electroluminescence
英[ɪˌlektrəʊˌluːmɪˈnes(ə)ns]
美[ɪˌlektroˌlʊməˈnesns]
双语例句
- 1. A faint electroluminescence phenomenon has also been observed.
- 试验中已观察到微弱的电致发光。
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- 2. Organic electroluminescence is recently a research hotspot in the world.
- 有机电致发光是近年来国际上的一个研究热点。
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- 3. Organic electroluminescence (OLED) is recently a research highlight in the world.
- 有机电致发光(OLED)是近年来国际上的一个研究热点。
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- 4. Synthesis of electroluminescence combinations containing 1, 3, 4 - oxadiazole and triazine Units.
- 均三嗪基修饰的1,3,4-(口恶)二唑类化合物的合成。
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- 5. The study on Organic electroluminescence devices (OELDs) have become one of the fascinating fields recently.
- 有机电致发光器件是近年来化学家研究的热门课题之一。
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- 6. Electroluminescence of the polysilane is studied by select sandwich's structure and electroluminescence device is made.
- 初步研究了聚硅烷的电致发光,选择三明治的双层结构,制成了电致发光器件。
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- 7. The influences of surface passivation of photoluminescence and electroluminescence properties of porous silicon have been presented.
- 报道多孔硅的表面钝化对其光致发光和电致发光的影响。
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- 8. Up to date, the red light emitting materials used in organic electroluminescence, which are highly required in full color display, remain rare.
- 红色发光材料一直是有机电致发光中较为稀缺的材料,也是电致发光全色显示不可缺少的材料。
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- 9. The invention relates to an organic electroluminescence device, in particular to a luminous layer structure of an organic white light emitting device.
- 本发明为一种有机电致发光器件,尤其涉及一种有机电致白光器件的发光层结构。
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- 10. The organic thin film electroluminescence device with blue green color using new organic material, silicon alkyl derivative (SCS SiH), was fabricated.
- 采用新合成的有机材料硅烷衍生物作为发光物质制备了发蓝、绿光的薄膜电致发光器件。
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- 11. Such displays, which are based on the electroluminescence of organic compounds, are said to be thinner and brighter than LCDs, and offer wider viewing angles.
- 这种基于有机物通电发光原理制造的显示器,被认为比液晶显示器更薄更亮,而且提供更加宽的可视角度。
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- 12. We proposed that, because of the high scatter rate, sulphur vacancy is the main obstacle on the achieve of high brightness blue thin film electroluminescence.
- 提出硫空位的存在是阻碍获得高亮度蓝色薄膜电致发光器件的关键。
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- 13. The luminescence efficiency, life time and stability of organic electroluminescence devices (OELDs) can be improved significantly by modifying the electrodes of OELDs.
- 有机电致发光器件的电极修饰可以提高器件的发光效率、寿命和稳定性。
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- 14. The phenomenon of the blue range electroluminescence of the boron doped diamond thin films is reported, and the several light emission mechanisms on band A are summarized.
- 报道了金刚石薄膜的蓝区电致发光现象,总结了几种有关金刚石薄膜蓝区发光“A”带的发光机理。
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- 15. Dual functions can also be achieved with high emission efficiency by benefiting from the photoconduction of the semiconductor nanocrystal and the electroluminescence of the polymer.
- 同时,利用无机纳米半导体的光导特性,这种复合体系也可以制成光导与电致发光双功能器件,且其发光效率可有较大幅度提高。
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- 16. The luminescence principle, current research situation on electroluminescence devices using rare earth complex as emitter, existing problems and potential applications are outlined.
- 本文对稀土配合物的发光原理、电致发光的研究现状、存在问题及应用前景作了概述。
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- 17. The paper emphasizes on the static driving and displaying technology of the inorganic electroluminescence bar graphic display, based on the simple introduction of its structure and technics.
- 本文在简单介绍了无机电致发光光柱的结构及生产工艺的基础上,对其静态驱动显示技术进行了详细的讨论。
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- 18. Electroluminescence (el) has been widely used as a tool to study the trap character, the charge storage and transport, the structure transformation and molecular motion in insulating polymers.
- 电致发光(EL)是一种研究聚合物中陷阱特性、空间电荷的存贮和输运特性、聚合物的结构转变和分子运动的重要工具,现已获得广泛应用。
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- 19. Rare earth complex materials have been widely used in organic electroluminescence devices because of their high photoluminescence quantum efficiencies, narrow emission spectra and high color purity.
- 具有窄带发射的稀土配合物发光材料,因其具有高荧光量子效率,高色纯度等特点,被用于制备有机电致发光器件。
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- 20. Rare earth complex materials have been widely used in organic electroluminescence devices because of their high photoluminescence quantum efficiencies, narrow emission spectra and high color purity.
- 具有窄带发射的稀土配合物发光材料,因其具有高荧光量子效率,高色纯度等特点,被用于制备有机电致发光器件。
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