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Fabrication of Nanocapsule Carriers from Multilayer-Coated Vaterite Calcium Carbonate Nanoparticles

机译:从多层包覆的球ate石碳酸钙纳米粒子制备纳米胶囊载体。

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Nanosized luminescent sensors were prepared as reagents for optical sensing and imaging of oxygen using ratiometric emission properties of a two-dye system. Polymeric capsules were fabricated utilizing poly(vinylsulfonic acid) (PVSA)-stabilized vaterite CaCO3 nanoparticles (CCNPs) as sacrificial templates. The buffer and polymeric surfactant requirements of the layer-by-layer (LbL) process were evaluated toward deposition of multilayer coatings and, ultimately, formation of hollow capsules using these interesting materials. CCNPs were found to be more stable in alkaline NaHCO3 buffer after repeated cycles of washing under sonication and resuspension. An intermediate PVSA concentration was required to maximize the loading of oxygen-sensitive porphyrin and oxygen-insensitive fluorescent nanoparticles in the CCNPs while maintaining minimal nanoparticle size. The CCNPs were then coated with polyelectrolyte multilayers and subsequent removal of the CaCO3 core yielded nanocapsules containing dye and fluorescent nanoparticles. The resulting nanocapsules with encapsulated luminophores functioned effectively as oxygen sensors with a quenching response of 89.28 +/- 2.59%, and O-2 (S = 1/2) = 20.91 mu M of dissolved oxygen.
机译:使用两染料系统的比例发射特性,制备了纳米级发光传感器作为用于光学检测和成像氧气的试剂。聚合物胶囊是利用聚(乙烯磺酸)(PVSA)稳定的球v石CaCO3纳米颗粒(CCNP)作为牺牲模板制作的。评估了逐层(LbL)工艺对缓冲液和聚合物表面活性剂的要求,以沉积多层涂层,并最终使用这些有趣的材料形成空心胶囊。在超声和重悬浮下反复洗涤后,发现CCNP在碱性NaHCO3缓冲液中更稳定。需要一个中等的PVSA浓度,以使CCNP中氧敏感的卟啉和氧敏感的荧光纳米颗粒的负载最大化,同时保持最小的纳米颗粒尺寸。然后将CCNPs涂上多层聚电解质,随后去除CaCO3核,得到含有染料和荧光纳米粒子的纳米胶囊。所得具有封装的发光体的纳米胶囊有效地用作氧传感器,具有89.28 +/- 2.59%的猝灭响应,并且O-2(S = 1/2)= 20.91μM溶解氧。

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