首页> 外文会议>Conference on Colloidal Quantum Dots for Biomedical Applications; 20080119-21; San Jose,CA(US) >Two-photon properties of CdSe core ZnS/CdS multishell quantum dots for bioimaging applications
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Two-photon properties of CdSe core ZnS/CdS multishell quantum dots for bioimaging applications

机译:CdSe核心ZnS / CdS多壳量子点的双光子特性,用于生物成像应用

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This letter demonstrates that the fluorescence intensity of CdSe-core CdS/ZnS-multishell quantum dots (QDs) in toluene is related via a power-law of ~1.9 to the input intensity of femtosecond laser at 5~130 GW/cm~2. This clearly indicates a broad range of optical intensity of two-photon excitation (TPE). The two-photon absorption (TPA) cross sections of QDs of core-size 2.9, 4.0 and 5.3 nm at 800 nm are 1980, 5680 and 14600 GM, respectively. Furthermore, the log-log plot of CdSe-core diameters versus the TPA cross sections shows the increase with a slope >3, indicating a nonlinear dependent relationship between TPA cross section and size of CdSe-core. The broad optical range of TPE and large TPA cross section make these QDs excellent candidates for two-photon fluorescent microscopy and bioimaging. Based on these two-photon properties of our QDs, we continue to investigate the bioimaging applications with two-photon microscopy. The results of the fluorescence images of living cells with the QDs demonstrate that QDs could be penetrate into cell membrane, then steadily and dispersedly distribute at the cytoplasm, which further indicates such QDs could be excellent candidate for two-photon microscopy applications.
机译:这表明在甲苯中CdSe-核心CdS / ZnS-多壳量子点(QDs)的荧光强度通过〜1.9的幂律与飞秒激光在5〜130 GW / cm〜2的输入强度有关。这清楚地表明了双光子激发(TPE)的光强度范围很广。核心尺寸2.9、4.0和5.3 nm在800 nm处的量子点的双光子吸收(TPA)截面分别为1980、5680和14600 GM。此外,CdSe芯直径与TPA横截面的对数-对数图显示斜率> 3时增加,表明TPA横截面与CdSe芯尺寸之间呈非线性相关关系。 TPE的宽光学范围和大的TPA横截面使这些QD成为两光子荧光显微镜和生物成像的极佳候选者。基于我们量子点的两个光子特性,我们将继续使用双光子显微镜研究生物成像应用。带有QD的活细胞的荧光图像结果表明,QD可以穿透细胞膜,然后稳定并分散地分布在细胞质中,这进一步表明此类QD可能是双光子显微镜应用的极佳候选者。

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