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首页> 外文期刊>Journal of Colloid and Interface Science >Poly (vinylsulfonic acid) assisted synthesis of aqueous solution stable vaterite calcium carbonate nanoparticles
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Poly (vinylsulfonic acid) assisted synthesis of aqueous solution stable vaterite calcium carbonate nanoparticles

机译:聚(乙烯基磺酸)辅助水溶液稳定的球ate石碳酸钙纳米粒子的合成

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Calcium carbonate nanoparticles of the vaterite polymorph were synthesized by combining CaCl_2 and Na_2CO_3 in the presence of poly (vinylsulfonic acid) (PVSA). By studying the important experimental parameters we found that controlling PVSA concentration, reaction temperature, and order of reagent addition the particle size, monodispersity, and surface charge can be controlled. By increasing PVSA concentration or by decreasing temperature CCNPs with an average size from ≈150 to 500 nm could be produced. We believe the incorporation of PVSA into the reaction plays a dual role to (1) slow down the nucleation rate by sequestering calcium and to (2) stabilize the resulting CCNPs as the vaterite polymorph, preventing surface calcification or aggregation into microparticles. The obtained vaterite nanoparticles were found to maintain their crystal structure and surface charge after storage in aqueous buffer for at least 5 months. The aqueous stable vaterite nanoparticles could be a useful platform for the encapsulation of a large variety of biomolecules for drug delivery or as a sacrificial template toward capsule formation for biosensor applications.
机译:通过在聚(乙烯基磺酸)(PVSA)存在下,将CaCl_2和Na_2CO_3混合,合成了球v石多晶型物的碳酸钙纳米粒子。通过研究重要的实验参数,我们发现控制PVSA浓度,反应温度和试剂添加顺序可以控制粒径,单分散性和表面电荷。通过增加PVSA浓度或通过降低温度,可以生产平均粒径约为150至500 nm的CCNP。我们认为,将PVSA掺入反应中起双重作用:(1)通过螯合钙来减慢成核速率,以及(2)将所得CCNP稳定为球ate石多晶型物,从而防止表面钙化或聚集成微粒。发现获得的球ate石纳米颗粒在水性缓冲液中存储至少5个月后仍保持其晶体结构和表面电荷。水性稳定的球ate石纳米颗粒可能是用于封装各种生物分子以进行药物递送的有用平台,或作为用于胶囊形成以用于生物传感器应用的牺牲模板。

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