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rubrene的意思,rubrene的音标读音解释

2016-05-23 23:57

rubrene翻译

红荧烯

音标读音

英式:[rʌb'ri:n]美式:[rʌb'ri:n]

基本意思

[化] 红荧烯

形近的词

subrent gabrene

变形

例句

  1. Luminescent Properties of White Organic Light-Emitting Devices Based on Rubrene Ultrathin Layer
    白光有机电致发光器件中Rubrene超薄层的发光性能
  2. Properties of Energy Transfer in Two Host Materials Doped with Ir ( ppy)_3 and Rubrene
    两种主体材料中Ir(ppy)3和Rubrene的能量传递特性
  3. As a result, it's a crucial issue to get the comprehensive knowledge about the charge transport properties of rubrene thin films.
    因此,对红荧烯薄膜的电荷输运性质有全面的认识是关键所在。
  4. Study of anode modification and bias voltage treatment on organic solar cells with rubrene/ c_ ( 60) heterojunctions
    Rubrene/C(60)结有机太阳能电池的阳极改性及偏压处理研究
  5. The blue organic light-emitting devices of the maximum luminance doped with the fluorescence matter rubrene
    掺杂荧光染料的高亮度有机蓝光电致发光器件
  6. Then the thicknesses of the active layer were optimized.
    然后再优化Rubrene、C70活性层的厚度。
  7. This experiment using the ultra-high vacuum low temperature scanning tunneling microscope to measure the self-assembled structures of rubrene on the surface of Pb island and the magnetic nanometer lattice of Co on the surface of Bi ( 111).
    本实验利用了超高真空低温扫描隧道显微镜,测量了红荧烯在铅岛表面的自组装结构和Co在Bi表面的磁性纳米点阵。
  8. It is believed that through the analysis in the rubrene ( such organic aromatic) material, the characteristic of the material itself is easy to produce another physical mechanism, namely: singlet exciton fission ( STT) mechanism.
    经过分析人们认为,在红荧烯这类有机芳香烃材料中,其材料本身的特性容易产生另一种物理机制,即:单重态激子裂变(singletexcitonfission,STT)机制。
  9. Five types of white OLED devices based on Zn ( BTZ)_2: rubrene emitting layer were fabricated and applied to LCD backlighting.
    制备了以Zn(BTZ)2∶rubrene为发光层的5种白色有机电致发光器件,并将其应用于液晶显示背光源。
  10. In this thesis, my research is focused on the colloidal crystal templates ( CCTs) method to prepare three-dimensional ordered macroporous ( 3DOM) structural organic semiconductor molecular, including fullerene and rubrene.
    本论文中,重点研究了利用胶体晶体模板法制备三维有序大孔有机半导体材料。
  11. The simulated results reveal that surface binding energy and structural order of SAMs, exhibits a significant effect on rubrene growth and crystallinity.
    模拟结果表明,基底的表面结合能与自组装单层膜结构在红荧烯分子生长结晶过程中产生了非常重要的影响。
  12. In combination of MD simulation and Density functional theory ( DFT-D) results, we found that the typical conjugated structures of rubrene molecules were formed during the deposition process.
    结合密度泛函理论计算结果,我们发现在沉积过程中,红荧烯分子以近乎直立于基底的状态形成了典型的π-π共轭结构,这种结构有力于电荷的迁移。
  13. It is found that Alq is host emitter when dopant concentration is low, and a discrete level is introduced by doping Rubrene ( guest emitter) in Alq energy gap.
    结果表明:在低掺杂时,主发光体是Alq,掺入的Rubrene作为客发光体只是在Alq带隙中引入了分立能级;
  14. The half lifetime of yellow OLEDs under an initial luminance of 2000 cd/ m2 with rubrene as an emitter reached 245 h using three pairs of MgF2/ ZnS layers.
    采用三对叠层氟化镁和硫化锌复合薄膜封装的黄光有机电致发光器件在初始亮度为2000cd/m2的条件下半衰寿命的可达到245小时。
  15. In order to fabricate rubrene thin films with high crystalline quality, several special methods such as low pressure hot wall deposition, deposition in situ vacuum annealing, and ramping substrate temperature slowly have been designed.
    为了获得高质量的红荧烯晶体薄膜,一些特殊的方法,比如低压热墙沉积法,真空退火法,逐渐升高基底温度等方法也相应而生。
  16. As compared with conventional doped device with organic dye as dopant in ETL, Rubrene as dopant in the present experiment is doped into an active layer which is formed by uniformly mutual doping of Alq as material of ETL and NPB as material of HTL.
    与常规的在电子传输层中掺杂有机染料的掺杂器件相比,本实验是在Alq(电子传输层材料)与NPB(空穴传输层材料)形成的均匀互掺有源层中,再掺杂染料Rubrene。
  17. On the mixed system, the rubrene molecules preferentially deposit along the step edge of alkyl chain SAMs induced by the binding energy difference.
    复合体系中,在不同区域结合能差异的驱使下,红荧烯分子优先沉积在自组装单层膜与Si02基底交界的台阶边缘处。
  18. The excitation mechanism of PDT in Cell-APR may be considered to be both energy transfer from rubrene and PDT directly carrier trapping.
    该器件中可能的激发机制,既存在由Rubrene向PDT的能量转移,也存在PDT直接捕获载流子。
  19. A Kind of Novel White Organic Electroluminescence Device Based on Zn ( BTZ)_2 ∶ Rubrene Emitting Layer for LCD Backlighting
    以Zn(BTZ)2∶rubrene为发光层的一种新型白色有机电致发光液晶显示背光源

百科解释

网络意思

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