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发光光谱的英文

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"发光光谱"怎么读用"发光光谱"造句

英文翻译手机手机版

  • liminescent spectrum
  • luminescence spectrum
  • luminescent spectrum
  • spectrum

例句与用法

  • Effect of the cu content on the photoluminescence spectra from zns : cu electroluminescent material
    电致发光材料光致发光光谱的影响
  • Resonant raman scattering and photoluminescence emissions from above bandgap levels in dilute gaasn alloys
    材料的共振喇曼散射及其带边以上的光致发光光谱
  • Test method for determination of impurity concentrations in silicon crystal by photoluminescence spectroscopy
    用光致发光光谱法测定硅晶体中杂质浓度的试验方法
  • Excitation at 493nm , the emission peaks of pff5 in chloroform solution is 540nm and 580nm . using pff5 as the emitter , an efficiency single layer led has been fabricated . 3
    利用pff5作为发射层,研制单层高效的聚合物发光二极管,研究器件的伏安特性、电压亮度特性和电致发光光谱
  • By detecting < wp = 6 > the pl spectra under low temperature , a thermal activation process could be seen . and the possible mechanism of p band formation is discussed
    通过测量zno微米柱在不同温度下的发光光谱,发现激子-激子相互碰撞产生的热激活过程,并讨论了激子激子相互作用的机理。
  • Xrd patterns , excitation spectra , emission spectra , photo - stimulated emission spectra , photo - stimulated emission decay curves and thermo - luminescence spectra have been measured on the samples
    对样品进行了x射线衍射分析( xrd ) 、激发光谱、发射光谱、光激励发光光谱、光激励发光衰减和热释光谱测定。
  • With strong fluorescence lppp showed a broad pl and el emission with a maximum at 560nm and was regarded as a white light emitter with a strong blue component , thus allowing tunability over the full visible region . the enhanced light - emitting devices were fabricated . microcavity effects were observed both in el and pl
    荧光效率高,并具有从紫外到近红外十分宽阔的光致和电致发光光谱,最大峰值在560nm左右,是一种具有较强蓝光成分的白光发光材料,允许在整个可见光范围内进行调谐发光,可作为高稳定的发光材料。
  • The reason to cause this phenomenon is due to the change of electric field in the blue oled to induce the probality of the carrier shifted and the hole - electron recombination zone changed , which was a possible alternative to achieve color display . 3 ) device with the structure of ito / npb / adn : balq3 / alq3 / mg : ag was fabricated . when the balq3 dopant concentration was about 25 mol % , a high performance devcie with luminous efficiency of 1 . 0 lm / w , the peak of emission spectrum at 440 nm , the cie coordinate at ( 0 . 18 , 0 . 15 ) , and half lifetime of unencapsulated device about 950 hrs was achieved
    导致本现象的原因是由于各有机层电场强度的变化影响了空穴和电子的隧穿几率,从而导致载流子的复合区域发生改变而发出不同颜色的光; 3 )制备了结构为ito / npb / adn : balq3 / alq3 / mg : ag的蓝光oled ,空穴阻挡材料balq3的掺入显著影响了oled的光电性能,当balq3的掺杂浓度为25mol %时, oled的发光效率为1 . 0lm / w ,发光光谱的峰值为440nm ,色纯度为( 0 . 18 , 0 . 15 ) ,未封装器件的半衰期达到了950小时; 4 )在蓝光材料adn中掺杂npb 、 balq3和tbp三种材料时,不仅改善了器件的发光亮度和色纯度,而且提高了器件的发光效率和寿命。
  • The influence of y _ 2o _ 2s : eu phosphors fluorescent spectra , chroma and luminescence intensity is systematically studied when different concentration of europium is adulterated into different phosphors by means of xrd , fluorescent spectra analysis , time - basing spectra analysis , long - persistent fluorescent spectra analysis and so on ; the influence on y2c > 2s : eu phosphors structure , luminescence intensity and long - persistent curve is investigated when different concentration of mg24 " > ti4 " 1 " is adulterated into different phosphors , finding the most suited concentration of mg2 " * ti4 " 1 " ; base on the suited concentration of mg2 + > ti4 + , the influence rule on phosphors luminescence intensity and long - persistent curve with changing of eu + concentration is also studies . at the same time , by using rare - earths metals adulteration and theory of chroma synthesis , the possibility of sensitized buildup of phosphors and the synthesis of different color long - persistent phosphors is also researched
    应用x射线粉末衍射( xrd ) 、荧光光谱、时间分辨光谱及磷光体长余辉寿命测试等综合实验手段,较系统地研究了掺杂eu对荧光体y2o2s : eu荧光体的发光光谱、色度和发光强度的影响;研究了不同mg , ti含量对磷光体基质结构性能、发光强度与余辉曲线的影响及其适宜的掺杂浓度;基此,研究了在给定mg , ti含量时,不同eu掺量对磷光体发光强度和余辉的影响规律;从稀土掺杂和色度合成原理分别探讨了eu的发光敏化增强和制备不同光色长余辉磷光体的可能性。
  • In the third chapter , the influence of current density , solution concentration , erosion time and aging in ambient air on the pl spectra of ps suggests that peak would blue shift with current density increasing , and with erosion time and aging time prolonging ; with the increasing of solution concentration , peaks would red shift when solution concentration less than 1 : 1 but blue shift when solution concentration greater than 1 : 1 . above phenomena can be explained by quantum confinement and light center model , but do not deny the action of si - h bonding and defect on the surface in the process of photoluminescence . at present , radiation mechanism is still one of the primary problems in the study of ps
    在第z三章中;通过对比,分析了电流密度、阳极化时间、溶液浓度以及自i然氧化时间对多孔硅光致发光光谱的影响,认为在一定的范围内,多i孔硅的发光峰位会随电流密度的增大而蓝移,要获得较强的发光,需z要选择合适的电流密度;随着腐蚀时间的延长,多孔硅的发光峰位会i发生蓝移;当f酸的浓度较小q : 1 )时,峰位随浓度的增大表现为向i低能移动;而当f酸的浓度较大河山时,峰位随浓度的增大则表现z为移向高能;多孔硅在空气中自然氧化;其发光峰位发生蓝移,而强i度随放置时间的延长而降低。
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