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Determination of Effective Particle Density for Sterically Stabilized Carbon Black Particles: Effect of Diblock Copolymer Stabilizer Composition

机译:空间稳定炭黑颗粒有效颗粒密度的测定:二嵌段共聚物稳定剂组成的影响

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摘要

Two poly(styrene-b-hydrogenated isoprene) (PS-PEP) copolymers and a poly(styrene-b-hydrogenated butadiene) (PS-PB) diblock copolymer of differing polystyrene content (20, 28 or 35 mol %) and molecular weight (117183 kg mol(-1)) are examined. These copolymers form star-like micelles in n-dodecane, as judged by TEM, DLS, and SAXS studies. At ambient temperature, such micelles are known to adsorb intact onto a model colloidal substrate such as carbon black, conferring a high degree of dispersion (Growney, D. J.; Mykhaylyk, O. O.; Armes, S. P. Langmuir 2014, 30, 6047). Isotherms for micellar adsorption on carbon black at 20 degrees C are constructed using a supernatant depletion assay based on UV spectroscopy by utilizing the aromatic chromophore in the polystyrene block. Perhaps surprisingly, the diblock copolymer with the lowest polystyrene content has the strongest affinity for the carbon black particles. Assuming that the star-like diblock copolymer micelles adsorb onto carbon black to form hemi-micelles with a stabilizer layer thickness equal to the mean micelle radius, the effective particle density of the resulting sterically stabilized carbon black particles in n-dodecane can be estimated from the SAXS micelle dimensions based on geometric considerations. As an approximation, a spherical core-shell morphology was assumed, and the primary grain size of the carbon black particles was determined to be 74 nm diameter as judged by BET surface area analysis. Using this approach, effective particle densities of 0.90, 0.91, and 0.92 g cm(-3) were calculated for sterically stabilized carbon black particles prepared using the PS-PB20, PS-PEP28, and PS-PEP35 diblock copolymers, respectively. These densities are significantly lower than that of carbon black (1.89 g cm(-3)), which indicates that the sterically stabilized carbon black particles are substantially solvated. Since the rate of sedimentation of the sterically stabilized carbon black particles depends on the density difference between the effective particle density and that of n-dodecane (0.75 g cm(-3)), particle size analysis via analytical centrifugation incurs large sizing errors unless the above corrected effective particle densities are utilized. This is important because analytical centrifugation is a highly convenient technique for assessing the relative degree of dispersion of sterically stabilized carbon black particles, which are utilized to inkjet inks and coatings formulations.
机译:两种聚苯乙烯含量(20、28或35 mol%)和分子量不同的聚(苯乙烯-b-氢化异戊二烯)(PS-PEP)共聚物和聚(苯乙烯-b-氢化丁二烯)(PS-PB)二嵌段共聚物检查(117183 kg mol(-1))。通过TEM,DLS和SAXS研究判断,这些共聚物在正十二烷中形成星形胶束。在环境温度下,已知此类胶束会完整地吸附到模型胶体基质(如炭黑)上,从而具有高度分散性(Growney,D.J .; Mykhaylyk,O.O .; Armes,S.P.Langmuir 2014,30,6047)。利用聚苯乙烯嵌段中的芳香族发色团,利用基于紫外光谱的上清液耗竭试验,构建了用于胶束在20℃炭黑上吸附的等温线。也许令人惊讶的是,具有最低聚苯乙烯含量的二嵌段共聚物对炭黑颗粒具有最强的亲和力。假设星形二嵌段共聚物胶束吸附到炭黑上形成半胶束,其胶束层厚度等于平均胶束半径,则可以从正十二烷中估算得到的空间稳定的炭黑颗粒的有效颗粒密度。基于几何考虑的SAXS胶束尺寸。作为近似,假设球形核-壳形态,并且通过BET表面积分析判断,炭黑颗粒的一次粒径确定为74nm直径。使用这种方法,对于使用PS-PB20,PS-PEP28和PS-PEP35二嵌段共聚物分别制备的空间稳定炭黑颗粒,计算出的有效颗粒密度分别为0.90、0.91和0.92 g cm(-3)。这些密度显着低于炭黑(1.89 g cm(-3)),这表明空间稳定的炭黑颗粒已基本溶剂化。由于空间稳定化炭黑颗粒的沉降速率取决于有效颗粒密度与正十二烷(0.75 g cm(-3))之间的密度差,因此通过分析离心法进行粒度分析会导致较大的上浆误差,除非利用以上校正的有效颗粒密度。这很重要,因为分析离心法是一种非常方便的技术,可用于评估空间稳定的炭黑颗粒的相对分散度,该颗粒用于喷墨油墨和涂料配方。

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