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Optimization of ITO/V_(2)O_(5)/Alq3/TPBi/BPhen/LiF/Al Layers Configuration for OLED and Study of Its Optical and Electrical Characteristics
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作者 Ritu Sandhya Kattayat +3 位作者 H.K.Subania S.Z.Hashmi Jasgurpreet Singh P.A.Avi 《Semiconductor Science and Information Devices》 2023年第1期3-10,共8页
Nowadays,OLEDs have shown aesthetic potential in smart cards,sensor displays,other electronic devices,sensitive medical devices and signal monitoring etc.due to their wide range of applications like low power consumpt... Nowadays,OLEDs have shown aesthetic potential in smart cards,sensor displays,other electronic devices,sensitive medical devices and signal monitoring etc.due to their wide range of applications like low power consumption,high contrast ratio,speed highly electroluminescent,wide viewing angle and fast response time.In this paper,a highly efficient organic LED ITO/V_(2)O_(5)/Alq3/TPBi/BPhen/LiF/Al with low turn-on voltage and high optically efficiency is presented including electrical and optical characteristics.The simulation of electrical characteristics like current versus applied voltage,current density versus applied voltage,recombination prefactor versus excess carrier density characteristics and optical characteristics like light flux versus current density,light flux versus applied voltage and optical efficiency versus applied voltage has been explained.The physical design,working principle and thickness of different layers along with the process of formation of singlet and triplet excitons are discussed in detail.Here double electron transport layer(ETL),cathode layers are used to enhance the electrical and optical efficiency of OLED.The operating voltage is found to be~3.2 V for the ITO/V_(2)O_(5)/Alq3/TPBi/BPhen/LiF/Al heterostructure based OLED.The designed organic LED has achieved the maximum optical efficiency at 3 V. 展开更多
关键词 OLED ALQ3 BPhen tpbi I-V characteristics
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A Mixed Host Emitting Interlayer Based on CBP:TPBi in Green Phosphorescent Organic Light-Emitting Diodes
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作者 徐瑶 张雨亭 +2 位作者 寇志起 程爽 卜胜利 《Chinese Physics Letters》 SCIE CAS CSCD 2016年第4期147-150,共4页
A series of green phosphorescent organic light-emitting diodes based on bipolar-transporting material 4,4Lbis- (carbazol-9-yl) biphenyl (CBP) are prepared. We insert a mixed host emitting interlayer (CBPx: elect... A series of green phosphorescent organic light-emitting diodes based on bipolar-transporting material 4,4Lbis- (carbazol-9-yl) biphenyl (CBP) are prepared. We insert a mixed host emitting interlayer (CBPx: electron- transporting material 1,3,&tris (N-phenylbenzimidazole-2yl) (TPBi)1-X) in the middle of the emitting layer, and the best performance appears when x is 2/3. The position of this interlayer can also affect the performanee of phosphorescent organic light-emitting diodes. When this interlayer is close to the side of the electron transporting layer, the maximum value of luminance, the current efficiency and the power efficiency are 34090cd/m2 at 12 V, 60. 6 cd/A and 56.6 lm/W, respectively. 展开更多
关键词 of is EML OLEDs A Mixed Host Emitting Interlayer Based on CBP:tpbi in Green Phosphorescent Organic Light-Emitting Diodes in CBP on
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通过改变电子传输层TPBi的厚度获得高效率的有机电致蓝色磷光发射
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作者 姜文龙 刘秭君 +3 位作者 田小翠 高红岩 康志杰 刘楷鹏 《吉林师范大学学报(自然科学版)》 2015年第2期14-16,共3页
文章讨论了通过改变电子传输层TPBi的厚度,使结构为ITO/Mo O3/NPB/MCP:Firpic/TPBi/Li F/Al的有机电致蓝光器件的效率获得了较大的提高.实验过程中,使Mo O3、NPB、MCP:Firpic层的厚度分别固定在10、40、30 nm不变,改变TPBi的厚度,使TPB... 文章讨论了通过改变电子传输层TPBi的厚度,使结构为ITO/Mo O3/NPB/MCP:Firpic/TPBi/Li F/Al的有机电致蓝光器件的效率获得了较大的提高.实验过程中,使Mo O3、NPB、MCP:Firpic层的厚度分别固定在10、40、30 nm不变,改变TPBi的厚度,使TPBi的厚度分别取35、40、45、50、55 nm.研究发现,当TPBi厚度为45 nm时,在不同电流密度的情况下,器件的电流效率均较大,在电流密度较低时,最大电流效率达到16.9 cd/A.这一结果表明了载流子的注入平衡仍是提高器件发光效率的有效手段. 展开更多
关键词 蓝色有机磷光发光器件 tpbi厚度 电子传输层
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NPB和TPBi作为间隔层调控OLED激子复合区域
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作者 曾慧慧 计之皓 +2 位作者 朱唯一 陆勍 吕昭月 《光电子.激光》 EI CAS CSCD 北大核心 2017年第5期476-481,共6页
以ITO/MoO_3/NPB/Ir(ppy)_3/TPBi/Cs_2CO_3/Al器件为基础,采用NPB和TPBi作为间隔层(spacer)制备了器件ITO/MoO_3/NPB/Ir(ppy)_3/NPB(spacer)/TPBi/Cs_2CO_3/Al和ITO/MoO_3/NPB/TPBi(spacer)/Ir(ppy)_3/TPBi/Cs_2CO_3/Al,并通过调节间隔... 以ITO/MoO_3/NPB/Ir(ppy)_3/TPBi/Cs_2CO_3/Al器件为基础,采用NPB和TPBi作为间隔层(spacer)制备了器件ITO/MoO_3/NPB/Ir(ppy)_3/NPB(spacer)/TPBi/Cs_2CO_3/Al和ITO/MoO_3/NPB/TPBi(spacer)/Ir(ppy)_3/TPBi/Cs_2CO_3/Al,并通过调节间隔层厚度、分析器件的电致发光(EL)光谱,研究其对激子复合区域的调控。实验结果表明,所有器件的激子复合区域均位于NPB和Ir(ppy)_3,且复合区域随电压的增大和间隔层的增厚向NPB移动。NPB(spacer)的厚从0nm增至10nm,色坐标均匀变化,总变化值Δ(x,y)<(0.02,0.10);而TPBi(spacer)对应的色坐标变化量Δ(x,y)<(0.04,0.20),厚≤6nm时,光谱变化较小(即调节幅度较小),而10nm时光谱变化较大。这表明,通过调节间隔层材料或者厚度,就能简单、方便地调控激子复合区域,为不同复合区域发光强度的粗调/微调和白光器件的设计提供依据。 展开更多
关键词 间隔层 激子复合区域 电致发光(EL)光谱 NPB tpbi
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硼酸三异丙酯对层状富锂正极材料的影响 被引量:1
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作者 李健辉 余乐 +1 位作者 范伟贞 赵经纬 《电池》 CAS CSCD 北大核心 2018年第3期154-158,共5页
采用密度泛函理论研究锂离子电池正极成膜添加剂硼酸三异丙酯(TPBi)的作用机理。通过充电微分曲线和交流阻抗谱,研究TPBi用作电解液添加剂的电化学行为;采用XRD、SEM和透射电镜测试,分析层状富锂正极材料的晶相结构和表面形貌;使用电感... 采用密度泛函理论研究锂离子电池正极成膜添加剂硼酸三异丙酯(TPBi)的作用机理。通过充电微分曲线和交流阻抗谱,研究TPBi用作电解液添加剂的电化学行为;采用XRD、SEM和透射电镜测试,分析层状富锂正极材料的晶相结构和表面形貌;使用电感耦合等离子体发射光谱,对锂片表面进行分析。TPBi能优先于电解液在层状富锂正极材料表面氧化,形成保护膜,抑制电解液的分解,减少过渡金属离子的溶出,改善正极材料的循环性能和倍率性能。2%TPBi用作添加剂在2.0~4.8 V充放电,层状富锂正极材料以0.5 C循环190次,容量保持率从未添加的26%提升到90%,4.0 C放电比容量从未添加的96 m Ah/g提升到136 m Ah/g;石墨负极材料以0.5 C循环200次,容量保持率从未添加的22%提高到83%。 展开更多
关键词 硼酸三异丙酯(tpbi) 添加剂 层状富锂正极材料 循环性能 倍率性能
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