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表面功能化乳胶颗粒作为水介质中氧化锌矿化的控制剂。

Surface-functionalized latex particles as controlling agents for the mineralization of zinc oxide in aqueous medium.

作者信息

Muñoz-Espí Rafael, Qi Yun, Lieberwirth Ingo, Gómez Clara M, Wegner Gerhard

机构信息

Max-Planck-Institut für Polymerforschung, Ackermannweg 10, 55128 Mainz, Germany.

出版信息

Chemistry. 2005 Dec 16;12(1):118-29. doi: 10.1002/chem.200500860.

Abstract

Polystyrene latex particles modified at the surface with different hydrophilic functional groups were prepared by miniemulsion polymerization and used as controlling agents in the crystallization of zinc oxide from aqueous medium. The effects of the chemical nature of the surface functionalization and the latex concentration on the crystal growth, morphology, and crystalline structure of the resulting zinc oxide were analyzed. Micro- and submicrosized crystals with a broad variety of morphologies depending on the functionalization were obtained. Among the different latexes studied, the acrylic-acid-derived particles were shown to be a convenient system for further quantitative investigations. In this case, as the additive concentration increases, the length-to-width ratio (aspect ratio) of the crystals decreases systematically. Preferential adsorption of the latex particles onto the fast-growing faces {001} of ZnO is assumed to follow a Langmuir-type isotherm, and interaction of the adsorbed particles with the growth centers will reduce the growth rate in [001]. This leads to a quantitative relationship linking the aspect ratio to the latex concentration at constant diameter and surface chemistry of the latex. The dependence of the aspect ratio on charge density of the latex can also be modeled by an algorithm in which attractive forces between the latex particle and the ZnO surface are balanced against repulsive forces of an osmotic nature. The latter are associated with the confined volume between the crystal and latex particle surfaces.

摘要

通过细乳液聚合制备了表面用不同亲水性官能团修饰的聚苯乙烯胶乳颗粒,并将其用作从水介质中结晶氧化锌的控制剂。分析了表面功能化的化学性质和胶乳浓度对所得氧化锌晶体生长、形态和晶体结构的影响。获得了根据功能化具有多种形态的微米级和亚微米级晶体。在所研究的不同胶乳中,丙烯酸衍生的颗粒被证明是用于进一步定量研究的便利体系。在这种情况下,随着添加剂浓度的增加,晶体的长宽比(纵横比)系统地降低。假定胶乳颗粒在ZnO的快速生长面{001}上的优先吸附遵循朗缪尔型等温线,并且吸附颗粒与生长中心的相互作用将降低[001]方向上的生长速率。这导致了在胶乳直径和表面化学性质恒定的情况下,纵横比与胶乳浓度之间的定量关系。纵横比对胶乳电荷密度的依赖性也可以通过一种算法来模拟,其中胶乳颗粒与ZnO表面之间的吸引力与渗透性质的排斥力相平衡。后者与晶体和胶乳颗粒表面之间的受限体积有关。

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