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首页> 外文期刊>Journal of Colloid and Interface Science >AFM colloidal forces measured between microscopic probes and flat substrates in nanoparticle suspensions
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AFM colloidal forces measured between microscopic probes and flat substrates in nanoparticle suspensions

机译:纳米探针悬浮液中显微镜探针和平坦基质之间测得的AFM胶体力

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摘要

Colloidal forces between atomic force microscopy probes of 0.12 and 0.58 N/m spring constant and flat substrates in nanoparticle suspensions were measured. Silicon nitride tips and glass spheres with a diameter of 5 and 15 pm were used as the probes whereas mica and silicon wafer were used as substrates. Aqueous suspensions were made of 5-80 nm alumina and 10 nm silica particles. Oscillatory force profiles were obtained using atomic force microscope. This finding indicates that the nanoparticles remain to be stratified in the intervening liquid films between the probe and substrate during the force measurements. Such structural effects were manifested for systems featuring attractive and weak repulsive interactions of nanoparticles with the probe and substrate. Oscillation of the structural forces shows a periodicity close to the size of nanoparticles in the suspension. When the nanoparticles are oppositely charged to the probes, they tend to coat the probes and hinder probe-substrate contact. (c) 2006 Elsevier Inc. All rights reserved.
机译:测量了0.12和0.58 N / m弹簧常数的原子力显微镜探针与纳米颗粒悬浮液中平坦基材之间的胶体力。直径为5和15 pm的氮化硅针尖和玻璃球用作探针,而云母和硅晶片则用作衬底。由5-80nm的氧化铝和10nm的二氧化硅颗粒制成水悬浮液。使用原子力显微镜获得振荡力曲线。该发现表明在力测量过程中,纳米颗粒在探针和基底之间的中间液体膜中仍保持分层。对于以纳米粒子与探针和底物的吸引和弱排斥相互作用为特征的系统,这种结构效应得以体现。结构力的振荡显示出接近悬浮液中纳米颗粒大小的周期性。当纳米颗粒带相反电荷的探针时,它们倾向于覆盖探针并阻碍探针与底物的接触。 (c)2006 Elsevier Inc.保留所有权利。

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