Peng Hongshang, Wu Changfeng, Jiang Yunfei, Huang Shihua, McNeill Jason
Key Laboratory of Luminescence and Optical Information, Ministry of Education, Institute of Optoelectronic Technology, Beijing Jiaotong University, Beijing 100044, China.
Langmuir. 2007 Feb 13;23(4):1591-5. doi: 10.1021/la062915i. Epub 2007 Jan 11.
Aqueous suspensions of highly luminescent Eu3+ chelate nanoparticles are prepared by a novel reprecipitation-encapsulation method. An alkyl alkoxysilane encapsulation agent is included during the nanoparticle formation process, forming a nanoparticle encapsulation layer that inhibits aggregation as evidenced by UV-vis spectroscopy and atomic force microscopy. In addition, the encapsulated nanoparticles exhibit a small size (10 nm), intense luminescence, and excellent photostability. We estimate that the molar extinction coefficients of the approximately 10 nm particles are approximately 5.0x10(7) M-1 cm-1 with a luminescence quantum yield of 6%, indicating a luminescence brightness many times larger than that of conventional fluorescent dyes and comparable to that of colloidal semiconductor quantum dots. The small size, high brightness, highly red-shifted luminescence, and long luminescence lifetimes of the nanoparticles are of interest for luminescence labeling and sensing applications.
通过一种新型的再沉淀-封装方法制备了高发光性铕离子螯合物纳米颗粒的水悬浮液。在纳米颗粒形成过程中加入了烷基烷氧基硅烷封装剂,形成了纳米颗粒封装层,紫外可见光谱和原子力显微镜证明该封装层可抑制聚集。此外,封装后的纳米颗粒尺寸小(10纳米)、发光强且具有优异的光稳定性。我们估计,约10纳米的颗粒的摩尔消光系数约为5.0×10⁷ M⁻¹ cm⁻¹,发光量子产率为6%,这表明其发光亮度比传统荧光染料大许多倍,与胶体半导体量子点相当。纳米颗粒的小尺寸、高亮度、高度红移发光和长发光寿命使其在发光标记和传感应用中具有吸引力。