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首页> 外文期刊>Journal of nanoscience and nanotechnology >Nanoarchitectonics of Photoluminescent InP/ZnS Quantum Dots Encapsulated Silica Capsules in Physiological Solutions
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Nanoarchitectonics of Photoluminescent InP/ZnS Quantum Dots Encapsulated Silica Capsules in Physiological Solutions

机译:光致发光InP / ZnS量子点的纳米建筑学封装了物理溶液中的二氧化硅胶囊

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摘要

Optical properties and morphology of silica nanocapsules (ca. 40 nm of size) incorporated with multiple InP/ZnS quantum dots (QDs, ca. 3.5 nm of size) have been investigated systematically in a typical cell culture medium (Dulbecco Modified Eagle Medium, DMEM buffer) over a period of time. The stability of silica nanocapsules with multiple QDs are found to be more robust, compared to the original aqueous pristine QDs over a period of 6 h. However, their photoluminescence efficiency is decreased after 8 h, accompanied by a change in morphology of the silica capsules. This change in morphology is caused by the dissolution of silica by alkali, and alkali-earth cations in the buffer. Our results confirm that the silica nanocapsule surface modification occurs in aqueous solution, resulting in a change from hydroxyl to carboxyl group. We also discuss possible methods to further increase the stability of the silica nanocapsules in physiological solutions.
机译:在典型的细胞培养基中系统地研究了掺入多个InP / ZnS量子点(QDS,CA.3.5nm的大小)的二氧化硅纳米胶囊(约40nm尺寸)的光学性质和形态。(Dulbecco改性鹰培养基,DMEM 缓冲区)在一段时间内。 发现具有多个QD的二氧化硅纳米胶囊的稳定性更鲁棒,与原始丙氨酸QD在6小时内相比。 然而,在8小时后,它们的光致发光效率降低,伴随着二氧化硅胶囊的形态的变化。 这种形态的变化是由碱通过碱的溶解和缓冲液中的碱土阳离子引起的。 我们的结果证实,二氧化硅纳米胶囊表面改性在水溶液中发生,导致从羟基到羧基的变化。 我们还讨论了进一步提高了生理溶液中二氧化硅纳米胶囊的稳定性的可能方法。

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