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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Colloidal interactions between particles with tethered nonpolar chains dispersed in polar media: Direct correlation between dynamic rheology and interaction parameters
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Colloidal interactions between particles with tethered nonpolar chains dispersed in polar media: Direct correlation between dynamic rheology and interaction parameters

机译:分散在极性介质中的具有束缚的非极性链的颗粒之间的胶体相互作用:动态流变学和相互作用参数之间的直接关联

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Colloidal interactions between particles dispersed in a liquid can be suitably tailored by modifying the surface chemistry of the particles. In the case of fumed silica particles, the surface can be systematically altered from hydrophilic to hydrophobic by replacing a portion of the original silanol (Si-OH) groups by nonpolar alkyl chains. In this study, we probe the effect of surface modification of fumed silica on their rheology and microstructure in polar media. Variables of interest include the length of the tethered alkyl chain and the extent of surface coverage. For the continuous phase, we examine a range of polyether liquids comprising different architectures and molecular weights. We find that when the alkyl chains are Cg or longer, and are attached at saturation levels, a dense nonpolar surface layer is formed on each silica unit. Such particles experience strong interactions in polar media, leading to the formation of a volume-filling network (gel). We show that these interactions arise as a result of the negative free energy of mixing between the tethered chains, owing to the mismatch in chemical nature between chains and solvent. In this flocculation process van der Waals interactions between the particles play a negligible role. We also find that the greater the mismatch between particle surface and liquid, the greater the "stickiness" of the surface chains and correspondingly, the higher the elastic modulus (G') of the fumed silica network. This leads to a unique correlation between G' and a term comprising the X parameter for the chain-solvent pair. An approximate but useful form of this correlation can be written as G' similar to (delta(s) - delta(m))(2) where the latter expression characterizes the mismatch in solubility parameters between the surface chains (delta(s)) and the liquid medium (delta(m)). [References: 48]
机译:分散在液体中的颗粒之间的胶体相互作用可以通过改变颗粒的表面化学来适当地调整。在气相二氧化硅颗粒的情况下,可以通过用非极性烷基链取代一部分原始的硅烷醇(Si-OH)基团,将表面从亲水性系统地改变为疏水性。在这项研究中,我们探讨了气相二氧化硅的表面改性对其在极性介质中的流变性和微观结构的影响。感兴趣的变量包括连接的烷基链的长度和表面覆盖的程度。对于连续相,我们研究了一系列包含不同结构和分子量的聚醚液体。我们发现,当烷基链为Cg或更长,并且以饱和水平连接时,在每个二氧化硅单元上会形成致密的非极性表面层。这样的颗粒在极性介质中经历强烈的相互作用,导致形成体积填充网络(凝胶)。我们表明,由于链和溶剂之间化学性质的不匹配,这些相互作用是由于束缚链之间混合的负自由能而产生的。在该絮凝过程中,颗粒之间的范德华相互作用起着微不足道的作用。我们还发现,颗粒表面和液体之间的失配越大,表面链的“粘性”越大,并且相应地,气相法二氧化硅网络的弹性模量(G')越高。这导致G'与包含链溶剂对的X参数的项之间具有唯一的相关性。这种相关性的一种近似但有用的形式可以写成G',类似于(delta(s)-delta(m))(2),其中后者表示表征表面链之间的溶解度参数不匹配的现象。和液体介质(delta(m))。 [参考:48]

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