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Enhancing The Efficiency of White Organic Light-emitting Diode Using Energy Recyclable Photovoltaic Cells 被引量:2
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作者 Meiso YOKOYAMA WU Chung-ming SU Shui-hsiang 《发光学报》 EI CAS CSCD 北大核心 2012年第1期1-6,共6页
We demonstrate that power recycling is feasible by using a semi-transparent stripped Al electrode as interconnecting layer to merge a white organic light-emitting devices(WOLED) and an organic photovoltaic(OPV) cell.T... We demonstrate that power recycling is feasible by using a semi-transparent stripped Al electrode as interconnecting layer to merge a white organic light-emitting devices(WOLED) and an organic photovoltaic(OPV) cell.The device is called a PVOLED.It has a glass / ITO / CuPc / m-MTDATA ∶ V 2 O 5 / NPB / CBP ∶ FIrpic ∶ DCJTB / BPhen / LiF / Al / P3HT∶ PCBM / V 2 O 5 / Al structure.The power recycling efficiency of 10.133% is achieved under the WOLED of PVOLED operated at 9 V and at a brightness of 2 110 cd / m 2,when the conversion efficiency of OPV is 2.3%.We have found that the power recycling efficiency is decreased under high brightness and high applied voltage due to an increase input power of WOLED.High efficiency(18.3 cd / A) and high contrast ratio(9.3) were obtained at the device operated at 2 500 cd / m 2 under an ambient illumination of 24 000 lx.Reasonable white light emission with Commission Internationale De L'Eclairage(CIE) color coordinates of(0.32,0.44) at 20 mA / cm 2 and slight color shift occurred in spite of a high current density of 50 mA / cm 2.The proposed PVOLED is highly promising for use in outdoors display applications. 展开更多
关键词 white organic light-emitting diode contrast ratio organic photovoltaic cell PVOLED
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White Organic Light-emitting Diodes with A Sr_2SiO_4:Eu^(3+) Color Conversion Layer
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作者 Meiso Yokoyama 《发光学报》 EI CAS CSCD 北大核心 2013年第6期681-685,共5页
Abstract:Hybrid inorganic/organic white organic light emitting diodes(hybrid-WOLEDs)are fabricated by combi-ning the blue phosphorescent organic light emitting diodes(PHOLEDs)with red Sr2SiO4:Eu3+phosphor spin coateda... Abstract:Hybrid inorganic/organic white organic light emitting diodes(hybrid-WOLEDs)are fabricated by combi-ning the blue phosphorescent organic light emitting diodes(PHOLEDs)with red Sr2SiO4:Eu3+phosphor spin coatedas a color conversion layer(CCL)over the other side of glass substrate on the devices.The basic configuration of thePHOLEDs consists a host material,N,N'-dicarbazolyl-3,5-benzene(mCP)which doped with a blue phosphorescentiridium complexes iridium(Ⅲ)bis[(4,6-di-fluorophenyl)-pyridinato-N-C2'](FIrpic)to produce high efficient blueorganic light emitting diodes.The hybrid-WOLED shows maximum luminous efficiency of 22.1 cd/A,maximumpower efficiency of 11.26 lm/W,external quantum efficiency of 10.2%and CIE coordinates of(0.32,0.34).Mo-reover,the output spectra and CIE coordinates of the hybrid-WOLED have a small shift in different driving currentdensity,which demonstrate good color stability. 展开更多
关键词 white organic light emitting diodeS (WOLEDs) COLOR conversion layer(CCL) SR2 Si04 EU COLOR stability
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Efficient Perovskite Quantum Dots Light-emitting Diodes:Challenges and Optimization 被引量:2
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作者 LI Mengjiao WANG Ye +1 位作者 WANG Yakun LIAO Liangsheng 《发光学报》 北大核心 2025年第3期452-461,共10页
Perovskite quantum dot light-emitting diodes(Pe-QLEDs)have shown immense application potential in display and lighting fields due to their narrow full-width at half maximum(FWHM)and high photoluminescence quantum yiel... Perovskite quantum dot light-emitting diodes(Pe-QLEDs)have shown immense application potential in display and lighting fields due to their narrow full-width at half maximum(FWHM)and high photoluminescence quantum yield(PLQY).Despite significant advancements in their performance,challenges such as defects and ion migration still hinder their long-term stability and operational efficiency.To address these issues,various optimization strategies,including ligand engineering,interface passivation,and self-assembly strategy,are being actively researched.This review focuses on the synthesis methods,challenges and optimization of perovskite quantum dots,which are critical for the commercialization and large-scale production of high-performance and stable Pe-QLEDs. 展开更多
关键词 perovskite quantum dot light-emitting diodes(Pe-QLEDs) PHOTOLUMINESCENCE DEFECTS ion migration
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Growth,leaf anatomy,and photosynthesis of cotton(Gossypium hirsutum L.)seedlings in response to four light-emitting diodes and high pressure sodium lamp 被引量:1
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作者 ZHANG Yichi LIAO Baopeng +3 位作者 LI Fangjun ENEJI AEgrinya DU Mingwei TIAN Xiaoli 《Journal of Cotton Research》 CAS 2024年第1期79-89,共11页
Background Light is a critical factor in plant growth and development,particularly in controlled environments.Light-emitting diodes(LEDs)have become a reliable alternative to conventional high pressure sodium(HSP)lamp... Background Light is a critical factor in plant growth and development,particularly in controlled environments.Light-emitting diodes(LEDs)have become a reliable alternative to conventional high pressure sodium(HSP)lamps because they are more efficient and versatile in light sources.In contrast to well-known specialized LED light spectra for vegetables,the appropriate LED lights for crops such as cotton remain unknown.Results In this growth chamber study,we selected and compared four LED lights with varying percentages(26.44%–68.68%)of red light(R,600–700 nm),combined with other lights,for their effects on growth,leaf anatomy,and photosynthesis of cotton seedlings,using HSP lamp as a control.The total photosynthetic photon flux density(PPFD)was(215±2)μmol·m-2·s-1 for all LEDs and HSP lamp.The results showed significant differences in all tested parameters among lights,and the percentage of far red(FR,701–780 nm)within the range of 3.03%–11.86%was positively correlated with plant growth(characterized by leaf number and area,plant height,stem diameter,and total biomass),palisade layer thickness,photosynthesis rate(Pn),and stomatal conductance(Gs).The ratio of R/FR(4.445–11.497)negatively influenced the growth of cotton seedlings,and blue light(B)suppressed stem elongation but increased palisade cell length,chlorophyll content,and Pn.Conclusion The LED 2 was superior to other LED lights and HSP lamp.It had the highest ratio of FR within the total PPFD(11.86%)and the lowest ratio of R/FR(4.445).LED 2 may therefore be used to replace HPS lamp under controlled environments for the study of cotton at the seedling stage. 展开更多
关键词 Cotton seedling light-emitting diodes BIOMASS Palisade cell PHOTOSYNTHESIS
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Novel Field Emission Organic Light Emitting Diodes with Dynode
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作者 Meiso YOKOYAMA LI Chi-Shing SU Shui-hsiang 《发光学报》 EI CAS CSCD 北大核心 2011年第1期1-6,共6页
This work presents novel field emission organic light emitting diodes(FEOLEDs) with dynode,in which an organic EL light-emitting layer is used instead of an inorganic phosphor thin film in the field emission display(F... This work presents novel field emission organic light emitting diodes(FEOLEDs) with dynode,in which an organic EL light-emitting layer is used instead of an inorganic phosphor thin film in the field emission display(FED).The proposed FEOLEDs introduce field emission electrons into organic light emitting diodes(OLEDs),which exhibit a higher luminous efficiency than conventional OLED.The field emission electrons emitted from the carbon nanotubes(CNTs) cathode and to be amplified by impact the dynode in vacuum.These field emission electrons are injected into the multi-layer organic materials of OLED to increase the electron density.Additionally,the proposed FEOLED increase the luminance of OLED from 10 820 cd/m2 to 24 782 cd/m2 by raising the current density of OLED from an external electron source.The role of FEOLED is to add the quantity of electrons-holes pairs in OLED,which increase the exciton and further increase the luminous efficiency of OLED.Under the same operating current density,the FEOLED exhibits a higher luminous efficiency than that of OLED. 展开更多
关键词 field emission diodes organic light emitting diodes ELECTRONS
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GO-induced effective interconnection layer for all solution-processed tandem quantum dot light-emitting diodes
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作者 JIANG Hao-hong SU Hang +1 位作者 CHEN Li-xiang TAN Xing-wen 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第12期3737-3746,共10页
Compared to conventional quantum dot light-emitting diodes,tandem quantum dot light-emitting diodes(TQLEDs)possess higher device efficiency and more applications in the field of flat panel display and solid-state ligh... Compared to conventional quantum dot light-emitting diodes,tandem quantum dot light-emitting diodes(TQLEDs)possess higher device efficiency and more applications in the field of flat panel display and solid-state lighting in the future.The TQLED is a multilayer structure device which connects two or more light-emitting units by using an interconnection layer(ICL),which plays an extremely important role in the TQLED.Therefore,realizing an effective ICL is the key to obtain high-efficiency TQLEDs.In this work,the p-type materials polys(3,4-ethylenedioxythiophene),poly(styrenesulfonate)(PEDOT:PSS)and the n-type material zinc magnesium oxide(ZnMgO),were used,and an effective hybrid ICL,the PEDOT:PSS-GO/ZnMgO,was obtained by doping graphene oxide(GO)into PEDOT:PSS.The effect of GO additive on the ICL was systematically investigated.It exhibits that the GO additive brought the fine charge carrier generation and injection capacity simultaneously.Thus,the all solutionprocessed red TQLEDs were prepared and characterized for the first time.The maximum luminance of 40877 cd/m^(2) and the highest current efficiency of 19.6 cd/A were achieved,respectively,showing a 21%growth and a 51%increase when compared with those of the reference device without GO.The encouraging results suggest that our investigation paves the way for efficient all solution-processed TQLEDs. 展开更多
关键词 tandem quantum dot light-emitting diodes all solution-processed interconnection layer graphene oxide current efficiency
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Ti_(3)C_(2)T_(x) MXene for organic/perovskite optoelectronic devices 被引量:1
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作者 CHEN Ke-fan CAI Ping +3 位作者 PENG Hong-liang XUE Xiao-gang WANG Zhong-min SUN Li-xian 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第12期3935-3958,共24页
MXenes are emerging two-dimensional(2D)nanomaterials composed of transition metal carbides and/or nitrides and possess unique layered structures with abundant surface functional groups,which enable them with excellent... MXenes are emerging two-dimensional(2D)nanomaterials composed of transition metal carbides and/or nitrides and possess unique layered structures with abundant surface functional groups,which enable them with excellent and tunable properties.MXenes films can be solution-processed in polar solvents and are very suitable for optoelectronic device applications.Especially,Ti_(3)C_(2)T_(x) MXene with the clear advantages of facile synthesis,flexible surface controlling,easily tunable work function,high optical transmittance and excellent conductivity shows great potential for applications in organic/perovskite optoelectronic devices.Therefore,this review briefly introduces the mainstream synthesis methods,optical and electrical properties of MXenes,and comprehensively summarizes the versatile applications of Ti_(3)C_(2)T_(x) MXene in different functional layers(electrode,interface layer and active layer)of organic/perovskite optoelectronic devices including solar cells and light-emitting diodes.Finally,the current application characteristics and the future possibilities of MXenes in organic/perovskite optoelectronic devices are concluded and discussed. 展开更多
关键词 Ti_(3)C_(2)T_(x)MXene organic/perovskite solar cells organic/perovskite light-emitting diodes ELECTRODE interface layer active layer
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Novel Bipolar Hosts for Solution-processable Green Phosphorescent OLEDs Based on Tetrasubstituted Carbazole Derivatives
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作者 HUANG Hong ZHANG Youming +2 位作者 HUA Tao LI Nengquan XIE Guohua 《发光学报》 北大核心 2025年第11期1971-1979,共9页
Two tetrasubstituted carbazole derivatives TBICz and TOXDCz have been designed and synthesized,which possess the twist skeletons and exhibit excellent thermal and morphological stabilities.Utilizing these novel compou... Two tetrasubstituted carbazole derivatives TBICz and TOXDCz have been designed and synthesized,which possess the twist skeletons and exhibit excellent thermal and morphological stabilities.Utilizing these novel compounds as host material,high efficiency solution-processed green phosphorescent organic light-emitting diodes(PhOLEDs)have been achieved.The high triplet energies of TBICz and TOXDCz ensure efficient energy transfer from the host to the phosphor and triplet exciton confinement on the phosphor.Solution-processable green phospho⁃rescent devices employing Ir(ppy)3 as guest and the two tetrasubstituted carbazole derivatives as hosts exhibit high ef⁃ficiencies.The best EL performance is achieved for the TBICz-based device,with a maximum current efficiency of 27.3 cd/A,a maximum power efficiency of 15.9 lm/W,and a maximum external quantum efficiency of 7.8%,which provides more host material options for solution-processed OLEDs. 展开更多
关键词 tetrasubstituted carbazole derivatives green phosphorescent organic light-emitting diodes solution-pro⁃cessed bipolar host
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A series of iridium(Ⅲ)complexes with fluorophenyl isoquinoline ligand and low-efficiency roll-off properties:A density functional theory study
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作者 QIN Zhengkun PAN Zicong +2 位作者 TIAN Hui ZHANG Wanyi SONG Mingxing 《无机化学学报》 北大核心 2025年第6期1235-1244,共10页
We have examined the theoretical implications of combining two main and three auxiliary ligands to form several Ir(Ⅲ)complexes featuring a transition metal as their core atom to identify some appropriate organic ligh... We have examined the theoretical implications of combining two main and three auxiliary ligands to form several Ir(Ⅲ)complexes featuring a transition metal as their core atom to identify some appropriate organic lightemitting diode(OLED)materials.By utilizing electronic structure,frontier molecular orbitals,minimum single-line absorption,triplet excited states,and emission spectral data derived from the density functional theory,the usefulness of these Ir(Ⅲ)complexes,including(piq)_(2)Ir(acac),(piq)_(2)Ir(tmd),(piq)_(2)Ir(tpip),(fpiq)_(2)Ir(acac),(fpiq)_(2)Ir(tmd),and(fpiq)_(2)Ir(tpip),in OLEDs was examined,where piq=1-phenylisoquinoline,fpiq=1-(4-fluorophenyl)isoquinoline,acac=(3Z)-4-hydroxypent-3-en-2-one,tmd=(4Z)-5-hydroxy-2,2,6,6-tetramethylhept-4-en-3-one,and tpip=tetraphenylimido-diphosphonate.These complexes all have low-efficiency roll-off properties,especially(fpiq)_(2)Ir(tpip).Some researchers have successfully synthesized complexes extremely similar to(piq)_(2)Ir(acac)through the Suzuki-Miyaura coupling reaction. 展开更多
关键词 density functional theory organic light-emitting diodes luminescent materials Ir(Ⅲ)complexes
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澄清剂对OLED基板玻璃澄清效果的影响
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作者 田英良 李志峰 赵志永 《硅酸盐通报》 北大核心 2025年第9期3411-3418,3425,共9页
OLED基板玻璃生产过程中对玻璃质量要求较高,其中配合料的熔化澄清过程尤为关键。本研究采用高温视像技术对配合料熔化和玻璃液澄清过程进行原位观察,探究了二氧化锡、三氧化二锑和硫酸钡三种澄清剂及其添加量对OLED基板玻璃液澄清效果... OLED基板玻璃生产过程中对玻璃质量要求较高,其中配合料的熔化澄清过程尤为关键。本研究采用高温视像技术对配合料熔化和玻璃液澄清过程进行原位观察,探究了二氧化锡、三氧化二锑和硫酸钡三种澄清剂及其添加量对OLED基板玻璃液澄清效果的影响,通过图像分析法对保温4 h后玻璃液中剩余气泡数量及平均直径进行定量分析。结果表明,二氧化锡的澄清效果优于三氧化二锑和硫酸钡,当二氧化锡添加量为0.5%(质量分数)时,澄清效果最佳,剩余气泡数仅为22个。 展开更多
关键词 有机发光二极管 基板玻璃 澄清剂 气泡 高温视像(HTO)
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碱土金属氧化物对OLED基板玻璃高温熔体性能影响研究
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作者 田英良 王忠宇 +1 位作者 李志峰 赵志永 《硅酸盐通报》 北大核心 2025年第10期3826-3832,共7页
高温熔体特性不仅影响有机发光二极管(OLED)基板玻璃的熔化与制备,还影响OLED器件的性能和使用寿命。本文以无碱铝硼硅酸盐玻璃作为OLED基板玻璃研究对象,系统探究SrO/MgO摩尔比对OLED基板玻璃高温熔体特性(高温黏度、高温电阻率、表面... 高温熔体特性不仅影响有机发光二极管(OLED)基板玻璃的熔化与制备,还影响OLED器件的性能和使用寿命。本文以无碱铝硼硅酸盐玻璃作为OLED基板玻璃研究对象,系统探究SrO/MgO摩尔比对OLED基板玻璃高温熔体特性(高温黏度、高温电阻率、表面张力)的影响。结果表明:随着SrO/MgO摩尔比增大,玻璃熔体高温黏度呈非线性变化,在SrO/MgO摩尔比为3.31时,高温黏度达到极大值;1 600℃下,熔体高温电阻率平均提高32.22%,熔体表面张力平均下降2.47%。本研究为优化OLED基板玻璃的关键工艺性能提供了科学依据,对工业化生产制造具有重要指导意义。 展开更多
关键词 有机发光二极管 基板玻璃 高温黏度 高温电阻率 表面张力
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多重共振TADF分子的设计策略
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作者 张泽华 于海涛 祁彦宇 《物理化学学报》 北大核心 2025年第1期38-57,共20页
自首例多重共振热激活延迟荧光(Multiple resonance thermal activation delayed fluorescence,MR-TADF)分子报道至今,其表现出的窄带发射、高发光量子效率等特性在有机电子学,尤其是有机发光二极管(Organic light-emitting diode,OLED... 自首例多重共振热激活延迟荧光(Multiple resonance thermal activation delayed fluorescence,MR-TADF)分子报道至今,其表现出的窄带发射、高发光量子效率等特性在有机电子学,尤其是有机发光二极管(Organic light-emitting diode,OLED)等领域引发了持续的研究热度,迅速成为重点研究对象,并涌现出了众多性能出色的分子和高性能器件。以MR-TADF分子为发光层的器件不断刷新人们对OLED的认知,其中一些采用了超荧光技术所制备的器件性能代表了当今某些光色领域OLED性能的最高值。随着人们对超高分辨率显示器需求的与日俱增,国际电信联盟(ITU)宣布了下一代色域标准,即BT.2020。此标准建立了最宽的显示色域标准,要求单色的原色波长为467、532和630 nm,这个色域非常宽。同时,在如此之宽的色域上实现高分辨率的显示,对器件基元色纯度的要求达到了可谓史无前例的严格。因此,它为显示技术树立了一个具有极大挑战难度的色纯度目标。鉴于以往传统荧光材料难以担当此攻关重任,故而BT.2020的出现给予了MR-TADF分子新的发展机遇,并在很大程度上使得该领域愈发火热起来。近年来,随着大量的研究与实践,MR-TADF分子家族得到了飞速的发展,然而大家讨论和归纳的重点基本都集中在领域整体的发展方面,专门针对分子设计策略所展开的讨论和总结依旧较少,不足以为刚涉足该领域的科研人员提供足够的参考。因此,本文从X-π-X原则,快反向系间窜越过程,窄带发射与高振子强度等方面,阐述了近三年来所报道的MR-TADF分子的设计思路,并对未来可能的设计方向进行了展望,例如将一些不同于传统MR-TADF分子的结构引入这一领域。最后,对今后MR-TADF领域的发展和产业化提出建议。 展开更多
关键词 多重共振热激活延迟荧光 有机发光二极管 有机光电功能材料 电致发光 荧光
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OLED基板玻璃生产中铂金通道技术发展研究进展
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作者 支嘉垚 何峰 +2 位作者 赵志龙 田英良 赵志永 《硅酸盐通报》 北大核心 2025年第10期3814-3825,共12页
随着智能终端的迭代进步,有机发光二极管(OLED)显示呈大尺寸化、柔性化的发展趋势,这一发展趋势不仅推动OLED基板玻璃向更大尺寸、超薄化及柔性可折叠等方向突破,还促进其核心制造装备--铂金通道技术的革新。铂金通道作为熔融玻璃澄清... 随着智能终端的迭代进步,有机发光二极管(OLED)显示呈大尺寸化、柔性化的发展趋势,这一发展趋势不仅推动OLED基板玻璃向更大尺寸、超薄化及柔性可折叠等方向突破,还促进其核心制造装备--铂金通道技术的革新。铂金通道作为熔融玻璃澄清、均化的关键装备,对OLED基板玻璃的良率与性能的提升起到核心作用。经相关文献资料查阅,本文综合评述了OLED基板玻璃发展历程、铂金通道技术研究现状,重点对铂金通道的结构形式、工艺特点进行对比总结,分析了铂金通道的未来发展方向,为OLED基板玻璃生产中铂金通道技术的发展、结构的改进提供参考。 展开更多
关键词 铂金通道 结构 澄清和均化 超宽幅有机发光二极管显示 基板玻璃
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基于激发态分子内质子转移橙光热激子材料的OLED器件及性质研究
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作者 沈可 侯伟 +2 位作者 李毅杰 刘宇建 钱妍 《发光学报》 北大核心 2025年第11期2046-2054,共9页
开发了一种具有热激子性质的激发态分子内质子转移(Excited-state intramolecular proton transfer,ESIPT)橙光材料HBT-TPA,该材料以2-(2'-羟基苯基)苯并噻唑(HBT)作为ESIPT单元,修饰以强给电子基团三苯胺(TPA),赋予材料一定的电荷... 开发了一种具有热激子性质的激发态分子内质子转移(Excited-state intramolecular proton transfer,ESIPT)橙光材料HBT-TPA,该材料以2-(2'-羟基苯基)苯并噻唑(HBT)作为ESIPT单元,修饰以强给电子基团三苯胺(TPA),赋予材料一定的电荷转移特性,使分子的醇式和酮式异构体激发态均呈现出混合局域电荷转移态(Hybridized local and charge transfer state,HLCT)性质。以HBT-TPA为发光材料制备的OLED器件呈现出橙光发射,其电致光谱的发光峰位于576 nm,对应的国际发光委员会(Commission Internationale de l'Eclairage,CIE)色坐标为(0.5007±0.0016,0.4883±0.0008)。器件的最大外量子效率及最大电流效率分别为2.0%和5.0cd/A,并获得了29.3%~43.9%的激子利用率。器件中较为高效的激子利用率是利用ESIPT发光材料中的酮式异构体通过高能级反向系间窜越(High-lying reverse intersystem crossing,hRISC)的热激子机制来实现的。 展开更多
关键词 有机电致发光二极管 激发态分子内质子转移 热激子 反向系间窜越
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两种吡啶类中性铱磷光配合的合成、结构表征及光物理性能的影响 被引量:1
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作者 晏彩先 黄光英 +2 位作者 张柯 侯文明 常桥稳 《功能材料》 北大核心 2025年第3期3202-3207,3213,共7页
选用2-苯基吡啶(ppy)作为主配体,分别以2,6-二甲基-3,5-庚二酮(tmacac)和2,2,6,6-四甲基-3,5-庚二酮(dmacac)为辅助配体,设计合成出两种中性铱(Ⅲ)配合物Ir(ppy)_(2)(dmacac)和Ir(ppy)2(tmacac)。通过元素分析、红外光谱、核磁共振谱、... 选用2-苯基吡啶(ppy)作为主配体,分别以2,6-二甲基-3,5-庚二酮(tmacac)和2,2,6,6-四甲基-3,5-庚二酮(dmacac)为辅助配体,设计合成出两种中性铱(Ⅲ)配合物Ir(ppy)_(2)(dmacac)和Ir(ppy)2(tmacac)。通过元素分析、红外光谱、核磁共振谱、质谱和X射线单晶衍射测试了它们的化学结构和组成,通过紫外可见光谱和光致发光光谱研究了它们的光物理性能,并同时对比分析了配合物的热稳定性和电化学性质。结果表明,它们均具有较好的热稳定性,其最大发射波长为523和533 nm,在CH_(2)Cl_(2)中发光颜色由绿色到黄绿色的变化。 展开更多
关键词 2-苯基吡啶 中性铱配合物 有机发光二极管 晶体结构 光物理性能
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(2,2'-联吡啶)双(2-苯基吡啶)铱(Ⅲ)六氟磷酸盐的合成及表征
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作者 姚默鎏昕 黄光英 +2 位作者 王文轩 刘金辉 李子璇 《贵金属》 北大核心 2025年第S1期198-203,共6页
本文合成了一种在有机电致发光领域具有重要应用前景的铱配合物(2,2'-联吡啶)双(2-苯基吡啶)铱(Ⅲ)六氟磷酸盐[Ir(ppy)_(2)(bpy)PF_(6)],并对其结构和性能进行了详细表征。通过将2,2'-联吡啶、二(2-苯基吡啶)氯化铱二聚体与六... 本文合成了一种在有机电致发光领域具有重要应用前景的铱配合物(2,2'-联吡啶)双(2-苯基吡啶)铱(Ⅲ)六氟磷酸盐[Ir(ppy)_(2)(bpy)PF_(6)],并对其结构和性能进行了详细表征。通过将2,2'-联吡啶、二(2-苯基吡啶)氯化铱二聚体与六氟磷酸钾反应,以93.04%的高收率合成了Ir(ppy)_(2)(bpy)PF_(6)。采用^(1)H NMR、^(13)C NMR、元素分析、质谱及红外光谱等多种表征手段对该铱配合物的结构进行了确认,结果均与预期配合物一致。晶体结构分析显示该配合物属于正交晶系,空间群为Pbcm。在光物理性能方面,紫外-可见吸收光谱和荧光光谱分析表明,该铱配合物在577 nm处展现出优异的黄橙色磷光发射,适用于有机发光二极管器件。该配合物在OLED与PLED领域展现出广阔应用潜力,未来可进一步拓展其应用场景并优化其性能。 展开更多
关键词 有机发光二极管(OLED) 铱配合物 聚合物发光二极管(PLED) 合成 光物理性能
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基于SiO_(2)纳米球与荧光粉色转换层的高质量白光OLED器件
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作者 陈飞乐 韩长峰 +5 位作者 肖玉琦 鲁云生 胡烈宏 刘彦峰 潘君友 章婷 《发光学报》 北大核心 2025年第9期1703-1713,共11页
白光有机发光二极管(WOLED)凭借其轻薄、柔性和面光源特性,在固态照明与显示领域备受瞩目。但WOLED仍面临着寿命不足、色坐标漂移、功率效率不高等挑战。为了解决这些挑战,本研究构建了蓝光OLED激发黄和红双色荧光粉薄膜的复合结构,通... 白光有机发光二极管(WOLED)凭借其轻薄、柔性和面光源特性,在固态照明与显示领域备受瞩目。但WOLED仍面临着寿命不足、色坐标漂移、功率效率不高等挑战。为了解决这些挑战,本研究构建了蓝光OLED激发黄和红双色荧光粉薄膜的复合结构,通过全光谱匹配筛选荧光粉,并优化荧光粉薄膜的光谱特性,成功实现了高显色指数(CRI)92.5的白光器件。并且通过引入SiO_(2)纳米球作为分散介质和散射介质,一方面有效抑制荧光粉团聚引发的Förster共振能量转移(FRET)效应,同时又提高了蓝光OLED的出光效率,使器件功率效率从47 lm/W提升至58 lm/W,相对增幅达23%。本方案兼具OLED的传统优势与荧光粉的卓越稳定性,简化了工艺流程并显著降低生产成本。实验表明,器件在4~10 V电压范围内色坐标偏移ΔCIE<0.008,在博物馆照明、医疗手术灯等高端场景中展现出重大应用潜力。该研究为新一代WOLED的产业化提供了可扩展的技术范式,对推动健康照明与柔性显示技术发展具有实际应用价值。 展开更多
关键词 白光 有机发光二极管 色坐标 荧光粉
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金(Ⅲ)配合物发光材料的研究进展
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作者 易源海 毛茂 +1 位作者 彭嘉欢 李慧杨 《材料导报》 北大核心 2025年第18期153-165,共13页
金属配合物发光材料凭借其高效的单重态与三重态激子利用能力,已成为有机发光二极管(OLED)器件性能提升不可或缺的核心元素,备受学术界与产业界的青睐。目前,基于铱(Ⅲ)和铂(Ⅱ)的磷光配合物在OLED中已得到广泛应用,但这两类金属的稀缺... 金属配合物发光材料凭借其高效的单重态与三重态激子利用能力,已成为有机发光二极管(OLED)器件性能提升不可或缺的核心元素,备受学术界与产业界的青睐。目前,基于铱(Ⅲ)和铂(Ⅱ)的磷光配合物在OLED中已得到广泛应用,但这两类金属的稀缺性在一定程度上限制了有机显示产业的可持续发展。在此背景下,具有显著自旋-轨道耦合效应的金(Ⅲ)配合物发光材料,通过灵活的配体设计策略,能够展现出磷光或热活化延迟荧光(TADF)的发光特性,为高效OLED的发展开辟了新途径。通过优化分子结构和器件制备工艺,金(Ⅲ)配合物发光材料已展现出优异的发光性能和良好的器件稳定性。本文综述了金(Ⅲ)配合物发光材料的研究进展,围绕磷光与TADF两种发光机制,深入剖析了金(Ⅲ)配合物的分子结构与发光性能的内在联系,并展望了其未来发展方向,可为相关领域的研究人员提供有价值的参考。 展开更多
关键词 金(Ⅲ)配合物 磷光 热活化延迟荧光 有机发光二极管 发光材料
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利用叠层结构提高近紫外有机发光二极管的电致发光效率与稳定性
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作者 于宏宇 张宝文 +1 位作者 陈平 张勇 《发光学报》 北大核心 2025年第2期315-325,共11页
在过去十年中,近紫外有机发光二极管(NUV-OLEDs)因其具有近紫外光子发射能力而受到研究者的广泛关注。然而,当器件的电致发光波长降至400 nm以下时,如何提升器件的辐射功率成为技术挑战。本研究采用BCPO和TAZ作为NUV发光材料,制备了单... 在过去十年中,近紫外有机发光二极管(NUV-OLEDs)因其具有近紫外光子发射能力而受到研究者的广泛关注。然而,当器件的电致发光波长降至400 nm以下时,如何提升器件的辐射功率成为技术挑战。本研究采用BCPO和TAZ作为NUV发光材料,制备了单层和叠层NUV-OLEDs,并比较了它们的电致发光性能。结果表明,叠层器件的性能显著优于单层器件。其中,BCPO单层器件的发光峰位波长为384 nm,近紫外光占比56.9%,外量子效率2.91%,辐射功率34.2 mW/cm^(2);而BCPO叠层器件的近紫外光占比提高到60.5%,外量子效率提高到5.73%,辐射功率达到52.8 mW/cm^(2)。TAZ单层器件的发光峰位波长为377 nm,近紫外光占比79.1%,外量子效率3.65%,辐射功率15.7 mW/cm^(2);而TAZ叠层器件的近紫外光占比略增至79.6%,外量子效率提高到7.21%,辐射功率达到29.4 mW/cm^(2)。此外,叠层器件在相同辐射功率下所需电流密度更低,这使得叠层器件能够展现出比单层器件更好的发光稳定性。 展开更多
关键词 有机发光二极管 近紫外光 叠层结构 电荷生成层
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含氮杂环卡宾(NHC)配体的金(Ⅰ)配合物发光材料的研究进展
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作者 易源海 毛茂 +1 位作者 周芷晴 李慧杨 《化工新型材料》 北大核心 2025年第3期53-57,共5页
自有机发光二极管(OLED)诞生以来,科学家一直致力于开发高效的发光材料,力求获得更优越的器件性能。近年来,含有氮杂环卡宾(NHC)的金(Ⅰ)配合物,通过搭配合适的给体单元(如酰胺、炔基、芳基),不仅能够展现出超快的辐射衰减速率,还能实... 自有机发光二极管(OLED)诞生以来,科学家一直致力于开发高效的发光材料,力求获得更优越的器件性能。近年来,含有氮杂环卡宾(NHC)的金(Ⅰ)配合物,通过搭配合适的给体单元(如酰胺、炔基、芳基),不仅能够展现出超快的辐射衰减速率,还能实现接近100%的发光量子产率,被视为发光材料领域的一颗璀璨新星,展现出广阔的应用前景。系统地综述了氮杂环卡宾金(Ⅰ)配合物发光材料的研究进展,通过剖析不同配体基团的选择策略,结合分子设计原理,探讨分子结构与其光电性能之间的内在关联,并进一步分析这些材料在提升OLED性能方面的潜力与应用前景。 展开更多
关键词 发光材料 金(Ⅰ)配合物 有机发光二极管 热活化延迟荧光 氮杂环卡宾
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