元电池宽度进行了优化。仿真结果表明,在正、背面光照条件下,随... 在正面光照和背面光照两种条件下,利用半导体器件仿真软件分析了单元电池宽度对产业化P型双面单晶硅太阳电池电学性能的影响。为进一步提高双面太阳电池光电转换效率,对单元电池宽度进行了优化。仿真结果表明,在正、背面光照条件下,随着单元电池宽度的增大,双面电池短路电流密度均增大;当单元电池宽度较小时,正、背面短路电流密度增大较迅速。随着单元电池宽度的增大,正、背面开路电压均增大,而正、背面填充因子先增大后减小。当正、背面入射光强一定时,存在最优的单元电池宽度,使得双面太阳电池转换效率达到最大值。随着单元电池宽度的增大,正面和背面光电转换效率均先增大后减小,但正、背面光照条件下的最优单元宽度不同。当单元电池宽度一定时,存在最优的正、背面栅电极间距。 展开更多
关键词 薄膜 双面太阳电池 单元宽度 短路电流密度 开路电压 填充因子 转换效率
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A Junction Electric Field Determination of a Bifacial Silicon Solar Cell under a Constant Magnetic Field Effect by Using the Photoconductivity Method
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作者 Amadou Diao Bada Thiaw +2 位作者 Mountaga Boiro Senghane Mbodji Gregoire Sissoko 《Journal of Modern Physics》 2021年第5期635-645,共11页
In this work, a theory based on the steady photoconductivity method, of a bifacial silicon solar cell under polychromatic illumination and a magnetic field effect, is presented. The resolution of the continuity equati... In this work, a theory based on the steady photoconductivity method, of a bifacial silicon solar cell under polychromatic illumination and a magnetic field effect, is presented. The resolution of the continuity equation in the base of the solar cell, allowed us to establish the expression of the minority carriers’ density from which the photoconductivity, the photocurrent density, the photovoltage and the solar output power as function of the junction recombination velocity and the applied magnetic field, were deduced. From I-V and P-V characteristics of the solar cell, optimal photovoltage and optimal photocurrent obtained at the maximum power point corresponding to a given operating point which is correlated to an optimal junction recombination velocity, were determined according to the magnetic field. By means of the relation between the photocurrent density and the photoconductivity, the junction electric field has been determined at a given optimal junction recombination velocity. 展开更多
关键词 bifacial solar cell PHOTOCONDUCTIVITY Junction Recombination Velocity Magnetic Field Electric Field
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背表面场结构参数对双面太阳电池电流特性的影响
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作者 周涛 陆晓东 +1 位作者 吴元庆 李媛 《电子元件与材料》 CAS CSCD 2017年第12期89-94,共6页
针对正面光照、背面光照及双面光照三种不同光照条件,利用TCAD半导体器件仿真软件全面系统地分析了背表面场结构参数对P型双面单晶硅太阳电池内量子效率(IQE)和短路电流密度(JSC)的影响。仿真结果表明:在300~700 nm短波段范围,双面光照... 针对正面光照、背面光照及双面光照三种不同光照条件,利用TCAD半导体器件仿真软件全面系统地分析了背表面场结构参数对P型双面单晶硅太阳电池内量子效率(IQE)和短路电流密度(JSC)的影响。仿真结果表明:在300~700 nm短波段范围,双面光照情况下的IQE主要由BSF结构对背面光照光生载流子的影响决定。在700~1200 nm长波段范围,双面光照情况下的IQE主要由BSF结构对正面光照光生载流子的影响决定。当BSF扩散深度一定时,随着BSF表面浓度的增大,双面光照情况下JSC的变化特点与背面光照情况一致。BSF结构的变化对正面光照情况下JSC的影响较小((35)JSC=0.26×10^(–3)A/cm^2),而BSF结构参数的变化对背面光照情况下JSC的影响较大((35)JSC=10.59×10^(–3)A/cm^2),BSF结构对背面光照光生载流子的影响是导致双面光照JSC出现大幅变化的主要因素。 展开更多
关键词 双面太阳电池 背表面场 表面浓度 扩散深度 内量子效率 短路电流密度
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高效率n型硅离子注入双面太阳电池
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作者 李晓苇 史金超 +2 位作者 张伟 沈艳娇 李锋 《半导体技术》 CAS CSCD 北大核心 2018年第3期211-215,共5页
为进一步提升n型硅双面太阳电池的转化效率,采用了磷离子注入技术制备n型硅双面太阳电池的背场。基于离子注入技术准直性和均匀性好的特点,掺杂后硅片的表面复合电流密度降低到了1.4×10^-13A/cm2,隐性开路电压可达670 mV,且分布区... 为进一步提升n型硅双面太阳电池的转化效率,采用了磷离子注入技术制备n型硅双面太阳电池的背场。基于离子注入技术准直性和均匀性好的特点,掺杂后硅片的表面复合电流密度降低到了1.4×10^-13A/cm2,隐性开路电压可达670 mV,且分布区间更紧凑。在电阻率为13Ω·cm的n型硅片基底上,采用磷离子注入技术工业化生产的n型硅双面太阳电池的正面平均转化效率达到了20.64%,背面平均转化效率达到了19.52%。内量子效率的分析结果显示,离子注入太阳电池效率的增益主要来自长波段光谱响应的提升。 展开更多
关键词 双面太阳电池 n型Si 转化效率 背场 离子注入
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PECVD工艺制备的背面氮化硅薄膜对双面单晶硅太阳电池EL发黑的影响
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作者 张福庆 王贵梅 +2 位作者 赵环 张军杰 朱少杰 《太阳能》 2021年第2期53-57,共5页
以采用PECVd工艺制备的背面氮化硅薄膜对双面单晶硅太阳电池电致发光(EL)发黑的影响为研究对象进行了实验验证。结果表明,当背面氮化硅薄膜中底层膜的折射率较低时,会导致双面单晶硅太阳电池背电极位置的EL发黑;底层膜和中层膜的折射率... 以采用PECVd工艺制备的背面氮化硅薄膜对双面单晶硅太阳电池电致发光(EL)发黑的影响为研究对象进行了实验验证。结果表明,当背面氮化硅薄膜中底层膜的折射率较低时,会导致双面单晶硅太阳电池背电极位置的EL发黑;底层膜和中层膜的折射率过高时,会导致双面单晶硅太阳电池的EL大面积发黑;上层膜边缘的折射率较高时,会导致双面单晶硅太阳电池的边缘位置EL发黑。对于双面单晶硅太阳电池而言,采用PECVd工艺制备背面氮化硅薄膜时制定合理的底层膜、中层膜,以及上层膜边缘的折射率范围,可以有效避免双面单晶硅太阳电池不良品的产生。 展开更多
关键词 单晶硅 双面太阳电池 PECVD 氮化硅薄膜 EL发黑 折射率 开槽激光
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Corrective Effect of the Angle of Incidence of the Magnetic Field Intensity on the Performance (Series and Shunt Resistances) of a Bifacial Silicon Solar Cell
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作者 Idrissa Sourabié Mahamadi Savadogo +4 位作者 Boubacar Soro Ramatou Saré Christian Zoundi Martial Zoungrana Issa Zerbo 《Energy and Power Engineering》 2024年第9期313-323,共11页
This article presents a three-dimensional analysis of the impact of the angle of incidence of the magnetic field intensity on the electrical performance (series resistance, shunt resistance) of a bifacial polycrystall... This article presents a three-dimensional analysis of the impact of the angle of incidence of the magnetic field intensity on the electrical performance (series resistance, shunt resistance) of a bifacial polycrystalline silicon solar cell. The cell is illuminated simultaneously from both sides. The continuity equation for the excess minority carriers is solved at the emitter and at the depth of the base respectively. The analytical expressions for photocurrent density, photovoltage, series resistance and shunt resistance were deduced. Using these expressions, the values of the series and shunt resistances were extracted for different values of the angle of incidence of the magnetic field intensity. The study shows that as the angle of incidence increases, the slopes of the minority carrier density for the two modes of operation of the solar cell decrease. This is explained by a drop in the accumulation of carriers in the area close to the junction due to the fact that the Lorentz force is unable to drive the carriers towards the lateral surfaces due to the weak action of the magnetic field, which tends to cancel out as the incidence angle increases, and consequently a drop in the open circuit photovoltage. This, in turn, reduces the Lorentz force. These results predict that the p-n junction of the solar cell will not heat up. The study also showed a decrease in series resistance as the incidence angle of the magnetic field intensity increased from 0 rad to π/2 rad and an increase in shunt resistance as the incidence angle increased. His behaviour of the electrical parameters when the angle of incidence of the field from 0 rad to π/2 rad shows that the decreasing magnetic field vector tends to be collinear with the electron trajectory. This allows them to cross the junction and participate in the external current. The best orientation for the Lorentz force is zero, in which case the carriers can move easily towards the junction. 展开更多
关键词 Angle of Incidence Magnetic Field Intensity bifacial Polycrystalline Silicon solar cell Series Resistance Shunt Resistance
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双面太阳电池的结构、工作原理和发展趋势 被引量:4
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作者 郭丹 田汉民 +3 位作者 吕俊 戎小莹 张天 赵昆越 《半导体技术》 CAS CSCD 北大核心 2018年第2期97-105,141,共10页
双面太阳电池因具有更高的等效转换效率、可降低25%以上的系统成本和更广泛的应用等优点引起了人们的广泛关注。介绍了双面太阳电池的工作原理,重点总结了钝化发射极及背表面完全扩散(PERT)双面太阳电池、钝化发射极及背表面接触(PER... 双面太阳电池因具有更高的等效转换效率、可降低25%以上的系统成本和更广泛的应用等优点引起了人们的广泛关注。介绍了双面太阳电池的工作原理,重点总结了钝化发射极及背表面完全扩散(PERT)双面太阳电池、钝化发射极及背表面接触(PERC)双面太阳电池、异质结型双面太阳电池等硅基双面太阳电池的结构及发展现状,介绍了铜铟镓硒(CIGS)双面太阳电池、CdTe薄膜双面太阳电池及钙钛矿双面太阳电池等的新型结构及研究进展。详细分析了双面太阳电池的发展优势与现阶段出现的主要问题。最后说明了双面太阳电池今后的努力方向,为更好地提高双面太阳电池的效率,背部结构的设计以及制备工艺的优化和创新是未来双面电池发展的趋势。 展开更多
关键词 硅基太阳电池 钝化发射极及背表面接触(PERC)双面太阳电池 CdTe薄膜双面太阳电池 光电转换效率 异质结
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Determination of the Base Optimum Thickness of Back Illuminated (n+/p/p+) Bifacial Silicon Solar Cell, by Help of Diffusion Coefficient at Resonance Frequency
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作者 Mohamed Yaya Teya Ousmane Sow +5 位作者 Khady Loum Ibrahima Diatta Gora Diop Youssou Traore Mamadou Wade Gregoire Sissoko 《Journal of Electromagnetic Analysis and Applications》 CAS 2023年第2期13-24,共12页
The bifacial silicon solar cell subjected to a magnetic field, is illuminated by the back side by a monochromatic light in frequency modulation, with high absorption, At minority carriers diffusion coefficient resonan... The bifacial silicon solar cell subjected to a magnetic field, is illuminated by the back side by a monochromatic light in frequency modulation, with high absorption, At minority carriers diffusion coefficient resonance frequency, a graphical study of the expressions of recombination velocity on the rear side is carried out. The optimum thickness of the base of the bifacial solar cell is deduced for each resonance frequency. 展开更多
关键词 bifacial Silicon solar cell Frequency Magnetic Field Wavelength-Recombination Velocity Base Thickness
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AC Back Surface Recombination Velocity as Applied to Optimize the Base Thickness under Temperature of an (n+-p-p+) Bifacial Silicon Solar Cell, Back Illuminated by a Light with Long Wavelength
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作者 Khady Loum Ousmane Sow +7 位作者 Gora Diop Richard Mane Ibrahima Diatta Malick Ndiaye Sega Gueye Moustapha Thiame Mamadou Wade Gregoire Sissoko 《World Journal of Condensed Matter Physics》 CAS 2023年第1期40-56,共17页
The bifacial silicon solar cell, placed at temperature (T) and illuminated from the back side by monochromatic light in frequency modulation (ω), is studied from the frequency dynamic diffusion equation, relative to ... The bifacial silicon solar cell, placed at temperature (T) and illuminated from the back side by monochromatic light in frequency modulation (ω), is studied from the frequency dynamic diffusion equation, relative to the density of excess minority carriers in the base. The expressions of the dynamic recombination velocities of the minority carriers on the rear side of the base Sb1(D(ω, T);H) and Sb2(α, D(ω, T);H), are analyzed as a function of the dynamic diffusion coefficient (D(ω, T)), the absorption coefficient (α(λ)) and the thickness of the base (H). Thus their graphic representation makes it possible to go up, to the base optimum thickness (Hopt(ω, T)), for different temperature values and frequency ranges of modulation of monochromatic light, of strong penetration. The base optimum thickness (Hopt(ω, T)) decreases with temperature, regardless of the frequency range and allows the realization of the solar cell with few material (Si). 展开更多
关键词 bifacial Silicon solar cell Absorption Coefficient Frequency TEMPERATURE Recombination Velocity Optimum Thickness
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针对N型IBC太阳电池中背结模型的建立及优化 被引量:4
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作者 张巍 贾锐 +1 位作者 孙昀 邢钊 《太阳能学报》 EI CAS CSCD 北大核心 2015年第5期1274-1277,共4页
在N型衬底上制作2 cm×2 cm的双面太阳电池片,并对电池的正反面进行I-V、量子效率、掺杂形貌测试。通过将结果导入到PC1D中并拟合内量子效率,建立N型背结太阳电池的模型。通过调整背结太阳电池模型中串并联电阻、衬底寿命、表面复... 在N型衬底上制作2 cm×2 cm的双面太阳电池片,并对电池的正反面进行I-V、量子效率、掺杂形貌测试。通过将结果导入到PC1D中并拟合内量子效率,建立N型背结太阳电池的模型。通过调整背结太阳电池模型中串并联电阻、衬底寿命、表面复合速率、前表面场等参数,发现串联电阻与前表面场掺杂浓度是N型背结太阳太阳电池设计的关键。将这两个参数进行优化,电池效率的增幅分别为19.7%与33.9%。最终将N型背结太阳电池效率优化到20.6%。 展开更多
关键词 N型双面太阳电池 PC1D 串联电阻 前表面场
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External Magnetic Field Effect on Bifacial Silicon Solar Cell’s Electrical Parameters 被引量:2
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作者 Issa Zerbo Martial Zoungrana +3 位作者 Idrissa Sourabié Adama Ouedraogo Bernard Zouma Dieudonné Joseph Bathiebo 《Energy and Power Engineering》 2016年第3期146-151,共6页
The aim of this work is to present a theoretical study of external magnetic field effect on a bifacial silicon solar cell’s electrical parameters (peak power, fill factor and load resistance) using the J-V and P-V ch... The aim of this work is to present a theoretical study of external magnetic field effect on a bifacial silicon solar cell’s electrical parameters (peak power, fill factor and load resistance) using the J-V and P-V characteristics. After the resolution of the magneto transport equation and continuity equation of excess minority carriers in the base of the bifacial silicon solar cell under multispectral illumination, the photo-current density and the photovoltage are determined and the J-V and P-V curves are plotted. Using simultaneously the J-V and P-V curves, we determine, according to magnetic field intensity, the peak photocurrent density, the peak photovoltage, the peak electric power, the fill factor and the load resistance at the peak power point. The numerical data show that the solar cell’s peak power decreases with magnetic field intensity while the fill factor and the load resistance increase. 展开更多
关键词 bifacial Silicon solar cell Fill Factor Load Resistance Magnetic Field Peak Power
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Back Illuminated N/P/P<sup>+</sup>Bifacial Silicon Solar Cell under Modulated Short-Wavelength: Determination of Base Optimum Thickness 被引量:1
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作者 Mamadou Sall Dianguina Diarisso +4 位作者 Mame Faty Mbaye Fall Gora Diop Mor Ndiaye Khady Loum Gregoire Sissoko 《Energy and Power Engineering》 2021年第5期207-220,共14页
A bifacial silicon solar cell under monochromatic illumination in frequency modulation by the rear side is being studied for the optimization of base thickness. The density of photogenerated carriers in the base is ob... A bifacial silicon solar cell under monochromatic illumination in frequency modulation by the rear side is being studied for the optimization of base thickness. The density of photogenerated carriers in the base is obtained by resolution of the continuity equation, with the help of boundary conditions at the junction surface (n<sup><span style="font-family:Verdana;">+</span></sup><span style="font-family:Verdana;">/p) and the rear face (p/p</span><sup><span style="font-family:Verdana;">+</span></sup><span style="font-family:Verdana;">) of the base. For a short wavelength corresponding to a high absorption coefficient, the AC photocurrent density is calculated and represented according to the excess minority carrier’s recombination velocity at the junction, for different modulation frequency values. The expression of the AC recombination velocity of excess minority carriers at the rear surface of the base of the solar cell is then deduced, depending on both, the absorption coefficient of the silicon material and the thickness of the base. Compared to the intrinsic AC recombination velocity, the optimal thickness is extracted and modeled in a mathematical relationship, as a decreasing function of </span><span style="font-family:Verdana;">the </span><span style="font-family:Verdana;">modulated frequency of back illumination. Thus under these operating conditions</span><span style="font-family:Verdana;">,</span><span style="font-family:Verdana;"> a maximum short-circuit photocurrent is obtained and a low</span><span style="font-family:Verdana;">-</span><span style="font-family:Verdana;">cost bifacial solar cell can be achieved by reducing material (Si) to elaborate the base thickness.</span> 展开更多
关键词 bifacial Silicon solar cell AC Recombination Velocity-Base Thickness Short-Wavelength
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Effect of Incidence Angle of Magnetic Field on the Performance of a Polycrystalline Silicon Solar Cell under Multispectral Illumination 被引量:1
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作者 Idrissa Sourabié Issa Zerbo +2 位作者 Martial Zoungrana Dioari Ulrich Combari Dieudonné Joseph Bathiebo 《Smart Grid and Renewable Energy》 2017年第10期325-335,共11页
The aim of this work is to investigate, with a three-dimensional steady-state approach, the effect of the incidence angle of a magnetic field on the performance of a polycrystalline silicon solar cell under multispect... The aim of this work is to investigate, with a three-dimensional steady-state approach, the effect of the incidence angle of a magnetic field on the performance of a polycrystalline silicon solar cell under multispectral illumination. The magneto-transport and continuity equations of excess minority carriers are solved to find the expression of the density of excess minority carriers and the related electrical parameters, such as the photocurrent density, the photovoltage and the electric power, of a grain of the polycrystalline silicon solar cell. The influence of the incidence angle of the magnetic field on the diffusion coefficient, the short-circuit photocurrent density, the open-circuit photovoltage and the electric power-photovoltage is studied. Then, the curves of the electric power-photovoltage is used to find the maximum electric power allowing to calculate, according to the incidence angle of the magnetic field, the fill factor and the conversion efficiency. The study has shown that the increase of the incidence angle of the magnetic field from 0 rad to π/2 rad, can reduce the degradation of the performance of solar cells. 展开更多
关键词 bifacial CONVERSION Efficiency INCIDENCE Angle Magnetic Field POLYCRYSTALLINE Silicon solar cell
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管式炉扩散法制备20%效率的n型双面电池 被引量:1
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作者 吕晓华 严金梅 +2 位作者 李吉 张进臣 赵朋松 《半导体技术》 CAS CSCD 北大核心 2016年第12期924-928,共5页
采用一种管式扩散炉工艺制备了平均效率为20%的n型双面晶硅太阳电池。制得的n型双面晶硅电池峰值正面效率为20.30%、背面效率为17.59%。硼、磷扩散工艺分别在硼、磷高温管式扩散炉中实现,POCl_3气氛的高温扩散工艺沉积PSG/SiO_x层,BBr3... 采用一种管式扩散炉工艺制备了平均效率为20%的n型双面晶硅太阳电池。制得的n型双面晶硅电池峰值正面效率为20.30%、背面效率为17.59%。硼、磷扩散工艺分别在硼、磷高温管式扩散炉中实现,POCl_3气氛的高温扩散工艺沉积PSG/SiO_x层,BBr3气氛的高温扩散工艺沉积BSG/SiO_x层。电化学电容-电压法测试显示正面硼发射极没有受到POCl_3高温扩散的影响。采用电致发光测试方法研究了该n型双面电池的边缘漏电情况。该n型双面电池工艺制作流程采用常规的产线设备,适合大规模生产。 展开更多
关键词 n型双面电池 硼和磷管式扩散 高效率 阻挡层 漏电
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