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1.
应用气固生长方式在没有催化剂的情况下合成出一种新奇的ZnO纳米结构.通过透射电子显微镜分析,发现这种ZnO纳米带外延晶枝直径约20 nm,在[0001]方向有着良好的外延生长取向.提出了一个模型来解释这种树枝状锯齿结构的生长.室温下光致发光测量表明这种ZnO纳米结构在382、491 nm处有一个紫外发光峰和绿光发光峰.  相似文献   

2.
ZnO纳米线二极管发光器件制备及特性研究   总被引:2,自引:0,他引:2       下载免费PDF全文
运用液相法生长成ZnO纳米线薄膜,并利用肖特基型异质结的发光原理,构造成功肖特基型ZnO纳米线二极管发光器件.在大于6V直流电压驱动下,观察到近紫外波段392nm处和可见光波段525nm的发射谱带.从单向导电特性及ZnO纳米线材料的能带结构等方面探讨了该种器件的电致发光机理. 关键词: ZnO纳米线 肖特基二极管 电致发光  相似文献   

3.
常艳玲  张琦锋  孙晖  吴锦雷 《物理学报》2007,56(4):2399-2404
在利用液相法生长ZnO纳米线薄膜的基础上,构造成功基于ZnO纳米线双绝缘层结构的交流电致发光器件.此器件呈现出良好的阻容特性,在室温下以一定频率的交流电压驱动,可观察到近紫外波段387 nm处和可见光波段552 nm处的发射谱带.从阻容结构的导电特性及ZnO纳米线材料的能带结构等方面探讨了这种器件的电致发光机理及频率特性.  相似文献   

4.
基于氧化锌纳米线的紫外发光二极管   总被引:2,自引:0,他引:2       下载免费PDF全文
孙晖  张琦锋  吴锦雷 《物理学报》2007,56(6):3479-3482
构建了基于n-ZnO纳米线/p-Si异质结的紫外发光二极管.ZnO纳米线准阵列采用水热法生长于重掺p型Si片上.此法简易,反应温度低,易于大规模生产;其产物ZnO纳米线结晶良好,以c轴为优势取向,光激发下的紫外荧光发射很强.二极管的电学接触采用聚合物填充的In阴极或以氧化铟锡(ITO)玻璃紧压形成阴极.它们的I-V特性体现出良好的二极管性质.在正向偏置电压驱动下,构建的发光二极管可稳定发射波长在387nm的较强的近紫外光和较弱的绿光. 关键词: ZnO纳米线 异质结 电致发光 水热法  相似文献   

5.
运用液相法生长成ZnO纳米线薄膜,并利用肖特基型异质结的发光原理,构造成功肖特基型ZnO纳米线二极管发光器件.在大于6V直流电压驱动下,观察到近紫外波段392nm处和可见光波段525nm的发射谱带.从单向导电特性及ZnO纳米线材料的能带结构等方面探讨了该种器件的电致发光机理.  相似文献   

6.
宋志明  赵东旭  郭振  李炳辉  张振中  申德振 《物理学报》2012,61(5):52901-052901
一维ZnO纳米结构由于具有比表面积大、室温下具有大激子结合能等特点而受到广泛关注. 但是如何实现纳米结构的器件一直是目前研究的一个挑战. 文章通过水热方法, 在玻璃衬底上实现了ZnO纳米线横向生长, 并制备出基于ZnO纳米线的金属-半导体-金属紫外探测器. 测量结果显示器件在365 nm处探测器的响应度达到5 A/W, 并且制备的探测器在空气中对紫外光照具有快速的响应, 其上升时间约4 s, 下降时间约5 s, 这与ZnO纳米线中的氧空位吸附和脱附水分子相关.  相似文献   

7.
用SnO和Zn的均匀混合物在高温下共烧通过VLS机制制备出孪晶ZnO纳米线的均匀结构。SEM图像显示孪晶ZnO纳米线的直径在100~200nm之间,长度在几十微米到几百微米之间的范围内,有的甚至达到了毫米级,产率也非常的高。TEM图像中ZnO孪晶纳米线顶端的金属Sn颗粒表明了孪晶结构的Sn催化生长。高分辨电子图谱显示了氧化锌纳米线孪晶结构的特征。电子衍射分析发现孪晶氧化锌的晶带轴的方向是[0110],孪晶面为(1013),并且通过明场像和暗场像分析了孪晶纳米线的晶格关系,确定了孪晶纳米线的汽-液-固(VLS)生长机制。  相似文献   

8.
高分子软模板法自组装生长ZnO纳米线及其光学性能   总被引:1,自引:1,他引:0       下载免费PDF全文
采用自组装技术,利用均聚极性高分子(聚丙烯酰胺、聚乙烯醇等)长分子链作为自组装模板在半导体硅衬底上自组装生长出ZnO纳米线。采用扫描电镜(FE-SEM)和透射电镜(HRTEM)对样品的表面形貌和结构分析表征的结果表明,ZnO纳米线直径约50~80nm、长度大于4μm,具有六方纤锌矿单晶结构,且沿c轴方向择优取向生长。采用室温下光致发光(PL)谱和紫外吸收(UV)光谱对制得的ZnO纳米线的光学性能研究表明,其PL光谱上有较强的紫外发射和较弱的蓝光发射,UV吸收光谱表明样品在紫外区有强的宽带吸收,且随着纳米线粒径的减小,吸收峰出现了蓝移现象。研究探讨了高分子诱导ZnO纳米线自组装定向生长机制、发光机理及其与工艺条件的内在联系。  相似文献   

9.
掺AlZnO纳米线阵列的光致发光特性研究   总被引:2,自引:0,他引:2       下载免费PDF全文
唐斌  邓宏  税正伟  韦敏  陈金菊  郝昕 《物理学报》2007,56(9):5176-5179
采用化学气相沉积方法,以金做催化剂,在Si (100)衬底上制备了掺AlZnO纳米线阵列.扫描电子显微镜(SEM)表征发现ZnO纳米线的直径在30nm左右.X射线衍射(XRD)图谱上只存在ZnO的(002)衍射峰,说明ZnO纳米线沿c轴择优取向.掺AlZnO纳米线阵列的室温光致发光(PL)谱中出现了3个带边激子发射峰:373nm,375nm,389nm.运用激子理论推算出掺AlZnO纳米线的禁带宽度为3.343eV ,束缚激子结合能为0.156eV;纯ZnO纳米线阵列PL谱中3个带边激子发射 关键词: 光致发光 化学气相沉积(CVD) 激子 ZnO纳米线阵列  相似文献   

10.
本文采用无催化剂直接蒸发高纯Zn粉,在800℃氧气氛条件下,在Si(111)衬底上生长得到以四角状为主的纳米ZnO(T-ZnO)。T-ZnO纳米线每个角约互成110°,长度约为1.5μm,直径100nm左右;Raman分析表明E2(H)普遍存在于各形态的ZnO;光致发光光谱表明,T-ZnO纳米线的光致发光除了与材料性质有关,还与杂质缺陷有关,蓝绿光带是ZnO的缺陷产生的。  相似文献   

11.
Single-crystalline zinc oxide (ZnO) nanowires were synthesized from zinc powder and H2O through a simple chemical route at 730 °C in Ar atmosphere. The potential exists for bulk synthesis of ZnO nanowires at temperatures significantly less than the 200–300 °C of thermal evaporation methods reported formerly. Scanning electron microscopy and transmission electron microscopy observations reveal that the ZnO nanowires are structurally uniform, have lengths up to several hundreds of micrometers and diameters of about 40–60 nm and crystallize in a hexagonal structure. The growth of ZnO nanowires is controlled by the vapor–solid crystal-growth mechanism. Photoluminescence measurements show that the ZnO nanowires have a strong near-band ultraviolet emission at 380 nm and a green light emission at 520 nm caused by oxygen vacancies. PACS 81.05.Ys; 78.55.Et  相似文献   

12.
Brush-shaped ZnO particles were synthesized by controlling the growth time in the direct melt oxidation process of Al-Zn mixture in air at atmospheric pressure. Particles with two kinds of structures were formed. One was consisted of nanowires grown along [0 0 0 1] direction at the six corners and the center of (0 0 0 1) basal plane on hexagonal ZnO microrod. The other was constructed by nanobelts between the corner-nanowires as well as nanowires at the corners on ZnO microrod. The structural configuration that the nanowires and the nanobelts have a well coherent orientation alignment with the base microrod implies that the brush-shaped ZnO is single crystal. Room temperature PL spectrum of the brush-shaped ZnO particles displayed predominant green emission with a wavelength of 510 nm.  相似文献   

13.
"采用电场辅助电化学沉积法,利用阳极氧化铝模板模板制备了高度择优取向的硫掺杂ZnO单晶纳米线.X射线衍射仪、隧道电子显微镜、选取电子衍射对所得样品的结构、形貌分析表明,所得纳米线是沿(101)择优取向的六方纤锌矿结构单晶纳米线,长约几十微米、平均直径约70 nm. X射线光电子能谱对化学组成的分析进一步证实掺杂硫原子的存在.用荧光光谱仪(PL)对S掺杂前后的ZnO纳米线进行光学特性测量发现,S掺杂较大地改变了ZnO纳米线的发光性质.在PL谱中,除了有典型的ZnO纳米线在378、392 nm处的强紫外发光峰  相似文献   

14.
Highly ordered and stepped ZnO comb-like structures were fabricated using conventional thermal evaporation method. Zn powder covered by a layer of a mixture of ZnO and graphite was employed as the Zn source. The obtained ZnO comb-like structures are several tens of micrometers and some of them are even up to 100 μm. Both the widths of the belts and the lengths of the branches gradually decrease along the growth direction of ZnO comb-like structures. Under the most suitable condition, ZnO nanorods branches have uniform diameters and are evenly distributed on the belt-like stem. Possible growth process of ZnO comb-like structures was discussed. The effect of growth temperature on the morphology of the obtained products was also investigated. Room-temperature photoluminescence spectra from the ZnO comb-like structures and the nanorods film reveal weak UV emission and strong green emission.  相似文献   

15.
ZnO nanowires have been synthesized by heating Zn powders under nitrogen (N2) gas atmosphere. The influence of the growth temperature on the morphology, structure, and photoluminescence (PL) properties of ZnO nanowires has been investigated. At the higher-temperature growth process, thinner nanowires have been obtained. Interestingly, it is observed that the variation of growth temperature has significantly affected the photoluminescence spectra of the ZnO nanowires, showing an enhancement in the relative intensity of the green to UV emission bands with the increase of the growth temperature. In addition, the oxygen sensing properties of the as-synthesized ZnO nanowires were tested.  相似文献   

16.
一步溶液法制备ZnO亚微米晶体棒及其发光性能   总被引:6,自引:3,他引:3       下载免费PDF全文
用硝酸锌(Zn(NO3)2·4H2O)或醋酸锌(Zn(CH3COO)2·2H2O)分别与六亚甲基四胺((CH2)6N4)以等浓度0.005mol/L配制成两种反应溶液,通过化学溶液法在玻璃衬底上生长出ZnO六角型亚微米棒(长5~8μm,直径300~700nm)。测量了样品的XRD和扫描电镜像。经XRD分析,所得样品均为纤锌矿的ZnO六角型晶体。扫描电镜(SEM)像表明,生长时间为3h或5h时,样品为细长条的棒状结构,长径比超过10:1;生长48h后的ZnO亚微米棒的一端被腐蚀成一定深度的ZnO亚微米管。用负离子配位四面体生长模型分析了ZnO亚微米棒的生长机理。ZnO亚微米棒退火前后的光致发光谱表明,退火处理后的发射谱中的紫外峰消失,而红色发光峰红移并且增强(峰值由630nm左右移到710nm),同时它的激发光谱中的室温激子激发峰也增强。  相似文献   

17.
Tube brush-like ZnO nanostructures were synthesized by a simple chemical vapor deposition method with Zn and ZnO as precursors. These special ZnO nanostructures were characterized by Scanning Electron Microscope, Energy Dispersive X-ray Spectroscopy, High Resolution Transmission Electron Microscope and Cathodoluminescence (CL) techniques. Empty backbones or comb ribbons backbones were found inside the tube brush-like ZnO structures and fuzzy ZnO nanowires outside. Outside ZnO nanowires grow along the c axis and show green CL emission. The growth mechanism of the hierarchical ZnO nanostructures was investigated by a series of experiments at different growth temperatures and different duration times, and a secondary growth mechanism has been proposed and discussed.  相似文献   

18.
Zinc oxide (ZnO) nanowires (NWs) have been synthesized using zinc nitrate and hexamethylenetetramine by templateless, surfactant-free and seedless aqueous solution route. The morphology of ZnO NWs was considerably affected by growth time: a longer reaction time results in the formation of ZnO NWs. Structural analysis of the synthesized NWs showed an average diameter of 20–30 nm length of several micrometers and single-crystalline wurtzite hexagonal structure. Photoluminescence studies of ZnO NWs showed a strong green emission peak at 585 nm.  相似文献   

19.
SnO2/ZnO hierarchical nanostructures were synthesized by a two-step carbon assisted thermal evaporation method. SnO2 nanowires were synthesized in the first step and were then used as substrates for the following growth of ZnO nanowires in the second step. Sn metal droplets were formed at the surfaces of the SnO2 nanowires during the second step and were acted as catalyst to facilitate the growth of ZnO nanowires via vapor-liquid-solid mechanism. Room temperature photoluminescence measurements showed that the SnO2/ZnO hierarchical nanostructures exhibited a strong green emission centered at about 520 nm and a weak emission centered at about 380 nm. The emissions from the SnO2 were drastically constrained due to screen effect caused by the ZnO layer.  相似文献   

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