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1.
采用Bphen和BCP制成双电子传输层(Doubleelectrontransportlayers, DETLs)的有机发光二极管器件, 与Bphen单独作ETL的器件相比, DETLs器件具有较小的空穴漏电流, 效率提升10%。与BCP独自作ETL的器件相比, 更多的电子注入使DETLs器件的效率在50~600mA/cm2的电流范围内没有衰减。BCP作ETL的器件的效率从50mA/cm2时的2.5cd/A衰减至300mA/cm2的2.1cd/A, 衰减了16%。Cs2CO3:BCP独自作ETL的器件效率在50~300mA/cm2的电流范围内衰减了30%, 而Bphen/Cs2CO3:BCP作DETLs的器件效率在50~600mA/cm2的电流范围内衰减幅度为0, 原因是Bphen阻挡了Cs原子扩散至发光层。  相似文献   

2.
采用二次阳极氧化法,制备了多孔氧化铝模板。在真空背景下,用脉冲激光沉积法,在多孔氧化铝模板上沉积一层硅,制成了硅与多孔氧化铝的复合膜,然后用盐酸将多孔氧化铝模板完全腐蚀掉,制备均匀分布着硅纳米线的硅膜。用扫描电子显微镜、X射线衍射、光致发光对纳米硅的结构和光学性质进行了测试分析。结果表明:硅纳米线的直径约为67.5nm,长度约为100nm,数密度约1011/cm2。光致发光谱是可见光范围内的一个宽发射峰,上面叠加了许多具有精细结构的尖峰,尖峰之间的波长间隔不相等,但能量间隔相等。分析了样品的结构特点,利用量子限制模型和表面发光中心模型对光谱进行了解释,提出了一个新的能级模型,求出了各个尖峰对应激发态能级的量子数。为探讨纳米硅的发光机制和实现硅发光器件的制备提供了实验依据。  相似文献   

3.
利用KrF准分子激光退火超薄非晶硅膜,并结合热退火技术制备了单层纳米硅薄膜并研究了薄膜的场电子发射性质.在晶化形成的纳米硅薄膜中可以观测到稳定的场电子发射现象,其开启电场从原始淀积的非晶硅薄膜的17V/μm降低到8.5V/μm,而场发射电流密度可以达到0.1mA/cm2.激光晶化后形成的纳米硅材料的场电子发射特性的改善可以从薄膜表面形貌的改变以及高密度纳米硅的形成所导致的内部电场增强作用来解释. 关键词: 纳米硅 场发射 激光晶化  相似文献   

4.
邸玉贤  计欣华  胡明  秦玉文  陈金龙 《物理学报》2006,55(10):5451-5454
通过基底曲率法设计和制作了一种测量薄膜应力的装置,它具有全场性、非接触性、高分辨率、无破坏、数据获取速度快等特点.使用该装置测量了电化学腐蚀法制作的多孔硅薄膜的残余应力,并研究了孔隙率和基底掺杂浓度对残余应力的影响,结果表明随着孔隙率的增加和硼离子掺杂浓度的提高,多孔硅表面的拉伸应力逐渐加大,由此表明多孔硅薄膜的微观结构与残余应力的大小有着密切的联系. 关键词: 薄膜 残余应力 孔隙率 多孔硅  相似文献   

5.
4H-SiC晶体经能量为100 keV,剂量为3×1016 cm-2的氦离子高温(500 K)注入后,再在773—1273 K温度范围内进行了退火处理,最后使用纳米压痕仪测量了样品注入面的硬度.测试结果表明,在500—1273 K温度范围内样品的硬度随退火温度升高呈现先增大后减小再增大的趋势,其中773 K退火样品的硬度增大明显.分析认为,退火样品的硬度变化是由退火过程中缺陷复合与氦泡生长导致样品内部的Si—C键密度、键长和键角改变引起的. 关键词: SiC 注入 氦泡 纳米压痕  相似文献   

6.
以50keV和100keV能量的氢离子注入p型(100)直拉硅单晶薄膜。注入剂量为1015—2×1017H+/cm2。试样在HU-1300型超高压透射电子显微镜中进行电子辐照和原位加热动态观察。结果表明在20—300℃温度范围内与未注氢硅相比,注氢硅在相同的电子辐照条件下产生的电子辐照缺陷较少,电子辐照缺陷形成所需的潜伏时间较长。在电子显微镜中加热试样时于190℃开始观察到氢泡,190—220℃范围内氢泡逐渐产生并长大 关键词:  相似文献   

7.
利用多尺度建模方法构建了聚酰亚胺/钽铌酸钾纳米颗粒复合物模型, 通过分子动力学模拟研究了不同尺寸钽铌酸钾纳米颗粒(5.5, 8.0, 9.4, 10.5, 11.5 Å)对复合材料的结构、弹性模量和相互作用能的影响规律, 并通过计算纳米颗粒表面原子键能和单位表面积原子数目探究了复合物机械性能提高的内部机理. 聚酰亚胺和聚酰亚胺/钽铌酸钾复合材料的杨氏模量分别为2.91和3.17 GPa, 泊松比分别为0.37和0.35, 钽铌酸钾纳米颗粒的引入可以显著改善聚酰亚胺的机械性能. 纳米颗粒表面原子的键能为8.62-54.37 kJ·mol-1, 表明颗粒与基体主要通过范德华力作用结合且有氢键存在. 计算结果表明, 相同掺杂比例下, 纳米颗粒尺寸越小, 纳米颗粒表面原子数目越大, 颗粒与基体作用更强, 杨氏模量的提高幅度越大, 尺寸效应越显著. 因此, 掺杂小尺寸纳米颗粒是提高聚酰亚胺机械性能的有效途径.  相似文献   

8.
利用低压化学气相沉积方法在以Au作催化剂的Si衬底上生长了InN纳米线. 扫描电子显微镜分析表明,这些纳米线的直径在60—100 nm的范围内, 而其长度大于1 μm.高分辨透射电子显微镜图像表明,合成的纳米线中含有六方相和立方相的InN晶体.这些InN纳米线具有良好的场发射特性和稳定的场发射电流,其开启场为10.02 V/μm(电流密度为10 μA/cm2),在24 V/μm 的电场下,其电流密度达到5.5 mA/cm2.此外,对InN纳米线的场发射机理也进行了讨论. 关键词: InN纳米线 场电子发射 非线性Fower-Nordheim曲线  相似文献   

9.
稀土(Tb,Gd)掺杂多孔硅的光致发光性能研究   总被引:3,自引:0,他引:3       下载免费PDF全文
用电化学方法对多孔硅薄膜进行了稀土(Tb,Gd)离子的化学掺杂.利用荧光分光光度计测试了样品的光致发光特性.用扫描电子显微镜研究了薄膜的表面形貌.用卢瑟福背散射谱分析了稀土离子在多孔硅薄膜中的分布情况.结果表明,Tb的掺入显著增强了多孔硅的发光强度,并且发光峰位出现蓝移.这是由于Tb3+的4f能级5D4—7F35D47F关键词: 多孔硅 稀土掺杂 光致发光  相似文献   

10.
发光层厚度变化的高效红色有机电致磷光器件   总被引:4,自引:0,他引:4       下载免费PDF全文
以铱配合物红色磷光体为掺杂剂,制备了基于TPBi材料的红色电致磷光器件,其结构为ITO/CuPc/NPB/TPBi:Btp2Ir(acac)/ TPBi/Alq/LiF/Al.取得了在x=0.62,y=0.35的色度下,效率最高达2.43cd/A;电流密度为20mA/cm2时,亮度431cd/m2;电流密度为400mA/cm2时,亮度4798 cd/m2的结果.讨论了不同的发光层厚度影响器件色度和 关键词: 三线态 红光掺杂剂 有机电致磷光 T-T湮没  相似文献   

11.
Artificially modulated CrAlN/AlON nanomultilayers were synthesized by direct current reactive magnetron sputtering. The microstructure and mechanical properties were evaluated by X-ray diffraction (XRD), high-resolution transmission electron microscopy (HRTEM) and nano-indentation techniques. The crystallization of AlON layer and its influence on the mechanical property of the nanomultilayers were studied. The results revealed that, under the template effect of NaCl structural CrAlN layer, amorphous AlON was forced to crystallize and grew epitaxially with CrAlN layer when AlON layer thickness was below 0.9 nm, leading to an increase of hardness up to 32.8 GPa. With the further increase of the AlON layer thickness, AlON layer gradually transformed into amorphous structure and blocked epitaxial growth of the multilayers, resulting in the decrease of hardness. The effect of CrAlN layer thickness on hardness of CrAlN/AlON nanomultilayers was also investigated. With the decrease of CrAlN layer thickness, the hardness increased gradually. The maximum hardness was 34.7 GPa when CrAlN layer thickness of was 3.0 nm. The strengthen mechanism of CrAlN/AlON nanomultilayers was finally discussed.  相似文献   

12.
The effects of laser processing parameters on the microstructure and mechanical properties of selective laser-melted magnesium were investigated. The results show that the microstructure characteristics of the laser-melted samples are dependent on the grain size of SLM magnesium. The grains in the molten zone coarsen as the laser energy density increases. In addition, the average hardness values of the molten zone decreases significantly with an increase of the laser energy densities and then decreased slowly at a relatively high laser energy density irrespective of mode of irradiation. The hardness value was obtained from 0.59 to 0.95 GPa and corresponding elastic modulus ranging from 27 to 33 GPa. The present selective laser-melted magnesium parts are promising for biomedical applications since the mechanical properties are more closely matched with human bone than other metallic biomaterials.  相似文献   

13.
Passive reduction of gradient coil (GC) cylinder vibration depends critically on a thorough knowledge of how all pertinent physical parameters affect the vibration response. In this paper, we employ a recently introduced linear elastodynamic Z-coil model to study how the displacement response of a whole-body GC cylinder (subject to exclusive excitation of its Z-coil windings) is affected by independent regularized variations in its: (i) length; (ii) radial thickness; (iii) mass density; (iv) Poisson ratio; and (v) Young modulus (stiffness). The results exhibit a rich variety of behaviors at different excitation frequencies, and in the parameter ranges of interest, the displacement response is found to be particularly sensitive to variations in cylinder geometry and mass density. The results also show that, with the exception of the stiffness, there are no optimal ranges of regularized values of the considered parameters that will reduce the displacement (and hence the vibration) of a GC cylinder at all frequencies of interest. For typical GC cylinder geometries and densities, and under the condition that only the Z-coil windings are excited, the model predicts that increasing the cylinder stiffness above 100 GPa will reduce vibration at all frequencies below 2000 Hz.  相似文献   

14.
Pure hydrogenated amorphous carbon (α-C:H) and nitrogen doped hydrogenated amorphous carbon (α-C:H:N) thin films were prepared using end-Hall (EH) ion beam deposition with a beam energy ranging from 24 eV to 48 eV. The composition, microstructure and mechanical properties of the films were characterized by Fourier transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS), Raman spectroscopy, scanning probe microscopy (SPM), and nano-scratch tests. The films are uniform and smooth with root mean square roughness values of 0.5-0.8 nm for α-C:H and 0.35 nm for α-C:H:N films. When the ion energy was increased from 24 eV to 48 eV, the fraction of sp3 bonding in the α-C:H films increased from 36% to 55%, the hardness increased from 8 GPa to 12.5 GPa, and the Young's modulus increased from 100 GPa to 130 GPa. In the α-C:H:N films, N/C atomic ratio, the hardness and Young's modulus of the α-C:H:N films are, 0.087, 15 and 145 GPa, respectively. The results indicate that both higher ion energy and a small amount of N doping improve the mechanical properties of the films. The results have demonstrated that smooth and uniform α-C:H and α-C:H:N films with large area and reasonably high hardness and Young's modulus can be synthesized by EH ion source.  相似文献   

15.
JSOG中水蒸汽含量的模拟计算   总被引:1,自引:1,他引:0       下载免费PDF全文
氧碘化学激光(简称 COIL)系统中,水是影响激光功率输出的最重要的原因之一。气流中的水不仅对激发态碘原子有严重的猝灭作用,另外对碘分子解离、超音速流动特性也有很坏的负面作用。单重态氧发生器的BHP(Basic Hydrogen Peroxide )溶液是最主要的水蒸汽源。利用传质模型对射流式单重态氧发生器(简称JSOG)中产生的水蒸汽进行了计算,所得的数值结果与实验测量结果基本相符。根据模拟结果,对发生器的设计及实验条件进行了优化。  相似文献   

16.
According to the density functional theory we systematically study the electronic structure, the mechanical prop- erties and the intrinsic hardness of Si2N2O polymorphs using the first-principles method. The elastic constants of four Si2N2O structures are obtained using the stress-strain method. The mechanical moduli (bulk modulus, Young’s mod- ulus, and shear modulus) are evaluated using the Voigt-Reuss-Hill approach. It is found that the tetragonal Si2N2O exhibits a larger mechanical modulus than the other phases. Some empirical methods are used to calculate the Vickers hardnesses of the Si2N2O structures. We further estimate the Vickers hardnesses of the four Si2N2O crystal structures, suggesting all Si2N2O phases are not the superhard compounds. The results imply that the tetragonal Si2N2O is the hardest phase. The hardness of tetragonal Si2N2O is 31.52 GPa which is close to values of β-Si3N4 and γ-Si3N4.  相似文献   

17.
Native oxide is usually formed during the fabrication of silicon beams. A model is developed to describe the effect of native oxide on the elastic modulus of the silicon nano-beam based on the semi-continuum method. The model predicts that Young’s modulus of the nano-beam with native oxide increases as the nano-beam thickness decreases while it exhibits opposite behavior without native oxide. Native oxide dominates the beam with its scaling down to several nanometers. Young’s moduli are in the range from 123 GPa to 190 GPa when the thickness is several nanometers, and they approach the bulk value when the thickness is greater than about 500nm.  相似文献   

18.
This paper reports that DLC (diamond like carbon)/Ti and DLC films were prepared by using pulsed laser arc deposition. R-ray diffraction, Auger electron spectroscopy, Raman spectroscopy, atomic force microscopy, nanoindenter, spectroscopic ellipsometer, surface profiler and micro-tribometer were employed to study the structure and tribological properties of DLC/Ti and DLC films. The results show that DLC/Ti film, with $I(D)/I(G)$ 0.28 and corresponding to 76{\%} sp$^{3}$ content calculated by Raman spectroscopy, uniform chemical composition along depth direction, 98 at{\%} content of carbon, hardness 8.2 GPa and Young's modulus 110.5 GPa, compressive stress 6.579 GPa, thickness 46~nm, coefficient of friction 0.08, and critical load 95mN, exhibits excellent mechanical and tribological properties.  相似文献   

19.
电流密度对铝合金微弧氧化膜物理化学特性的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
利用微弧氧化(MAO)技术,在LYl2铝合金上沉积了显微硬度达42.14GPa的超硬陶瓷膜.采用x射线衍射仪和显微硬度计研究了阳极电流密度ja和阴极、阳极电流密度比jc/ja对MAO膜相构成和力学特性的影响.此外,利用扫描电子显微镜和恒电位仪分别对膜的微结构和抗点腐蚀特性进行了分析.结果表明,高ja制备的膜主要含α-Al2O3相,低ja制备的膜主要含γ-Al2O3相.显微硬度测试表明,这类膜有较高的硬度,但以ja=15A/dm2和jc/ja=0.7制备的陶瓷膜硬度最高.抗点腐蚀测试表明,jc/ja对陶瓷膜的微结构有很强的影响. 关键词: 微弧氧化 显微硬度 电流密度 抗点腐蚀  相似文献   

20.
PLD方法制备的超硬非晶碳薄膜研究   总被引:2,自引:3,他引:2       下载免费PDF全文
 用脉冲激光沉积在不同条件下制备非晶碳超硬薄膜,研究了非晶碳超硬薄膜的表面形貌、结构、应力、硬度以及能谱等。原子力显微镜和扫描电镜图像显示,薄膜表面平整、致密且光滑,均方根粗糙度最大为0.877 nm。在高激光重复频率、高激光通量条件下,薄膜有很大的应力,致使膜层褶皱甚至破裂,小角X射线衍射表明薄膜为非晶态且最大残余应力达30 GPa以上,但300 ℃温度的原位退火可以有效降低残余应力;纳米压痕测试表明薄膜硬度大于20 GPa,弹性模量大于200 GPa;X射线光电子能谱表明薄膜中sp3的含量在39%~53%之间变化,并且与激光通量成正比。  相似文献   

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