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Characterizing internal cavity modulation of corn starch microcapsules

机译:表征玉米淀粉微胶囊的内腔调节

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摘要

Swelling of normal corn starch granules through heating in water leads to enlargement of the starch particles and a corresponding increase in internal cavity size. Through control of the swelling extent, it is possible to tune the size of the internal cavity for the starch microcapsules (SMCs). The swelling extent can be controlled through regulation of the swelling time and the swelling temperature. Since the swelling extent is correlated with particle size and solubility, these aspects may also be controlled. Imaging the SMCs at increasing levels of swelling extent using scanning electron microscopy (SEM) allowed for the internal cavity swelling process to be clearly observed. Brightfield and polarizing light microscopy validated the SEM observations. Confocal laser scanning microscopy provided further validation and indicated that it is possible to load the SMCs with large molecules through diffusion. The highly tunable SMCs are novel microparticles which could have applications in various industries.
机译:通过在水中加热膨胀的正常玉米淀粉颗粒肿胀导致淀粉颗粒的放大和内腔尺寸的相应增加。通过控制膨胀程度,可以调节淀粉微胶囊(SMC)的内腔的尺寸。可以通过调节溶胀时间和溶胀温度来控制膨胀程度。由于膨胀程度与粒度和溶解度相关,因此也可以控制这些方面。使用扫描电子显微镜(SEM)在允许清楚地观察到内腔膨胀过程的膨胀程度提高SMC。 BrightField和偏振光显微镜验证了SEM观察。共聚焦激光扫描显微镜提供了进一步的验证,并表明可以通过扩散将SMC与大分子加载。高度可调的SMC是新型微粒,可以在各种行业中具有应用。

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