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首页> 外文期刊>Macromolecular Research >Effects of Salts on Rheological Behaviour of Salvia Hydrogels
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Effects of Salts on Rheological Behaviour of Salvia Hydrogels

机译:盐对丹参水凝胶流变行为的影响

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Rheological behavior of natural hydrogel produced from seeds of three Salvia spp. (S. miltiorrhiza (SM), S. sclarea (SS), S. viridis (SV)) was investigated by using a Rheometer equipped with a cone and plate geometry measuring system under never-dried condition. Different chemical contents of such hydrogels give significant effects on their rheological properties. Because of incomplete penetration of water inside the hydrogels after drying before-dried hydrogels were used for rheological analysis. To know molecular interactions which predominated in the gel formation, some constituents were externally added to the 1.0% (w/w) hydrogel. Addition of urea to disrupt hydrogen bonds reduced 3.4-67% viscosity of the untreated hydrogels and changed viscoelastic properties from gel to liquid-like behavior. Neutral salts added to the hydrogel solution at 0.1 M also lowered the viscosity in a manner related with increase in size of cations and temperature. Changing from gel state to liquid-like state was also easily confirmed by oscillation measurement (storage, G', and loss, G", modulii) typically observed in the cases of potassium sulfate and potassium thiocyanate. Influence of pH variation on the viscosity explained that weak alkaline condition (pH 8-9) creates a higher resistance to flow due to increasingly electrostatic repulsions between negative charges (COO~-). Importance of calcium bridges was also demonstrated by recovery of viscosity of the hydrogels by addition of calcium after acidification. The summarized results indicate that electrostatic repulsion is a major contributor for production of hydrogel structure.
机译:从三个丹参种子产生的天然水凝胶的流变行为。通过使用配备了锥板几何测量系统的流变仪,在永不干燥的条件下,研究了(S. miltiorrhiza(SM),S。sclarea(SS),S。viridis(SV))。这种水凝胶的不同化学含量对其流变性质产生重大影响。由于干燥后水不完全渗透到水凝胶内部,因此将干燥的水凝胶用于流变分析。为了了解在凝胶形成中占主导地位的分子相互作用,将一些成分从外部添加到1.0%(w / w)水凝胶中。加入脲以破坏氢键降低了未经处理的水凝胶的3.4-67%的粘度,并将粘弹性从凝胶行为转变为液体行为。以0.1 M加入水凝胶溶液的中性盐也以与阳离子大小和温度增加相关的方式降低了粘度。还可以通过通常在硫酸钾和硫氰酸钾情况下观察到的振荡测量(存储,G'和损耗,G“,模量)轻松确认从凝胶状态到液体状的变化。pH值变化对粘度的影响弱碱性条件(pH 8-9)会由于负电荷(COO〜-)之间的静电排斥力增加而产生更高的流动阻力;还通过酸化后添加钙来恢复水凝胶的粘度来证明钙桥的重要性总结的结果表明静电排斥是产生水凝胶结构的主要贡献者。

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