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首页> 外文期刊>New Journal of Chemistry >Novel issues of morphology, size, and structure of Pt nanoparticles in chemical engineering: surface attachment, aggregation or agglomeration, assembly, and structural changes
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Novel issues of morphology, size, and structure of Pt nanoparticles in chemical engineering: surface attachment, aggregation or agglomeration, assembly, and structural changes

机译:化学工程中Pt纳米颗粒的形态,大小和结构的新问题:表面附着,聚集或团聚,组装和结构变化

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摘要

In this paper, the polyhedral Pt nanoparticles were prepared by a modified polyol method using AgN03 as a nanostructure-shaping agent. TEM and HRTEM images of Pt nanoparticles show the particle size in the 10 nm range for the well-controlled case. In contrast, Pt nanoparticles have the particle size in the 50 nm range for the uncontrolled case. To understand the important issues of morphology, size, surface and structure, the as-prepared Pt nanoparticles were investigated through UV-vis spectroscopy, X-ray diffraction (XRD), transmission electron microscopy (TEM), and high-resolution (HR)TEM measurements. In the two cases, the as-prepared Pt nanoparticles with and without the control procedures exhibit surface attachment, aggregation or agglomeration and assembly. The mechanisms can lead to the formation of the ultra-porous mesostructure of the as-prepared Pt nanoparticles by using various sophisticated control methods. Therefore, the experimental findings and observations showed the formations of the porous Pt nanostructures as the new Pt textures from self-aggregation or self-agglomeration and self-assembly of extreme importance in designing great superlattices under experimentally chemical and physical methods. This also proved the important role of PVP polymer in the protection of the as-prepared nanoparticles. In particular, a new phenomenon was found in the randomly natural collapse and self-breaking in the Pt nanostructures originating from the naked Pt nanoparticles without protective polymer agents. As a result, a porous meso-nanostructure was formed by the structural changes of Pt nanoparticles without stabilization of the PVP polymer. Finally, the discoveries of surface structure changes of polyhedral Pt shapes and morphologies in future are very important in further catalysis investigation.
机译:本文以AgNO3为纳米结构整形剂,采用改性多元醇法制备了多面体Pt纳米颗粒。 Pt纳米颗粒的TEM和HRTEM图像显示,在控制良好的情况下,粒径在10 nm范围内。相反,对于不受控制的情况,Pt纳米颗粒的粒径为50 nm。为了了解形态,尺寸,表面和结构的重要问题,通过紫外-可见光谱,X射线衍射(XRD),透射电子显微镜(TEM)和高分辨率(HR)研究了制备的Pt纳米颗粒TEM测量。在这两种情况下,在有和没有控制程序的情况下,所制备的Pt纳米颗粒均表现出表面附着,聚集或团聚和组装。该机制可通过使用各种复杂的控制方法导致所制备的Pt纳米颗粒的超孔介观结构的形成。因此,实验结果和观察结果表明,多孔的Pt纳米结构的形成是由自聚集或自聚集和自组装形成的新的Pt织构,在实验化学和物理方法下设计大的超晶格时极为重要。这也证明了PVP聚合物在保护所制备的纳米颗粒中的重要作用。特别地,在源自没有保护性聚合物试剂的裸露Pt纳米粒子的Pt纳米结构中的随机自然塌陷和自破坏中发现了新现象。结果,在不使PVP聚合物稳定的情况下,通过Pt纳米颗粒的结构变化形成了多孔的介观纳米结构。最后,发现未来多面体Pt形状和形态的表面结构变化对于进一步催化研究非常重要。

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