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共轭聚合物和共轭有机分子电子能级的测量 被引量:5
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作者 李骁骏 李永舫 《高分子学报》 SCIE CAS CSCD 北大核心 2022年第8期995-1004,共10页
近年来,有机发光二极管(OLED)和有机太阳电池(OSC)等有机光电器件步入快速发展阶段,受到广泛关注.而有机半导体的电子能级(HOMO和LUMO能级)与电极功函数的匹配对其光电性能至关重要,它决定着OLED电极电荷注入的能垒和OSC电极电荷收集的... 近年来,有机发光二极管(OLED)和有机太阳电池(OSC)等有机光电器件步入快速发展阶段,受到广泛关注.而有机半导体的电子能级(HOMO和LUMO能级)与电极功函数的匹配对其光电性能至关重要,它决定着OLED电极电荷注入的能垒和OSC电极电荷收集的能垒.另外,OSC中给体材料和受体材料电子能级的匹配对其光伏性能也非常重要.因而,准确测量有机半导体光电材料的电子能级非常重要.本文将介绍测量有机半导体电子能级常用的紫外光电子能谱和电化学方法,从测量原理、样品制备、测量注意事项等方面详细介绍了有机半导体电子能级的测量与计算.我们给出了几个共轭聚合物和共轭有机小分子等有机半导体电子能级测量的实例,并列举了部分典型有机半导体材料已报道的电子能级数据以供读者参考. 展开更多
关键词 有机半导体 电子能级测量 紫外光电子能谱 循环伏安法 HOMO和LUMO能级
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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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