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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >The facile one-step aqueous synthesis of near-infrared emitting Cu+ doped CdS quantum dots as fluorescence bioimaging probes with high quantum yield and low cytotoxicity
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The facile one-step aqueous synthesis of near-infrared emitting Cu+ doped CdS quantum dots as fluorescence bioimaging probes with high quantum yield and low cytotoxicity

机译:简便的一步法水合成近红外发射Cu +掺杂的CdS量子点作为具有高量子产率和低细胞毒性的荧光生物成像探针

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摘要

In the past two decades, Cu-doped inorganic semiconductors with near-infrared (NIR) emitting have garnered stupendous research interest. Nevertheless, the incompatibility between the NIR emitting and high photoluminescence quantum yield (PLQY) of the Cu-doped fluorescent probes restricted the extensive application in biological imaging. Herein, the water soluble Cu+ doped CdS quantum dots (Cu+: CdS QDs) were prepared by using a one step synthesis method in a N-2 atmosphere. The d-dots possessed an ultra small size (similar to 5 nm), a high QY (25.6%), NIR emission (similar to 700 nm) and a low cytotoxicity because of which they were used as fluorescence probes. Besides, the study of the Cu d state and the mechanism of emission proposed the explanation for the fluorescence enhancement compared with previous reports. Moreover, the optimal conditions of dopants, stabilizers, sulfur ion concentration, pH, heating time and reflux temperature were also studied systematically to acquire bestquality Cu-doped nanocrystals. Due to the excellent optical properties and favourable biocompatibility, the Cu+: CdS QDs as fluorescence probes were successfully applied to label living 3T3 cells.
机译:在过去的二十年中,具有近红外(NIR)发射特性的掺杂Cu的无机半导体引起了极大的研究兴趣。然而,掺铜荧光探针的近红外发射和高光致发光量子产率(PLQY)之间的不相容性限制了其在生物成像中的广泛应用。在此,通过在N-2气氛中使用一步合成法来制备水溶性Cu +掺杂的CdS量子点(Cu +:CdS QDs)。 d点具有超小尺寸(约5 nm),高QY(25.6%),NIR发射(约700 nm)和低细胞毒性,因此被用作荧光探针。此外,对Cu d态和发射机理的研究与以前的报道相比,为荧光增强提供了解释。此外,还系统地研究了掺杂剂,稳定剂,硫离子浓度,pH,加热时间和回流温度的最佳条件,以获得质量最佳的掺杂铜的纳米晶体。由于出色的光学性能和良好的生物相容性,Cu +:CdS QDs作为荧光探针已成功应用于标记活3T3细胞。

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