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超薄晶硅太阳电池表面介质纳米结构减反及陷光机理研究 被引量:1
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作者 王岩岩 钱敏 +2 位作者 蒋晓慧 张瑞英 吴雪梅 《太阳能学报》 EI CAS CSCD 北大核心 2023年第7期135-140,共6页
该文以实现宽谱减反、吸收增强的介质纳米结构织构化表面超薄晶硅太阳电池为目标,利用时域有限差分(FDTD)方法,系统仿真不同形貌纳米结构对太阳电池宽谱减反及吸收性能的影响。同时,借助仿真所得电场强度分布数据,进一步分析介质纳米结... 该文以实现宽谱减反、吸收增强的介质纳米结构织构化表面超薄晶硅太阳电池为目标,利用时域有限差分(FDTD)方法,系统仿真不同形貌纳米结构对太阳电池宽谱减反及吸收性能的影响。同时,借助仿真所得电场强度分布数据,进一步分析介质纳米结构织构化表面的超薄晶硅电池减反及陷光机理。结果表明:基于Mie共振散射、Fabry-Perot共振等多种模式的共同作用,表面制备介质纳米结构的超薄晶硅电池对入射光的吸收能力较表面制备单层减反层的电池大大提升,在部分波段甚至超过Yablonovitch界限。 展开更多
关键词 减反膜 光吸收 时域有限差分方法 介质纳米结构 超薄晶硅太阳电池
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多孔硅层转移法制备超薄晶硅太阳电池的研究进展
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作者 唐群涛 沈鸿烈 邢正伟 《真空科学与技术学报》 EI CAS CSCD 北大核心 2016年第7期813-823,共11页
介绍了基于电化学腐蚀多孔硅层转移法制备超薄晶硅太阳电池的研究进展,对多孔硅层转移法制备超薄晶硅太阳电池的四个主要步骤:双层多孔硅的制备、活性超薄晶硅外延层生长、基于多孔硅的层转移和超薄晶硅太阳电池研制进行了概述,并对超... 介绍了基于电化学腐蚀多孔硅层转移法制备超薄晶硅太阳电池的研究进展,对多孔硅层转移法制备超薄晶硅太阳电池的四个主要步骤:双层多孔硅的制备、活性超薄晶硅外延层生长、基于多孔硅的层转移和超薄晶硅太阳电池研制进行了概述,并对超薄晶硅太阳电池的前景进行了展望。 展开更多
关键词 电化学腐蚀 多孔 层转移 超薄晶硅 太阳电池
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基于微腔陷光的超薄晶硅电池结构设计
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作者 高洁 陆晓东 +3 位作者 王欣欣 王洋 李禹阔 张宇峰 《人工晶体学报》 EI CAS CSCD 北大核心 2018年第8期1670-1674,共5页
基于电池前后表面电极构成的金属微腔和电池前表面微腔的双微腔结构设计,并借助微透镜控制入射光场性质,设计了一种可用于超薄晶硅电池的陷光结构。计算表明:这种陷光结构可有效提高不同厚度的超薄晶硅电池的吸光效率;电池有源层越薄,... 基于电池前后表面电极构成的金属微腔和电池前表面微腔的双微腔结构设计,并借助微透镜控制入射光场性质,设计了一种可用于超薄晶硅电池的陷光结构。计算表明:这种陷光结构可有效提高不同厚度的超薄晶硅电池的吸光效率;电池有源层越薄,该陷光结构增强光吸收的效果越明显;在晶硅电池的有源层厚度为3$m时,电池效率达16.3193%。 展开更多
关键词 陷光结构 超薄晶硅电池 输出参数 有限差分法
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A Novel Ultra-Thin Channel Poly-Si TFT Technology 被引量:2
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作者 张盛东 韩汝琦 +2 位作者 关旭东 刘晓彦 王阳元 《Journal of Semiconductors》 EI CAS CSCD 北大核心 2000年第4期317-324,共8页
A novel low temperature poly\|Si(LTPS) ultra\|thin channel thin film transistor (UTC\|TFT) technology is proposed. The UTC\|TFT has an ultra\|thin channel region (30nm) and a thick drain/source region (300nm). The ult... A novel low temperature poly\|Si(LTPS) ultra\|thin channel thin film transistor (UTC\|TFT) technology is proposed. The UTC\|TFT has an ultra\|thin channel region (30nm) and a thick drain/source region (300nm). The ultra\|thin channel region that can result in a lower grain\|boundary trap density in the channel is connected to the heavily\|doped thick drain/source region through a lightly\|doped overlapped region. The overlapped lightly\|doped region provides an effective way for the electric field to spread in the channel near the drain at high drain biases, thereby reducing the electric field there significantly. Simulation results show the UTC\|TFT experiences a 50% reduction in peak lateral electric field compared to that of the conventional TFT. With the low grain\|boundary trap density and low drain electric field, excellent current saturation characteristics and high drain breakdown voltage are achieved in the UTC\|TFT. Moreover, this technology provides the complementary LTPS\|TFTs with more than 2 times increase in on\|current, 3.5 times reduction in off\|current compared to the conventional thick channel LTPS TFTs. 展开更多
关键词 TFT poly\|silicon kink\|effect ultra\|thin channel
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Novel method for detection of anomalous structure characteristics of ID precision ultrathin monocrystalline silicon section cutting tool
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作者 陈宗农 郭明 +1 位作者 王庆九 余学功 《Journal of Zhejiang University Science》 CSCD 2002年第3期263-267,共5页
The structure characteristics of ID precision ultrathin monocrystalline silicon section cutting machine tool spindle with force monitoring bearings functioning as force measuring sensors were detected with the new H... The structure characteristics of ID precision ultrathin monocrystalline silicon section cutting machine tool spindle with force monitoring bearings functioning as force measuring sensors were detected with the new Hilbert theory based signal wave envelope detection method, presented to replace the conventional hardware device in order to ensure that the signal is measured online with high fidelity. According to the probability of anomalous incidents in the cutting process, a mathematical recognition model has been designed and verified on an STC 22ID machine. 展开更多
关键词 Machine tool spindle BEARING Monocrystalline silicon section Signal analysis
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生物-生态一体化污水处理工艺的分布式光伏发电系统构建与性能分析
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作者 陈北洋 陈绍良 +1 位作者 才丁 潘旗 《资源节约与环保》 2017年第9期5-6,共2页
分布式光伏发电技术是污水处理厂降本增效的有效手段。通过在生物-生态一体化污水处理池阳光棚顶布置单板容量≥170k W、透光率≥40%的超薄双玻无边框晶硅光伏组件,可构建光伏-市电协同供电系统。供电同时满足池内挺水植物生长所需光照... 分布式光伏发电技术是污水处理厂降本增效的有效手段。通过在生物-生态一体化污水处理池阳光棚顶布置单板容量≥170k W、透光率≥40%的超薄双玻无边框晶硅光伏组件,可构建光伏-市电协同供电系统。供电同时满足池内挺水植物生长所需光照条件,具有耐候性强、造型美观、防潮抗蚀、防火抗裂、易于清洁的特点。 展开更多
关键词 生物-生态一体化 污水处理 阳光棚 超薄双玻无边框组件
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Ultrathin 3D radial tandem‐junction photocathode with a high onset potential of 1.15 V for solar hydrogen production
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作者 Shaobo Zhang Huiting Huang +8 位作者 Zhijie Zhang Jianyong Feng Zongguang Liu Junzhuan Wang Jun Xu Zhaosheng Li Linwei Yu Kunji Chen Zhigang Zou 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第7期1842-1850,共9页
Combining a progressive tandem junction design with a unique Si nanowire(SiNW)framework paves the way for the development of high‐onset‐potential photocathodes and enhancement of solar hydrogen production.Herein,a r... Combining a progressive tandem junction design with a unique Si nanowire(SiNW)framework paves the way for the development of high‐onset‐potential photocathodes and enhancement of solar hydrogen production.Herein,a radial tandem junction(RTJ)thin film water‐splitting photo‐cathode has been demonstrated experimentally for the first time.The photocathode is directly fab‐ricated on vapor‐liquid‐solid‐grown SiNWs and consists of two radially stacked p‐i‐n junctions,featuring hydrogenated amorphous silicon(a‐Si:H)as the outer absorber layer,which absorbs short wavelengths,and hydrogenated amorphous silicon germanium(a‐SiGe:H)as the inner layer,which absorbs long wavelengths.The randomly distributed SiNW framework enables highly efficient light‐trapping,which facilitates the use of very thin absorber layers of a‐Si:H(~50 nm)and a‐SiGe:H(~40 nm).In a neutral electrolyte(pH=7),the three‐dimensional(3D)RTJ photocathode delivers a high photocurrent onset of 1.15 V vs.the reversible hydrogen electrode(RHE),accompanied by a photocurrent of 2.98 mA/cm^(2) at 0 V vs.RHE,and an overall applied‐bias photon‐to‐current effi‐ciency of 1.72%.These results emphasize the promising role of 3D radial tandem technology in developing a new generation of durable,low‐cost,high‐onset‐potential photocathodes capable of large‐scale implementation。 展开更多
关键词 Solar hydrogen production 3D radial tandem junction Amorphous silicon photocathode Very thin absorber High onset potential
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