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无机盐对二氧化钛纳米片悬浮液的去稳定作用:霍夫迈斯特序列和舒尔茨-哈迪规则。

Destabilization of Titania Nanosheet Suspensions by Inorganic Salts: Hofmeister Series and Schulze-Hardy Rule.

作者信息

Rouster Paul, Pavlovic Marko, Szilagyi Istvan

机构信息

Department of Inorganic and Analytical Chemistry, University of Geneva , CH-1205 Geneva, Switzerland.

出版信息

J Phys Chem B. 2017 Jul 13;121(27):6749-6758. doi: 10.1021/acs.jpcb.7b04286. Epub 2017 Jun 28.

Abstract

Ion specific effects on colloidal stability of titania nanosheets (TNS) were investigated in aqueous suspensions. The charge of the particles was varied by the pH of the solutions, therefore, the influence of mono- and multivalent anions on the charging and aggregation behavior could be studied when they were present either as counter or co-ions in the systems. The aggregation processes in the presence of inorganic salts were mainly driven by interparticle forces of electrostatic origin, however, chemical interactions between more complex ions and the surface led to additional attractive forces. The adsorption of anions significantly changed the surface charge properties and hence, the resistance of the TNS against salt-induced aggregation. On the basis of their ability in destabilization of the dispersions, the monovalent ions could be ordered according to the Hofmeister series in acidic solutions, where they act as counterions. However, the behavior of the biphosphate anion was atypical and its adsorption induced charge reversal of the particles. The multivalent anions destabilized the oppositely charged TNS more effectively and the aggregation processes followed the Schulze-Hardy rule. Only weak or negligible interactions were observed between the anions and the particles in alkaline suspensions, where the TNS possessed negative charge.

摘要

研究了离子对二氧化钛纳米片(TNS)水悬浮液中胶体稳定性的特定影响。颗粒的电荷随溶液的pH值而变化,因此,当单价和多价阴离子作为抗衡离子或共离子存在于体系中时,可以研究它们对带电和聚集行为的影响。无机盐存在下的聚集过程主要由静电起源的颗粒间力驱动,然而,更复杂离子与表面之间的化学相互作用导致了额外的吸引力。阴离子的吸附显著改变了表面电荷性质,从而改变了TNS对盐诱导聚集的抗性。根据它们使分散体失稳的能力,在酸性溶液中,单价离子可根据霍夫迈斯特序列排序,此时它们作为抗衡离子。然而,磷酸二氢根阴离子的行为是非典型的,其吸附导致颗粒电荷反转。多价阴离子更有效地使带相反电荷的TNS失稳,聚集过程遵循舒尔策-哈迪规则。在碱性悬浮液中,TNS带负电荷,此时观察到阴离子与颗粒之间只有微弱或可忽略不计的相互作用。

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