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An ITC Study on the Interaction Energy Between Galactomannan Biopolymers and Selected MO2 Nanoparticles in Hydrogels

机译:一项关于半乳糖量生物聚合物和水凝胶中选定的MO2纳米颗粒之间相互作用能量的ITC研究

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摘要

The interaction of guar gum, a galactomannan polysaccharide, and its derivative hydroxypropyl guar (HPG) with MO2 nanoparticles whereby M exhibits a decreasing metallic character (Ti ->Sn -> Si) and MO2 different sizes (6 – 15 nm) was studied by applying isothermal titration calorimetry (ITC) and rotational viscosimetry. It was found that the crosslinking ability of the oxide nanoparticles towards galactomannans is controlled by the electropositive character of M and the size of the nanoparticles which should be as small as possible (< 10 nm) to produce extremely viscous gels. The thermodynamic parameters DH, DS and DG for the association reaction obtained from ITC revealed that the interaction generally is entropy driven, slightly stronger for guar gum than for HPG and is decreasing from TiO2 to SnO2 to SiO2. The results explain the observations made in the viscosimetric measurements.
机译:瓜尔胶,半乳糖多糖及其衍生羟基丙基瓜(HPG)与MO2纳米颗粒的相互作用,其中M的金属特性(Ti-> sn-> si)和MO2不同尺寸(6-15 nm)(6-15 nm)。 应用等温滴定量热法(ITC)和旋转粘膜计。 发现氧化物纳米颗粒对半乳糖量的交联能力受M的电阳性特征和纳米颗粒的大小控制,这些特征应尽可能小(<10 nm)产生极其粘性的凝胶。 从ITC获得的缔合反应的热力学参数DH,DS和DG表明,这种相互作用通常是熵驱动的,对于HPG而言,瓜尔胶的强度稍强,并且从TIO2到SNO2降低到SNO2到SIO2。 结果解释了粘膜计测量中的观察结果。

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