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强流离子束离子径向密度分布的模拟研究 被引量:9
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作者 白龙 翁甲强 +1 位作者 方锦清 罗晓曙 《物理学报》 SCIE EI CAS CSCD 北大核心 2004年第12期4126-4130,共5页
对初始分布为K_V分布的离子束进行模拟研究 .除观察到存在束晕现象外 ,还发现离子束在通道内运行过程中 ,离子沿径向密度分布发生了变化 .通过延迟反馈控制 ,不仅可以消除束晕 ,而且只要控制参数适当 。
关键词 强流离子束 束晕 填充因子 离子密度分布 K-V分布 中能加速器
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光活性层的厚度对聚合物太阳能电池性能的影响
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作者 辛宇圣 李凌亮 张福俊 《物理教学》 2013年第6期6-8,共3页
本文介绍:制备一系列不同厚度P3HT:PCBM为光活性层的聚合物太阳能电池,研究光活性层的厚度对光吸收与自由栽流子运输和收集的影响。光活性层厚度越大,时入射太阳光吸收越多,但光活性层厚度增大又不利于光生栽流子的收集。因此,寻... 本文介绍:制备一系列不同厚度P3HT:PCBM为光活性层的聚合物太阳能电池,研究光活性层的厚度对光吸收与自由栽流子运输和收集的影响。光活性层厚度越大,时入射太阳光吸收越多,但光活性层厚度增大又不利于光生栽流子的收集。因此,寻求最优的光活性层厚度是获取聚合物太阳能电池高能量转换效率的重要因素。当匀胶机旋涂速度为5000转/分时,聚合物太阳能电池达到了最佳能量转换效率1.04%,其中开路电压为0.62V,短路电流密度为4.4mA/c㎡,填充因子达到38.1%。 展开更多
关键词 P3HT PCBM光活性层 聚合物太阳能电池 自由载流子 旋涂速度能量转换效率 开路电压 短路电流 密度填充因子
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A low-temperature TiO2/SnO2 electron transport layer for high-performance planar perovskite solar cells 被引量:3
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作者 Nan Li Jin Yan +6 位作者 Yuqian Ai Ershuai Jiang Liujin Lin Chunhui Shou Baojie Yan Jiang Sheng Jichun Ye 《Science China Materials》 SCIE EI CSCD 2020年第2期207-215,共9页
Conventional titanium oxide(TiO2) as an electron transport layer(ETL) in hybrid organic-inorganic perovskite solar cells(PSCs) requires a sintering process at a high temperature to crystalize, which is not suitable fo... Conventional titanium oxide(TiO2) as an electron transport layer(ETL) in hybrid organic-inorganic perovskite solar cells(PSCs) requires a sintering process at a high temperature to crystalize, which is not suitable for flexible PSCs and tandem solar cells with their low-temperatureprocessed bottom cell. Here, we introduce a low-temperature solution method to deposit a TiO2/tin oxide(SnO2) bilayer towards an efficient ETL. From the systematic measurements of optical and electronic properties, we demonstrate that the TiO2/SnO2 ETL has an enhanced charge extraction ability and a suppressed carrier recombination at the ETL/perovskite interface, both of which are beneficial to photo-generated carrier separation and transport. As a result, PSCs with TiO2/SnO2 bilayer ETLs present higher photovoltaic performance of the baseline cells compared with their TiO2 and SnO2 single-layer ETL counterparts. The champion PSC has a power conversion efficiency(PCE) of 19.11% with an open-circuit voltage(Voc)of 1.15 V, a short-circuit current density(Jsc) of 22.77 mA cm^-2,and a fill factor(FF) of 72.38%. Additionally, due to the suitable band alignment of the TiO2/SnO2 ETL in the device, a high Vocof 1.18 V is achieved. It has been proven that the TiO2/SnO2 bilayer is a promising alternative ETL for high efficiency PSCs. 展开更多
关键词 perovskite solar cell electron transport layer TiO2/SnO2 low temperature energy band alignment
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Synergistic high efficiency and low energy loss of all-small-molecule organic solar cells based on benzotriazole-basedπ-bridge unit 被引量:2
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作者 Jing Guo Ke Hu +6 位作者 Beibei Qiu Dengchen Yang Xiaojun Li Jinyuan Zhang Lei Meng Zhanjun Zhang Yongfang Li 《Science China Materials》 SCIE EI CAS CSCD 2022年第12期3382-3391,共10页
Reducing energy loss(V_(loss))is one of the most crucial challenges in organic photovoltaic cells.The V_(loss),determined by the differences between the optical band gap(E_(g))of the active layer material and the open... Reducing energy loss(V_(loss))is one of the most crucial challenges in organic photovoltaic cells.The V_(loss),determined by the differences between the optical band gap(E_(g))of the active layer material and the open-circuit voltage(V_(oc))of the device,is generally alleviated by lowering the energy difference between the lowest unoccupied molecular orbital(LUMO)and highest occupied molecular orbital(HOMO)level of the donor(D)and acceptor(A).In this work,we synthesized two A-π-D-π-A-type small-molecule donors(SMDs)SM-benzotriazole(BTz)-1 and SM-BTz-2 by introducing a BTzπ-bridge unit and terminal regulation.The BTzπ-bridge unit significantly lowers the HOMO energy level of SMDs,resulting in high V_(oc)and high mobility,achieving a balance of low energy loss(<0.5 eV)and high efficiency.Ultimately,the organic solar cells based on SM-BTz-2 as the donor and Y6 as the acceptor obtain a high V_(oc)of 0.91 V,J_(sc) of 22.8 mA cm^(−2),fill factor of 68%,and power conversion efficiency(PCE)of 14.12%,which is one of the highest efficiencies based on the SMDs with triazoleπ-bridges to date.What’s more,the BTzπ-bridge unit is a potential unit that can improve mobility and reduce energy loss. 展开更多
关键词 small-molecule donor materials all-small-molecule organic solar cells benzotriazoleπ-bridge energy loss
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