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1.
氮化硼包覆纳米氧化锌体系的光致发光特性研究   总被引:12,自引:0,他引:12       下载免费PDF全文
研究了ZnO纳米微粒和BN胶囊组装体系(ZnO/BN的核壳结构)的光致发光特性.观察到ZnO/BN体系的光致发光比ZnO纳米粒子增强了1000倍.指出该现象的机理是由于BN胶囊的绝缘环境对界面结构和ZnO量子点的缺陷的数量的影响 关键词: 光致发光增强 电子顺磁共振 ZnO/BN组装体  相似文献   

2.
田昕  曹立新  柳伟  苏革  董博华 《发光学报》2012,33(7):736-741
本文采用水相合成方法制备了ZnS∶Cu量子点并进行了ZnS壳层修饰,研究了壳层厚度对ZnS∶Cu量子点光学性质的影响,采用TEM、XRD、PL、PLE和UV-Vis等测试方法对其进行了表征。实验结果表明,合成的ZnS∶Cu/ZnS量子点为立方闪锌矿,尺寸分布均匀呈球形,分散性良好,经过壳层修饰平均粒径由2 nm增加到3.2 nm。随着ZnS壳与ZnS核量的比的增加,量子点的PLE激发峰位置和UV-Vis吸收谱线出现红移,也说明了量子点的尺寸增大,证明ZnS在ZnS∶Cu量子点的表面生长,形成了核壳结构的ZnS∶Cu/ZnS量子点。随着壳层增厚,量子点与铜离子发光中心相关的发射峰强度先增大后减小,当壳核比ns/nc=2.5时,发光强度达到最大。  相似文献   

3.
利用静电自组装技术,以生物大分子材料壳聚糖杂化处理具有稳定结构的CdSe/ZnS核/壳量子点,形成复合多层薄膜. 与薄膜的吸收谱线比较,在375nm飞秒激光激发下测量的量子点的光致发光谱存在Stokes位移. 采用Z扫描技术,利用790nm飞秒激光研究了其三阶非线性吸收和折射特性,发现饱和吸收信号来自CdSe/ZnS量子点,而自聚焦的折射信号则部分来自壳聚糖. 测出多层膜的三阶非线性系数分别是β=6.5×10-6cm/W,n2=1.5×10-10cm2/W. 关键词: CdSe/ZnS量子点 非线性性能 光致发光谱  相似文献   

4.
CuInS2纳米晶的制备和发光性质   总被引:3,自引:3,他引:0       下载免费PDF全文
以十二硫醇为溶剂,通过选择合适的金属源制备了各种尺寸的CuInS2量子点。观察到随着粒子的尺寸减小,其吸收和发光光谱明显蓝移,存在明显的量子尺寸效应。通过在CuInS2纳米晶表面包覆ZnS壳层,发现随着壳层厚度增加,其发光量子效率明显提高,最大达到了48%;继续增加壳层厚度,其发光量子效率反而降低。进一步测量它们的荧光寿命,发现包覆ZnS壳层后的CuInS2纳米晶的荧光寿命明显增加,证实表面包覆明显减少其表面的无辐射复合中心,提高了其发光效率。进一步制备了CuInS2/ZnS核壳量子点发光二极管,并对其电致发光性质进行了研究。  相似文献   

5.
制备了二氧化硅壳层修饰的ZnS:Mn量子点,基于聚乙烯吡咯烷酮(PVP)与二氧化硅表面硅羟基的作用,在纳米复合微粒表面进行了PVP的修饰,得到了在海水中荧光性能及胶体稳定性良好的ZnS:Mn/SiO2/PVP 量子点。在Pb2+对所制备纳米微粒具有荧光猝灭效应的基础上,建立了用ZnS:Mn/SiO2/PVP 量子点作为荧光探针检测海水中微量铅离子的新方法。研究表明,量子点浓度为10-3 mol/L时,海水中离子浓度在10~100 μmol/L范围内与ZnS:Mn/SiO2/PVP量子点荧光猝灭强度呈良好的线性关系,相关系数为0.994 6,检出限为8×10-7 mol/L。  相似文献   

6.
艾哲  倪帅帅  张亚非 《发光学报》2015,36(11):1282-1288
采用逐步热注射法合成了用于白光LED的CuInS2/ZnS(CIS/ZnS)核壳结构量子点.通过调整Cu/In的比率, 在CuInS2(CIS)量子点的基础上, 合成了发射波长在570~650 nm之间可调的CIS/ZnS量子点.与CIS量子点的低量子产率相比, 具有核壳结构的CIS/ZnS量子点的量子产率达到了78%.通过在黄光荧光粉YAG :Ce3+表面旋涂CIS/ZnS量子点的方式制备了暖白光LED器件.在工作电流为10 mA时, 暖白光LED的发光效率达到了244.58 lm/W.由于CIS/ZnS量子点的加入, 所制备的白光LED器件的显色指数达到86.7且发光颜色向暖色调发生了转移, 相应的色坐标为(0.340 6, 0.369 0).  相似文献   

7.
以脉冲宽度为35 ps,基频为1064 nm的Nd:YAG锁模激光器二倍频532 nm的激光作激发,利用Z-扫描技术研究了CdSeS量子点的光学非线件特性.实验结果表明CdSeS量子点在532 nm光激发下具有很大的非线性吸收效应,该吸收效应来自于光学三阶效应引起的双光子吸收.在不同的入射光强下观测了CdSeS量子点的Z-扫描曲线,实验表明,CdSeS具有大的非线性折射率1.9×10-8esu和大的双光子吸收截面25283 GM,比现在使用的ZnS量子点高出近2个数量级.  相似文献   

8.
在水相中制备了半导体CdTe纳米晶,核 壳型CdTe/CdS和CdTe/ZnS纳米晶(即量子点;QDs).利用扫描隧道显微镜(STM)和荧光光谱(FS)对合成的纳米晶量子点进行了研究,并且根据FS的数据进行了量子效率的计算.STM的结果表明合成的量子点直径约为3 nm并且分布良好.为了提高量子效率,对Cd2+浓度和Cd2+∶S2-比例等反应条件进行了研究,结果表明随着回流时间的增加,核 壳型量子点CdTe/CdS的量子效率总体上呈下降趋势.CdTe/CdS在pH8.5,Cd2+∶S2-=10∶1(摩尔比)时可获得80.0%的最大量子效率.同时制备了核 壳型量子点CdTe/ZnS,其最大发射波长由551 nm(CdTe)红移到635 nm(CdTe/ZnS)表明量子点的尺寸在增长,但是量子效率下降到14.4%. 当前研究的量子点可适用于生物标记,生物成像,以及基于共振能量转移的生物传感研究.  相似文献   

9.
测量了CdSe/ZnS(3 ML)核/壳结构及CdSe/CdS(3 ML)/ZnCdS(1 ML)/ZnS(2 ML)核/多壳层结构量子点在80~460 K范围内的光致发光光谱,研究了壳层结构对CdSe量子点发光热稳定性的影响。详细地分析了CdSe量子点的发光峰位能量、线宽和积分强度与温度之间的关系,发现CdSe量子点的发光热稳定性依赖于壳层结构。CdS/ZnCdS/ZnS多壳层结构包覆CdSe量子点在低温和高温部分的热激活能均大于ZnS壳层包覆的CdSe量子点,具有更好的发光热稳定性。此外,在300-460-300 K加热-冷却循环实验中,CdS/ZnCdS/ZnS多壳层结构包覆CdSe量子点的发光强度永久性损失更少,热抵御能力更强。  相似文献   

10.
CdSe/ZnSe/ZnS多壳层结构量子点的制备与表征   总被引:2,自引:0,他引:2       下载免费PDF全文
展示了一种简捷的多壳层量子点合成路线。在含有过量Se源的CdSe体系中直接注入Zn源,"一步法"合成了CdSe/ZnSe量子点;进一步以CdSe/ZnSe为"核",表面外延生长ZnS壳层制备了核/壳/壳结构CdSe/ZnSe/ZnS量子点。相对于以往报道的多壳层结构量子点的制备方法,该方法通过减少壳层的生长步骤有效地简化了实验操作,缩短了实验周期,同时减少对原料的损耗。对量子点进行高温退火处理,能够大幅提高CdSe/ZnSe/ZnS量子点的发光量子产率。透射电镜、XRD以及光谱研究表明:所制备的量子点接近球形,核与壳层纳米晶均为闪锌矿结构,最终获得的CdSe/ZnSe/ZnS量子点的光致发光量子产率达到53%。为了实现量子点的表面生物功能化,通过巯基酸进行了表面配体交换修饰,使量子点表面具有水溶性的羧基功能团,并且能够维持较高的光致发光量子产率。  相似文献   

11.
Water-soluble, mercaptosuccinic acid (MSA)-capped CdTe/CdS/ZnS core/double shell quantum dots (QDs) were prepared by successive growth of CdS and ZnS shells on the as-synthesized CdTe/CdSthin core/shell quantum dots. The formation of core/double shell structured QDs was investigated by ultraviolet-visible (UV–Vis) absorption and photoluminescence (PL) spectroscopy, PL decay studies, X-ray diffraction (XRD), and X-ray photoelectron spectroscopy (XPS). The core/double shell QDs exhibited good photoluminescence quantum yield (PLQY) which is 70% higher than that of the parent core/shell QDs, and they are stable for months. The average particle size of the core/double shell QDs was ~3 nm as calculated from the transmission electron microscope (TEM) images. The cytotoxicity of the QDs was evaluated on a variety of cancer cells such as HeLa, MCF-7, A549, and normal Vero cells by 3-(4,5-dimethyl-2-thiazolyl)-2,5-diphenyl-2H-tetrazolium bromide (MTT) cell viability assay. The results showed that core/double shell QDs were less toxic to the cells when compared to the parent core/shell QDs. MCF-7 cells showed proliferation on incubation with QDs, and this is attributed to the metalloestrogenic activity of cadmium ions released from QDs. The core/double shell CdTe/CdS/ZnS (CSS) QDs were conjugated with transferrin and successfully employed for the biolabeling and fluorescent imaging of HeLa cells. These core/double shell QDs are highly promising fluorescent probe for cancer cell labeling and imaging applications.  相似文献   

12.
采用原位聚合法制备了以ZnO量子点为核、石墨烯量子点(GQDs)为壳的ZnO@ GQDs核壳结构量子点。通过TEM和HR-TEM对量子点进行形貌和结构的分析表征。结果表明,合成的ZnO@ GQDs核壳结构量子点为球形,粒径为~7 nm,且尺寸均匀。PL光谱研究表明,新型量子点的发射峰位于369 nm,发光峰窄、强度高;相对于ZnO的本征发射峰,GQDs的引入使得ZnO@GQDs核壳量子点的荧光发射峰出现蓝移、强度变高,从而使复合量子点的荧光具有较纯的色度和较高的强度,说明GQDs的引入具有协同优化效应。该量子点有望应用于LED显示器件。  相似文献   

13.
CdTe/CdS/ZnS core–shell–shell quantum dots (QDs) were synthesized in aqueous solution via water-bathing combined hydrothermal method using L-cysteine as a stabilizer. The present method features markedly reduced synthesis time, higher fluorescent intensity and lower cytotoxicity of the QDs. Structural and spectroscopic properties of core–shell–shell QDs are well characterized by absorption and fluorescence spectroscopy, X-ray diffraction, transmission electron microscopy, and fourier transform infrared spectroscopy. Both CdS and ZnS shells were capped on the CdTe core and the fluorescence was greatly enhanced by the ZnS coating. The ternary QDs conjugated with transferrins were successfully employed for the biolabeling and fluorescent imaging of HeLa cells. Cytotoxicity evaluation shows that CdTe/CdS/ZnS was less toxic for cells than CdTe and CdTe/CdS due to the presence of a ZnS coating on surface, which inhibited the release of cadmium ions.  相似文献   

14.
Indium phosphide (InP) quantum dots (QDs) are ideal substitutes for widely used cadmium-based QDs and have great application prospects in biological fields due to their environmentally benign properties and human safety. However, the synthesis of InP core/shell QDs with biocompatibility, high quantum yield (QY), uniform particle size, and high stability is still a challenging subject. Herein, high quality (QY up to 72%) thick shell InP/GaP/ZnS core/shell QDs (12.8 ± 1.4 nm) are synthesized using multiple injections of shell precursor and extension of shell growth time, with GaP serving as the intermediate layer and 1-octanethiol acting as the new S source. The thick shell InP/GaP/ZnS core/shell QDs still keep high QY and photostability after transfer into water. InP/GaP/ZnS core/shell QDs as fluorescence labels to establish QD-based fluorescence-linked immunosorbent assay (QD-FLISA) for quantitative detection of C-reactive protein (CRP), and a calibration curve is established between fluorescence intensity and CRP concentrations (range: 1–800 ng mL−1, correlation coefficient: R2 = 0.9992). The limit of detection is 2.9 ng mL−1, which increases twofold compared to previously reported cadmium-free QD-based immunoassays. Thus, InP/GaP/ZnS core/shell QDs as a great promise fluorescence labeling material, provide a new route for cadmium-free sensitive and specific immunoassays in biomedical fields.  相似文献   

15.
Resonant Raman scattering by optical phonon modes as well as their overtones was investigated in ZnS and ZnO quantum dots grown by the Langmuir–Blodgett technique. The in situ formation of ZnS/ZnO core/shell quantum dots was monitored by Raman spectroscopy during laser illumination.  相似文献   

16.
Temperature-dependent photoluminescence (PL) spectroscopy of CuInS2 core and CuInS2/ZnS core–shell quantum dots (QDs) was studied for understanding the influence of a ZnS shell on the PL mechanism. The PL quantum yield and lifetime of CuInS2 core QDs were significantly enhanced after the QD surface was coated with the ZnS shell. The temperature dependences of the PL energy, linewidth, and intensity for the core and core–shell QDs were studied in the temperature range from 92 to 287 K. The temperature-dependent shifts of 98 meV and 35 meV for the PL energies of the QDs were much larger than those of the excitons in their bulk semiconductors. It was surprisingly found that the core and core–shell QDs exhibited a similar temperature dependence of the PL intensity. The PL in the CuInS2/ZnS core–shell QDs was suggested to originate from recombination of many kinds of defect-related emission centers in the interior of the cores.  相似文献   

17.
以3-巯基丙酸(MPA)为稳定剂,采用水相合成法合成了具有优良光学性质的Mn掺杂ZnS量子点。该量子点在室温条件下即可发射较强的磷光信号。将量子点与牛血清蛋白(BSA)偶联后,形成了纳米复合材料。由于BSA对量子点表面缺陷进行了有效修复,量子点发出的磷光明显增强。当加入头孢曲松钠后,头孢曲松钠与BSA的相互作用使量子点的磷光被有效猝灭,该磷光猝灭量(△P)与头孢曲松钠的浓度在一定范围内呈良好的线性关系(R=0.99)。量子点与BSA偶联的最佳条件为:pH=7.4,反应温度37 ℃,反应时间40 min,BSA浓度80 mg·L-1,量子点浓度40 mg·L-1。反应形成新的生物纳米复合材料,作为头孢曲松钠的磷光探针,其线性范围为0~30 μmol·L-1,相关系数R=0.99,检出限为0.14 μmol·L-1,相对标准偏差为1.63%。  相似文献   

18.
双有源层结构掺硅氧化锌薄膜晶体管的电特性   总被引:1,自引:1,他引:0  
莫淑芬  刘玉荣  刘远 《发光学报》2015,36(2):213-218
为降低氧化锌薄膜晶体管(ZnO-TFT)的关态电流(Ioff),提高开关电流比(Ion/Ioff),采用磁控溅射法制备掺硅氧化锌薄膜晶体管(SZO-TFT)和SZO/ZnO双层有源层结构的TFT器件,研究了Si含量对SZO薄膜透光性和SZO-TFT电性能的影响,比较了单层与双层有源层结构TFT器件的电特性.与ZnO-TFT相比,SZO-TFT的Ioff低2个数量级,最低达1.5×10-12 A;Ion/Ioff高两个数量级,最高达7.97×106.而SZO/ZnO双有源层结构的TFT器件可在不降低载流子迁移率的情况下,Ion/Ioff比ZnO-TFT提高近两个数量级,有效改善了器件的整体性能.  相似文献   

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