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Optimization and characterization of high pressure homogenization produced chemically modified starch nanoparticles

机译:高压均质化化学改性淀粉纳米粒子的优化与表征

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摘要

Chemically modified starch (RS4) nanoparticles were synthesized through homogenization and water-in-oil mini-emulsion cross-linking. Homogenization was optimized with regard to z-average diameter by using a three-factor-three-level Box–Behnken design. Homogenization pressure (X1), oil/water ratio (X2), and surfactant (X3) were selected as independent variables, whereas z-average diameter was considered as a dependent variable. The following optimum preparation conditions were obtained to achieve the minimum average size of these nanoparticles: 50 MPa homogenization pressure, 10:1 oil/water ratio, and 2 g surfactant amount, when the predicted z-average diameter was 303.6 nm. The physicochemical properties of these nanoparticles were also determined. Dynamic light scattering experiments revealed that RS4 nanoparticles measuring a PdI of 0.380 and an average size of approximately 300 nm, which was very close to the predicted z-average diameter (303.6 nm). The absolute value of zeta potential of RS4 nanoparticles (39.7 mV) was higher than RS4 (32.4 mV), with strengthened swelling power. X-ray diffraction results revealed that homogenization induced a disruption in crystalline structure of RS4 nanoparticles led to amorphous or low-crystallinity. Results of stability analysis showed that RS4 nanosuspensions (particle size) had good stability at 30 °C over 24 h.
机译:通过均质化和油包水微乳液交联法合成了化学改性淀粉(RS4)纳米粒子。通过使用三因素三级Box–Behnken设计,针对z平均直径优化了均质化。选择均质压力(X1),油水比(X2)和表面活性剂(X3)作为自变量,而z平均直径被视为因变量。获得以下最佳制备条件以实现这些纳米粒子的最小平均尺寸:当预测的z平均直径为303.6 nm时,均质压力为50 MPa,油水比为10:1,表面活性剂的量为2 g。还确定了这些纳米颗粒的理化性质。动态光散射实验表明,RS4纳米颗粒的PdI为0.380,平均大小约为300 nm,非常接近于预测的z平均直径(303.6 nm)。 RS4纳米粒子(39.7 mV)的Zeta电位绝对值高于RS4(32.4 mV),具有增强的溶胀力。 X射线衍射结果表明,均质化引起RS4纳米颗粒的晶体结构破坏,导致非晶态或低结晶度。稳定性分析结果表明,RS4纳米悬浮液(粒径)在30°C下24小时内具有良好的稳定性。

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