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1.
有机薄膜的光致发光和电致发光   总被引:6,自引:3,他引:3  
制备了以Alq3为发光物质的有机薄膜电致发光器件,得到了30V直流电压下100cd/m2的绿色发光.探讨了Alq3薄膜的光致发光和器件的电致发光机理.  相似文献   

2.
报道了金刚石薄膜电致发光现象.为进一步提高金刚石薄膜蓝区电致发光强度,分别采用了硼氮双掺杂法和稀土掺杂法制备出了金刚石薄膜电致发光器件,并采用低电容率的本征金刚石薄膜和氧化硅薄膜为绝缘层的夹层式器件结构.研究结果显示:采用稀土铈掺杂可以有效地提高金刚石薄膜蓝区电致发光强度,其蓝区最大电致发光强度可达3.5 cd/m2;采用低电容率绝缘膜的夹层式结构,能有效地提高电子进入发光层时的能量,并有助于提高器件发光的稳定性和发光寿命.  相似文献   

3.
林圳旭  林泽文  张毅  宋超  郭艳青  王祥  黄新堂  黄锐 《物理学报》2014,63(3):37801-037801
利用等离子体增强化学气相沉积法制备了镶嵌于氮化硅的高密度纳米硅薄膜,并以此作为发光有源层构建基于p-Si/氮化硅基发光层/AZO结构发光二极管,在室温下观察到了电致可见发光.在此基础上,在器件p-Si空穴注入层与氮化硅基发光层之间加入纳米硅薄层作为空穴阻挡层,研究器件电致发光性质,实验结果表明器件的发光强度显著增强,并且发光效率较无纳米硅阻挡层的发光器件提高了80%以上.  相似文献   

4.
纳米ZnO薄膜对有机电致发光器件性能的影响   总被引:2,自引:2,他引:0       下载免费PDF全文
由于有机电致发光器件(Organic light-emitting devices,OLEDs)的主动发光、高亮度等优点,在显示和照明领域有极大的应用前景。报道了纳米ZnO薄膜对这种发光器件性能的影响。在普通有机电致发光器件空穴传输层和发光层之间直接蒸镀一层纳米ZnO薄膜,当纳米ZnO薄膜的厚度为1nm时,器件的电流效率可达3.26cd/A,是没有纳米ZnO薄膜同类器件的1.24倍。适当厚度的纳米ZnO薄膜降低了发光层空穴的浓度,提高了电子和空穴的平衡,从而提高了器件的效率。  相似文献   

5.
为提升硅衬底氮化镓基LED(发光二极管)器件的光电性能和出光效率,本文提出了一种利用背后工艺实现的悬空薄膜蓝光LED器件。结合光刻工艺、深反应离子刻蚀和电感耦合等离子体反应离子刻蚀的背后工艺,制备了发光区域和大部分正负电极区域的硅衬底完全掏空,并减薄大部分氮化镓外延层的悬空薄膜LED器件。对悬空薄膜LED器件进行三维形貌表征,发现LED悬空薄膜表面平坦,变形程度小,证明背后工艺很好地解决了氮化镓外延层和硅衬底之间由于应力释放造成的薄膜变形问题。表征了LED器件的电流电压曲线和电致发光光谱等光电特性,对不同结构、不同发光区域尺寸的LED器件进行对比,发现悬空薄膜LED器件的光电性能和出光效率比普通LED器件更优越,且发光区尺寸变化对LED器件性能的影响更明显。在15 V驱动电压下,与普通LED器件相比,发光区直径为80μm的悬空LED器件的电流从4.3 mA提升至23.9 mA。在3 mA电流的驱动下,峰值光强提升了约5倍,而发光区直径为120μm的悬空器件与发光区直径为80μm的悬空器件相比,出光效率提升更为明显。本研究为发展高性能悬空氮化物薄膜LED器件提供了更多可能性。  相似文献   

6.
徐韵  李云鹏  金璐  马向阳  杨德仁 《物理学报》2013,62(8):84207-084207
分别采用直流反应溅射法和脉冲激光沉积法在硅衬底上沉积ZnO薄膜, 用X射线衍射、扫描电镜、光致发光谱等手段对两种方法沉积的ZnO薄膜的结晶状态、 表面形貌和光致发光等进行了表征. 进一步对比研究了以上述两种方法制备的ZnO薄膜作为发光层的金属-绝缘体-半导体结构器件的电抽运紫外随机激射. 结果表明, 与以溅射法制备的ZnO薄膜作为发光层的器件相比, 以脉冲激光沉积法制备的ZnO薄膜为发光层的器件具有更低的紫外光随机激射阈值电流和更高的输出光功率. 这是由于脉冲激光沉积法制备的ZnO薄膜中的缺陷更少, 从而显著地减少了紫外光在光散射过程中的光损耗. 关键词: 随机激射 ZnO薄膜 脉冲激光沉积 溅射  相似文献   

7.
有机薄膜电致发光器件结构与发光特性的研究   总被引:4,自引:0,他引:4  
李方红  刘旭 《光学学报》1998,18(2):17-222
从有机电致发光薄膜的发光机理出发,通过以Alq薄膜器件、PVK为空穴传输层和Alq为发光层的双层 及PVK掺荧光材料Perylene的双层薄膜器件的研制,从器件的电致姚谱、电流密度-电压特性、亮度-电压特性的曲线的测试结果,计算分析了器件的流明效率、量子效率,并对有机薄膜电致发光器件的结构与发光特性之间的关系进行研究,利用能级理论分析了器件的姚特性随器件的结构不同所具有的规律。实验表明,加入PVK  相似文献   

8.
MgZnO薄膜及其量子阱和超晶格的发光特性   总被引:11,自引:4,他引:7  
MgO和ZnO形成合金MgxZn1-xO的带隙可以在3.3~7.9eV之间变化,在制备紫外波段光电器件方面有着广阔的应用前景.由ZnO和MgZnO交替沉积而成的ZnO/MgxZn1-xO量子阱和超晶格在激光器、光探测器和其他光电器件方面也有潜在的应用价值.回顾最近几年对MgZnO薄膜材料发光特性的研究进展,介绍在不同衬底上用不同方法制备MgZnO合金薄膜的制备技术、发光特性以及发光特性与薄膜中Mg含量的关系;综述近年来在ZnO/MgxZn1-xO超晶格、量子阱研究上的成果,特别介绍了ZnO/MgxZn1-xO对超晶格、量子阱的发光特性、发光机理以及发光特性与势垒层镁含量、器件温度的关系.  相似文献   

9.
作者自1974年研制成功具有双层绝缘结构的AC-EL薄膜器件以来,主要从事ZnS:Mn橙黄色发光器件的研究与试制。由于实际应用的需要,迫切希望能够研制出发其它颜色光的薄膜器件,如民用电器中的彩色显示所必需的三基色发光,或黑自显示中的白色发光。  相似文献   

10.
氧化锌纳米颗粒薄膜的近紫外电致发光特性研究   总被引:1,自引:0,他引:1       下载免费PDF全文
高松  赵谡玲  徐征  杨一帆  刘志民  谢小漪 《物理学报》2014,63(15):157702-157702
利用溶胶-凝胶法(sol-gel method)制备了ZnO纳米颗粒薄膜(ZnO nanoparticle film),并以此为发光层制备了结构为ITO/ZnO nanoparticle/MEH-PPV/LiF/Al的电致发光器件.通过调整器件发光层厚度,对器件的发光光谱和电学特性进行测试研究,发现该器件在一定的直流电压下可以得到以ZnO近紫外(中心波长390 nm)发光为主的电致发光光谱,显示出较好的ZnO近紫外电致发光特性.对该器件的发光机理进行了一定的研究,认为该器件的发光是基于载流子隧穿.  相似文献   

11.
TeSeIn是一种可逆光存贮介质.分别用单源热蒸发和磁控溅射制备TeSeIn膜.利用透射电镜(TEM)研究了膜的结构和微观形貌.利用俄歇剖面技术(AES-PRO)给出了膜的组分深度剖面,分析了TeSeIn记录介质膜与ZnS保护膜界面间的互扩散大小.利用X光电子能谱(XPS)分析了组元深能级结合能的化学位移.最后根据上面实验结果简要讨论了制备稳定的多元记录介质膜的方法.  相似文献   

12.
<正>This paper reports that GaSb thin films have been co-deposited on soda-lime glass substrates.The GaSb thin film structural properties are characterized by Raman spectroscopy.The Sb-A1g/GaSb-TO ratio decreases rapidly with the increase of substrate temperature,which suggests a small amount of crystalline Sb in the GaSb thin film and suggests that Sb atoms in the thin film decrease.In Raman spectra,the transverse optical(TO) mode intensity is stronger than that of the longitudinal optical(LO) mode,which indicates that all the samples are disordered.The LO/TO intensity ratio increases with increasing substrate temperature which suggests the improved polycrystalline quality of the GaSb thin film.A downshift of the TO and LO frequencies of the polycrystalline GaSb thin film to single crystalline bulk GaSb Raman spectra is also observed.The uniaxial stress in GaSb thin film is calculated and the value is around 1.0 GPa.The uniaxial stress decreases with increasing substrate temperature.These results suggest that a higher substrate temperature is beneficial in relaxing the stress in GaSb thin film.  相似文献   

13.
李阳平  刘正堂  赵海龙  李强 《光学学报》2006,26(10):589-1593
把GeC/GaP双层膜用作ZnS衬底的长波红外(8~11.5μm波段)增透保护膜系。采用射频磁控溅射法,以高纯Ar为工作气体、单晶GaP圆片为靶制备了GaP薄膜;用射频磁控反应溅射法在高纯Ar和CH4的混合气体中,以单晶Ge圆片为靶制备了GeC薄膜。分别用柯西(Cauchy)公式和乌尔巴赫(Urbach)公式表示折射率和吸收系数,对薄膜的红外透射率曲线进行最小二乘法拟合,得到了它们的厚度及折射率、吸收系数等光学常数。GaP膜的折射率与块体材料的相近,在波长10μm处约为2.9;GeC膜的折射率较小,在波长10μm处约为1.78。用所得到的薄膜折射率,通过计算机膜系自动设计软件在ZnS衬底上设计并制备出了GeC/GaP双层增透保护膜系,当GaP膜厚较大时,由于吸收增大膜系增透效果较差;当GaP膜厚较小时,膜系有较好的增透效果。  相似文献   

14.
分别以富集有Cr,Pb和Cd三种元素的尼龙薄膜样品及玻璃纤维滤膜为研究对象,采用滤膜叠加的方式,通过XRF光谱仪测量不同样品厚度下薄膜样品的XRF光谱,根据测得的尼龙薄膜样品中Cr,Pb,Cd元素及玻璃纤维滤膜中Ca,As和Sr元素特征XRF性质的变化,研究样品厚度对薄膜法XRF光谱测量的影响。结果表明:薄膜样品厚度对不同能量区间上元素特征谱线荧光性质的影响并不相同。元素特征谱线能量越大,元素特征X射线荧光穿透滤膜到达探测器的过程中损失越少;但由薄膜样品厚度增加引起的基体效应却越强,相应特征谱线位置处的背景荧光强度就越大,因此样品厚度增加所引起的基体效应对薄膜法XRF光谱测量的灵敏度影响就越大。对于特征谱线能量较低(能量小于7 keV)的元素,以增加薄膜样品厚度的方式来增加待测组分的质量厚度浓度,并不能有效地提高薄膜法XRF光谱测量的灵敏度;对于特征谱线能量较高的元素(能量>7 keV),可以通过适当增加样品厚度以增加被测组分的质量厚度浓度的方式来提高XRF光谱测量的灵敏度,薄膜样品厚度在0.96~2.24 mm内,更有利于XRF光谱的测量与分析。该研究为大气及水体重金属薄膜法XRF光谱分析中薄样制备及富集技术提供了重要的理论依据。  相似文献   

15.
Pentacene thin films with thicknesses ranging from 10 nm to 180 nm are investigated by specular X-ray diffraction in the reflectivity regime and in the wide angular regime. The results of the reflectivity measurements show a clear shift of the 001 reflection of the thin film phase depending on the layer thickness. It is shown that this shift can be explained by the dynamical scattering theory. The wide angular regime measurements show the 00L of the thin film phase. Williams-Hall plots are used to extract information on the crystallite size and mean micro strain of the thin film phase. The crystallite size is in good agreement with the results obtained by the reflectivity measurements. From this it can be concluded that the thin film phase crystallites are extended over the entire film thickness down to the substrate. Additionally an increase of the micro strain with increasing film thickness is observed.  相似文献   

16.
A non-equilibrium molecular dynamics model is developed to investigate how a thin film confined between two dissimilar solids affects the thermal transport across the material interface. For two highly dissimilar (phonon frequency mismatched) solids, it is found that the insertion of a thin film between them can greatly enhance thermal transport across the material interface by a factor of 2.3 if the thin film has one of the following characteristics: (1) a multi-atom-thick thin film of which the phonon density of states (DOS) bridges the two different phonon DOSs for the solid on each side of the thin film; (2) a single-atom-thick film which is weakly bonded to the solid on both sides of the thin film. The enhanced thermal transport in the single-atom-thick film case is found mainly due to the increased inelastic scattering of phonons by the atoms in the film. However, for solid-solid interfaces with a relatively small difference in the phonon DOS, it is found that the insertion of a thin film may decrease the thermal transport.  相似文献   

17.
Giant magnetoimpedance (GMI) effect on NiFe thin film is very promising due to its application in developing the magnetic field sensors with highly sensitivity and low cost. In this paper, the single layered NiFe thin film and NiFe/Cu/NiFe thin film with a meander structure are prepared by the MEMS technology. The influences of sputtering parameters, film structure and conductor layer width on GMI effect in NiFe single layer and meander NiFe/Cu/NiFe film are investigated. Maximum of the GMI ratio in single layer and sandwich film is 5% and 64%, respectively. The results obtained are useful for developing the high-performance magnetic sensors based on NiFe thin film.  相似文献   

18.
DNA solutions were prepared by ultrasonication and purification to compare the characteristics between DNA solutions different in size, purity, or both. Ultrasonication effectively minimized the size variation in native DNA, while purification enhanced the transparency of fabricated DNA thin film. Each DNA solution was used to fabricate water-soluble or organic-soluble thin film. According to the electrical measurement of DNA and CTMA-modified DNA thin films and the fluorescence measurement of PicoGreen-embedded DNA thin films, ultrasonication and purification affect the electrical characteristics and intercalating efficiency of DNA thin films. The electrical properties of the water-soluble thin film and the organic-dissolved thin film were predominantly affected by purification, but opposite tendencies were observed. The highest resistance was observed in water-soluble DNA thin film fabricated from ultra-pure DNA, whereas organic-soluble DNA thin film from ultra-pure DNA showed the lowest resistance. Ultrasonication showed a synergistic effect on PicoGreen-DNA insertion, whereas purification suppressed the fluorescence signal.  相似文献   

19.
纳米多孔SiO2薄膜的制备与红外光谱研究   总被引:10,自引:2,他引:8  
以正硅酸乙酯为原料,采用溶胶-凝胶法,结合旋转涂胶、超临界干燥工艺在硅片上制备了纳米多孔SiO2薄膜。XRD表明薄膜为无定形态;SEM显示薄膜具有多孔网络结构,其SiO2粒子直径为10~20nm。利用FTIR研究了薄膜的结构,纳米多孔SiO2薄膜含有Si—O—Si与Si—OR结构,呈疏水性;该SiO2薄膜热处理后因含有Si—OH基团而呈吸水性;用三甲基氯硅烷对热处理SiO2薄膜进行修饰可使其呈疏水性,修饰后的薄膜在N2中温度不高于450℃可保持其疏水性与多孔结构。  相似文献   

20.
In this work, a nanocone ZnO thin film was prepared by electron beam evaporation on a Si (1 0 0) substrate. The structural properties of the film were investigated by X-ray diffraction (XRD), atomic force microscopy and laser Raman scattering, respectively. The aging effect of the nanocone ZnO thin film was studied by photoluminescence spectra. The structural analyses show that the prepared ZnO thin film has a hexagonal wurtzite structure and is preferentially oriented along the c-axis perpendicular to the substrate surface. The photoluminescence spectra show that with the increase of aging time, the green emission of the nanocone ZnO thin film gradually decreases while the ultraviolet emission somewhat increases. The reason for this phenomenon is likely that the green-emission-related oxygen vacancies in the film are gradually filled up. The Raman scattering analyses also suggest that the intensity of the Raman peak related to oxygen vacancies in the nanocone ZnO thin film declines after the film is aged in air for a year. Therefore, the authors think the green emission is mainly connected with oxygen vacancy defects.  相似文献   

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