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采用有机-无机杂化材料的高效且色度稳定的绿色和白色有机发光器件。

Efficient and chromaticity stable green and white organic light-emitting devices with organic-inorganic hybrid materials.

作者信息

Thanikachalam Venugopal, Seransenguttuvan Balu, Jayabharathi Jayaraman

机构信息

Department of Chemistry, Annamalai University Annamalainagar 608 002 Tamilnadu India

出版信息

RSC Adv. 2020 Jun 3;10(36):21206-21221. doi: 10.1039/d0ra02122a. eCollection 2020 Jun 2.

Abstract

Efficient inverted bottom emissive organic light emitting diodes (IBOLEDs) with tin dioxide and/or Cd-doped SnO nanoparticles as an electron injection layer at the indium tin oxide cathode:electron transport layer interface have been fabricated. The SnO NPs promote electron injection efficiently because their conduction band (-3.6 eV) lies between the work function ( ) of ITO (4.8 eV) and the LUMO of the electron-transporting molecule (-3.32 eV), leading to enhanced efficiency at low voltage. The 2.0% SnO NPs (25 nm) with Ir(ddsi)(acac) emissive material (SnO NPs/ITO) have an enhanced current efficiency ( , cd A) of 52.3/24.3, power efficiency ( , lm W) of 10.9/3.4, external quantum efficiency ( , %) of 16.4/7.5 and luminance (, cd m) of 28 182/1982. A device with a 2.0% Cd-doped SnO layer shows higher (60.6 cd A), (15.4 lm W), (18.3%) and (26 858 cd m) than SnO devices or control devices. White light emission was harvested from a mixture of Cd-SnO NPs and homoleptic blue phosphor Ir(tsi); the combination of blue emission ( = 428 nm) from Ir(tsi) and defect emission from Cd-SnO NPs ( = 568 nm) gives an intense white light with CIE of (0.31, 0.30) and CCT of 6961 K. The white light emission [CIE of (0.34, 0.35) and CCT of 5188 K] from colloid hybrid electrolyte BMIMBF-SnO is also discussed.

摘要

已制备出高效的倒置底部发射有机发光二极管(IBOLED),其在氧化铟锡阴极与电子传输层的界面处采用二氧化锡和/或镉掺杂的二氧化锡纳米颗粒作为电子注入层。二氧化锡纳米颗粒能有效促进电子注入,因为其导带(-3.6 eV)位于氧化铟锡(ITO)的功函数(4.8 eV)和电子传输分子的最低未占分子轨道(LUMO,-3.32 eV)之间,从而在低电压下提高了效率。含有铱(ddsi)(acac)发光材料的2.0%二氧化锡纳米颗粒(25纳米)(二氧化锡纳米颗粒/ITO)的电流效率( ,cd A)提高到了52.3/24.3,功率效率( ,lm W)为10.9/3.4,外量子效率( ,%)为16.4/7.5,亮度( ,cd m)为28182/1982。具有2.0%镉掺杂二氧化锡层的器件比二氧化锡器件或对照器件具有更高的 (60.6 cd A)、 (15.4 lm W)、 (18.3%)和 (26858 cd m)。从镉-二氧化锡纳米颗粒与均配型蓝色磷光体铱(tsi)的混合物中获得了白光发射;铱(tsi)发出的蓝色发射光( = 428纳米)与镉-二氧化锡纳米颗粒的缺陷发射光( = 568纳米)相结合,产生了色坐标为(0.31,0.30)、色温为6961 K的强白光。还讨论了胶体混合电解质BMIMBF-二氧化锡发出的白光发射(色坐标为(0.34,0.35),色温为5188 K)。

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