李曜均, 沈浩, 冯宗焱, 潘思敏, 潘俊威, 杨里珍, 吴立军. Ag纳米粒子增强CdS白光量子点器件的研制[J]. 华南师范大学学报(自然科学版), 2015, 47(6): 32-36.
引用本文: 李曜均, 沈浩, 冯宗焱, 潘思敏, 潘俊威, 杨里珍, 吴立军. Ag纳米粒子增强CdS白光量子点器件的研制[J]. 华南师范大学学报(自然科学版), 2015, 47(6): 32-36.
Design for White Light Emitting CdS Quantum Dots Devices Enhanced by Silver Nanoparticles[J]. Journal of South China Normal University (Natural Science Edition), 2015, 47(6): 32-36.
Citation: Design for White Light Emitting CdS Quantum Dots Devices Enhanced by Silver Nanoparticles[J]. Journal of South China Normal University (Natural Science Edition), 2015, 47(6): 32-36.

Ag纳米粒子增强CdS白光量子点器件的研制

Design for White Light Emitting CdS Quantum Dots Devices Enhanced by Silver Nanoparticles

  • 摘要: 半导体量子点材料由于其量子尺寸效应和表面效应的影响,显示出独特的发光特性.表面等离子体荧光增强效应由于其广泛的应用前景近年来成为了研究的热点,在材料科学、生物医学、光电器件等领域都展现了良好的应用前景.本文在十八烯体系中合成CdS量子点,用光诱导法制备银纳米粒子,并将两者复合,制备成四种复合样品,通过分析复合样品的荧光谱,研究银纳米颗粒的表面等离子体共振峰分别对应富含缺陷的硫化镉量子点的带边荧光峰和表面态荧光峰时,会发生带边荧光淬灭而表面态荧光增强的现象.实验结果表明,通过控制金属和量子点之间的距离,能够控制带边荧光辐射和缺陷带荧光辐射的比例,从而控制白光量子点的色温.本文随后用九个395nm紫光LED作为激发光源,将涂有荧光样品的玻片与激发光源组装,并用锡纸挡住多余的激发光,研制出银纳米颗粒/量子点复合结构白光照明器件原型,用实物对比图证明了银纳米粒子能够改变CdS量子点样品发光颜色,增强CdS量子点的荧光效应,且增强程度随着量子点样品的厚度减小而加强的特性.该研究不仅为人们认识荧光物质和金属之间的相互作用提供了新途径,还探讨了该器件在变色发光材料方向的应用前景.

     

    Abstract: Semiconductor quantum dots have unique optical properties due to the quantum size effect and surface effect. Investigations of SPR effects on light-emitting materials and devices have increased in this decade because of their promising applications in the enhancement of the luminescence efficiency,which has demonstrated a good application prospect in the materials science, biomedicine, optoelectronic devices and other fields. In our work, we prepare trap-rich CdS nanocrystals in the oleic system, and prepare Ag nanoparticles with light induced, then combine them into four kinds of composite samples to investigate the phenomenon that Ag nanoparticles always quench the band-edge emission and enhance the surface-state emission regardless of the SPR wavelength. Experimental results show that we can change the color of?quantum?dots fluorescence because the proportion of the band-edge emission and the surface-state emission can be controlled by the distance between CdS quantum dots and silver nanoparticles. Then a white light Emitting CdS quantum dots devices enhanced by silver nanoparticles is designed using nine 395 - nm wavelength violet-LEDs as excitation?light?source, CdS quantum dots/silver nanoparticles samples and tinfoil which can block the extra light. From the picture of real products, it shows that Ag nanoparticles can change the color of?quantum?dots fluorescence and enhance the photoluminescence which will become stronger when CdS quantum dots and Ag nanoparticles come closer. This investigation not only provides a new approach to study the interaction between fluorescent?material and metal, but also discuss the devices promising application in color-changed luminescent?materials.

     

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