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Spherical polyelectrolyte brushes

机译:球形聚电解质电刷

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We review recent work on colloidal particles bearing a dense layer of linear polyelectrolyte chains on their surface.These systems have been termed"spherical polyelectrolyte brush"(SPB)because the polyelectrolyte chains have been grafted densely to the surface of the core particles.The different methods to generate such particles,namely self-assembly to form micelles,adsorption of block copolymers onto spherical colloid particles,and photo-emulsion polymerization are reviewed.The equilibrium structure of the surface layer of the particles in aqueous solution can be determined by scattering methods and electron microscopy.The structure of SPB is governed by the marked osmotic pressure of the counterions that are confined within the brush layer.This is in full accord with recent theoretical deductions discussed in detail herein.The accumulation of counterions can be used to generate metallic nanoparticles within the brush layer.The dynamics of the particles in aqueous suspension as e.g.the flow behavior in dilute solution can directly be derived from static data.Moreover,the interaction of the SPB with solid interfaces is discussed.It is demonstrated that particles bearing positively charged polyelectrolyte chains interact strongly with negatively charged surfaces.A final point discussed here is the interaction of SPB with proteins in aqueous solution.Here it is shown that these systems have a great potential as novel carrier particles for functional biomolecules.
机译:我们回顾了最近在表面上带有线性聚电解质链的致密层的胶体颗粒的研究。这些系统被称为“球形聚电解质刷”(SPB),因为聚电解质链被紧密地接枝到核心颗粒的表面。综述了产生此类颗粒的方法,即自组装形成胶束,嵌段共聚物在球形胶体颗粒上的吸附以及光乳液聚合的方法。可以通过散射法确定水溶液中颗粒表面层的平衡结构。 SPB的结构由限制在刷层中的抗衡离子的显着渗透压控制,这与本文最近详细讨论的理论推论完全一致。抗衡离子的积累可用于生成金属刷层中的纳米颗粒。稀溶液中的流动行为可以直接从静态数据得出。此外,还讨论了SPB与固体界面的相互作用。研究表明,带有正电荷的聚电解质链的颗粒与负电荷的表面具有强烈的相互作用。证明了这些系统作为功能性生物分子的新型载体粒子具有巨大的潜力。

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