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首页> 外文期刊>ACS nano >Elasticity of an assembly of disordered nanoparticles interacting via either Van der Waals-bonded or covalent-bonded coating layers
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Elasticity of an assembly of disordered nanoparticles interacting via either Van der Waals-bonded or covalent-bonded coating layers

机译:通过Van der Waals键合或共价键合的涂层相互作用的无序纳米粒子集合体的弹性

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Tailoring physical and chemical properties at the nanoscale by assembling nanoparticles currently paves the way for new functional materials. Obtaining the desired macroscopic properties is usually determined by a perfect control of the contact between nanoparticles. Therefore, the physics and chemistry of nanocontacts are one of the central issues for the design of the nanocomposites. Since the birth of atomic force microscopy, crucial advances have been achieved in the quantitative evaluation of van der Waals and Casimir forces in nanostructures and of adhesion between the nanoparticles. We present here an investigation, by a noncontact method, of the elasticity of an assembly of nanoparticles interacting via either van der Waals-bonded or covalent-bonded coating layers. We demonstrate indeed that the ultrafast opto-acoustic technique, based on the generation and detection of hypersound by femtosecond laser pulses, is very sensitive to probe the properties of the nanocontacts. In particular, we observe and evaluate how much the subnanometric molecules present at nanocontacts influence the coherent acoustic phonon propagation along the network of the interconnected silica nanoparticles. Finally, we show that this ultrafast opto-acoustic technique provides quantitative estimates of the rigidity/stiffness of the nanocontacts.
机译:目前,通过组装纳米粒子来调整纳米级的物理和化学性质目前为新型功能材料铺平了道路。通常通过完美控制纳米颗粒之间的接触来确定获得所需的宏观性能。因此,纳米接触的物理和化学是纳米复合材料设计的中心问题之一。自原子力显微镜诞生以来,在定量评估纳米结构中范德华力和卡西米尔力以及纳米颗粒之间的粘附性方面取得了重要进展。我们在这里通过非接触式方法,研究通过范德华力键合或共价键合的涂层相互作用的纳米粒子组件的弹性。我们确实证明,基于飞秒激光脉冲产生和检测超音的超快光声技术对探测纳米接触的性质非常敏感。特别地,我们观察并评估了纳米接触处存在的亚纳米分子对沿互连二氧化硅纳米颗粒网络的相干声子传播的影响。最后,我们证明了这种超快的光声技术可以定量评估纳米触点的刚度/刚度。

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