Chang Yanjiao, Yan Xiaoxia, Wang Qian, Ren Lili, Tong Jin, Zhou Jiang
Key Laboratory of Bionic Engineering (Ministry of Education), College of Biological and Agricultural Engineering, Jilin University, Changchun 130022, China.
Key Laboratory of Bionic Engineering (Ministry of Education), College of Biological and Agricultural Engineering, Jilin University, Changchun 130022, China.
Food Chem. 2017 Jul 15;227:369-375. doi: 10.1016/j.foodchem.2017.01.111. Epub 2017 Jan 25.
The purpose of this work was to develop an approach to produce size controlled starch nanoparticles (SNPs), via precipitation with high efficiency and low cost. High concentration starch aqueous pastes (up to 5wt.%) were treated by ultrasound. Viscosity measurements and size exclusion chromatography characterization revealed that, after 30min ultrasonic treatment, viscosity of the starch pastes decreased two orders of magnitude and the weight average molecular weight of the starch decreased from 8.4×10 to 2.7×10g/mol. Dynamic light scattering measurements and scanning electron microscopy observations showed that the SNPs prepared from the starch pastes with ultrasonic treatments were smaller (∼75nm) and more uniform. Moreover, SNPs could be obtained using less non-solvents. X-ray diffraction results indicated that effect of the ultrasonic treatment on crystalline structure of the SNPs was negligible. Ultrasound can be utilized to prepare smaller SNPs through nanoprecipitation with higher efficiency and lower cost.
这项工作的目的是开发一种方法,通过高效、低成本的沉淀法制备尺寸可控的淀粉纳米颗粒(SNP)。对高浓度淀粉水溶液糊剂(高达5wt.%)进行超声处理。粘度测量和尺寸排阻色谱表征表明,超声处理30分钟后,淀粉糊剂的粘度降低了两个数量级,淀粉的重均分子量从8.4×10降至2.7×10g/mol。动态光散射测量和扫描电子显微镜观察表明,经超声处理的淀粉糊剂制备的SNP更小(约75nm)且更均匀。此外,使用较少的非溶剂即可获得SNP。X射线衍射结果表明,超声处理对SNP晶体结构的影响可忽略不计。超声可用于通过纳米沉淀法以更高的效率和更低的成本制备更小的SNP。