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Design and fabrication of covalently linked PEGylated nanohybrids of ZnO quantum dots with preserved and tunable fluorescence

机译:具有可调谐和可调荧光的ZnO量子点共价连接的PEG化纳米杂化物的设计和制造

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Non-toxicity, high photo stability, biocompatibility and long lasting narrow emissions are some prime factors for an efficient biological marker. Unfortunately, commercial dyes and Cd-based fluorescent probes do not have such characteristics. Therefore, an efficient fluorescent probe is extremely desirable. Herein, functionalized ZnO quantum dots (QDs) and their nanohybrids with polyethylene glycol (PEG) were prepared by a room temperature solution growth tactic using 3-isocyanatopropyltriethoxysilane (3-ICPTES) as a coupling agent. Isocyanato functional groups were hosted on the surface of as prepared ZnO QDs by introducing optimized stoichiometric amounts of 3-ICPTES. The ZnO QDs were further bonded covalently to PEG via urethane linkages by the reaction of isocyanato functionalized ZnO QDs and hydroxyl groups from PEG molecules. The fluorescence was tuned from cyan to yellowish color after the functionalization of ZnO QDs with 3-ICPTES. Moreover, PEGylated nanohybrids showed greater water dispensability with photoluminescence preserved for at least six months. The present synthesis and coupling strategy for QDs may open up new ways to achieve biocompatible nanohybrids with higher stability and efficient luminescence for bio-imaging and biomedical applications.
机译:无毒,高光稳定性,生物相容性和持久窄排放是有效生物标记物的一些主要因素。不幸的是,商业染料和基于Cd的荧光探针没有这种特性。因此,非常需要高效的荧光探针。本文中,使用3-异氰酸根合丙基三乙氧基硅烷(3-ICPTES)作为偶联剂,通过室温溶液生长策略制备了功能化的ZnO量子点(QD)及其与聚乙二醇(PEG)的纳米杂化物。通过引入优化的化学计量数量的3-ICPTES,异氰酸酯官能团被保留在所制备的ZnO QD的表面上。通过异氰酸酯官能化的ZnO QD和PEG分子的羟基反应,ZnO QD通过氨基甲酸酯键进一步与PEG共价键合。用3-ICPTES对ZnO QD进行功能化后,荧光从青色变为淡黄色。此外,聚乙二醇化的纳米杂化物显示出更大的水分散性,并且光致发光保存了至少六个月。用于量子点的当前合成和偶联策略可以为生物成像和生物医学应用开辟新的方法,以实现具有更高稳定性和高效发光的生物相容性纳米杂交体。

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