A simple procedure was presented to directly synthesize Zn1_xCdxS (0 ≤x≤1) quantum dots (QDs) in aqueous solution. QDs' structures and properties were characterized by TEM (transmission electron microscopy), ...A simple procedure was presented to directly synthesize Zn1_xCdxS (0 ≤x≤1) quantum dots (QDs) in aqueous solution. QDs' structures and properties were characterized by TEM (transmission electron microscopy), XRD (X-ray diffraction) and fluorescence microscopy. For those as-synthesized Zn1_xCdxS QDs, when the molar ratio between Zn and Cd changed from 1 to 0, its photoluminescence (PL) emission peak shifted from 430 nm to 675 nm. PL emission quantum efficiency was up to 15%. The experiment results demonstrated that those alloyed QDs showed a good biocompatibility and could be used as labelling materials in cell biology.展开更多
利用紫外-可见光谱(UV-vis)、X衍射(X-ray Diffraction,XRD)和透射电子显微镜(Transmission Electron Microscope,TEM)等研究小尺寸水溶性金纳米粒子的可控制备.在乙酸和甲醇(体积比为1:6)的混合系统中,通过NaBH4对三水氯金酸...利用紫外-可见光谱(UV-vis)、X衍射(X-ray Diffraction,XRD)和透射电子显微镜(Transmission Electron Microscope,TEM)等研究小尺寸水溶性金纳米粒子的可控制备.在乙酸和甲醇(体积比为1:6)的混合系统中,通过NaBH4对三水氯金酸还原,将硫普罗宁分子包覆到金纳米粒子表面,得到尺寸可控、稳定的硫普罗宁包覆的金纳米粒子水溶胶.通过控制金与硫普罗宁的摩尔比(Au/S比),金纳米粒子的尺寸能够在2~8nm范围内得到有效控制.本文中,当Au/S比分别为1:3,1:1和3:1时,所合成的金纳米粒子的尺寸分别为(2.8±0.3),(4.0±0.3),(6.1±0.4)nm.展开更多
基金Funded by the Tianjin Research Program of Applied Basic&Cuttingedge Technologies(No.09JCYBJC27200)the National Key Basic Research Program (973 Program) of China(No.2012CB933301)
文摘A simple procedure was presented to directly synthesize Zn1_xCdxS (0 ≤x≤1) quantum dots (QDs) in aqueous solution. QDs' structures and properties were characterized by TEM (transmission electron microscopy), XRD (X-ray diffraction) and fluorescence microscopy. For those as-synthesized Zn1_xCdxS QDs, when the molar ratio between Zn and Cd changed from 1 to 0, its photoluminescence (PL) emission peak shifted from 430 nm to 675 nm. PL emission quantum efficiency was up to 15%. The experiment results demonstrated that those alloyed QDs showed a good biocompatibility and could be used as labelling materials in cell biology.
文摘利用紫外-可见光谱(UV-vis)、X衍射(X-ray Diffraction,XRD)和透射电子显微镜(Transmission Electron Microscope,TEM)等研究小尺寸水溶性金纳米粒子的可控制备.在乙酸和甲醇(体积比为1:6)的混合系统中,通过NaBH4对三水氯金酸还原,将硫普罗宁分子包覆到金纳米粒子表面,得到尺寸可控、稳定的硫普罗宁包覆的金纳米粒子水溶胶.通过控制金与硫普罗宁的摩尔比(Au/S比),金纳米粒子的尺寸能够在2~8nm范围内得到有效控制.本文中,当Au/S比分别为1:3,1:1和3:1时,所合成的金纳米粒子的尺寸分别为(2.8±0.3),(4.0±0.3),(6.1±0.4)nm.