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Size-Controlled Synthesis of Vaterite Calcium Carbonate by the Mixing Method: Aiming for Nanosized Particles

机译:混合法尺寸控制合成球ate石碳酸钙:针对纳米粒子

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摘要

Extensive use of vaterite for encapsulation and drug delivery requires the means for controlling the size of crystals synthesized via simple mixing of calcium chloride and sodium carbonate. Importantly, to take full advantage of vaterite for nanomedicine, the particle size has to be confined to the nanoscale. The impacts of temperature, salt concentration, and polyol additives are systematically researched with the purpose to achieve nanosized crystals of vaterite in a controlled way. The influence of polyols (ethylene glycol, glycerol, and erythritol) is studied here with respect to their concentration, viscosity of water/polyol mixtures, and number of hydroxyl groups per polyol molecule. Among the investigated polyols, ethylene glycol and glycerol are found to promote the formation of vaterite enabling spherical framboid particles in the size range of 2 mu m to 350 nm. The conditions suitable for synthesis of submicron CaCO3 are chosen to obtain nanosized sacrificial templates (500 +/- 100 nm in diameter) for capsules of dextran sulfate and poly-L-arginine assembled in a layer-by-layer fashion.
机译:球ate石在封装和药物输送中的广泛应用需要通过简单混合氯化钙和碳酸钠来控制合成晶体尺寸的方法。重要的是,要充分利用球ate石用于纳米医学,必须将粒径限制在纳米级。系统地研究了温度,盐浓度和多元醇添加剂的影响,目的是以可控方式获得球v石的纳米晶体。本文就多元醇(乙二醇,甘油和赤藓糖醇)的浓度,水/多元醇混合物的粘度以及每个多元醇分子的羟基数进行了研究。在所研究的多元醇中,发现乙二醇和甘油可促进球v石的形成,从而形成尺寸在2微米至350纳米范围内的球形黄烷颗粒。选择适合于合成亚微米CaCO3的条件,以获得纳米级的牺牲模板(直径500 +/- 100 nm),用于硫酸葡聚糖和聚L-精氨酸的胶囊以逐层方式组装。

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