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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Colloidal stability of self-assembled monolayer-coated gold nanoparticles: The effects of surface compositional and structural heterogeneity
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Colloidal stability of self-assembled monolayer-coated gold nanoparticles: The effects of surface compositional and structural heterogeneity

机译:自组装单层涂层金纳米粒子的胶体稳定性:表面组成和结构异质性的影响

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摘要

Surface heterogeneity plays an important role in controlling colloidal phenomena. This study investigated the self-aggregation and bacterial adsorption of self-assembled monolayer coated gold nanoparticles (AuNPs) with different surface compositional and structural heterogeneity. Evaluation was performed on AuNPs coated with (1) one ligand with charged terminals (MUS), (2) two homogeneously distributed ligands with respectively charged and nonpolar terminals (brOT) and (3) two ligands with respectively charged and nonpolar terminals with stripe-like distribution (OT). The brOT particles have less negative electrophoretic mobility (EPM) values, smaller critical coagulation concentration (CCC) and larger adsorption rate on Escherichia coli than that of AuNPs with homogeneously charged groups, in good agreement with DLVO predictions. Although the ligand composition on the surface of AuNPs is the same, OT particles have less negative EPM values and faster rate of bacterial adsorption, but much larger CCC compared to brOT. The deviation of OT particles from brOT and MUS in their self-aggregation behavior reflects the effects of surface heterogeneity on electrical double layer structures at the interface. Results from the present study demonstrated that, besides chemical composition, organization of ligands on particle surface is important in determining their colloidal stability.
机译:表面异质性在控制胶体现象中起重要作用。这项研究调查了具有不同表面组成和结构异质性的自组装单层涂层金纳米颗粒(AuNPs)的自聚集和细菌吸附。对涂有(1)一个带电荷末端(MUS)的配体,(2)两个带电荷和非极性末端(brOT)的均匀分布的配体和(3)两个带电荷和非极性末端的带条纹的配体的AuNPs进行评估像分销(OT)。与具有均匀电荷基团的AuNPs相比,brOT颗粒具有更低的负电泳迁移率(EPM)值,更小的临界凝结浓度(CCC)和更大的对大肠杆菌的吸附率,与DLVO预测非常吻合。尽管AuNPs表面的配体组成相同,但OT颗粒的负EPM值较小,细菌吸附速率更快,但与brOT相比,CCC更大。 OT粒子与brOT和MUS的自聚集行为之间的偏差反映了表面异质性对界面上双电层结构的影响。本研究的结果表明,除化学成分外,颗粒表面配体的组织对于确定其胶体稳定性也很重要。

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