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首页> 外文期刊>Journal of Macromolecular Science. Physics >Ultrathin sectioning of polymeric materials for low-voltage transmission electron microscopy: Relief on ultrathin sections
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Ultrathin sectioning of polymeric materials for low-voltage transmission electron microscopy: Relief on ultrathin sections

机译:低压透射电子显微镜用聚合物材料的超薄切片:超薄切片的浮雕

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Ultrathin sectioning, one of the types of specimen preparations for transmission electron microscopy (TEM), has been considered the most perfect sectioning technique leading to the thinnest sections (50-100 nm). Following a study based on a newly developed low-voltage TEM technique, a relief on the ultrathin sections of polymer blends was observed that was ascribed to substantial differences in mechanical properties of the blend constituents.([1]) In this study, an analogous relief was observed with a blend, the constituents of which are both hard in cutting. The origin of the surface relief on ultrathin sections of polymer blends was sought using low-voltage scanning TEM and atomic force microscopy. Polycarbonate/styrene-co-acrylonitrile blend was examined as a representative of blends with all components well under T-g at room temperature. A distinct surface relief was observed on both ultrathin sections and remaining cut surfaces of the blend for low-temperature and room-temperature cutting. A rougher surface relief was found on the ultrathin sections than on the remaining cut surfaces. The surface relief was assumed to occur in the course of the cutting when extensive shearing occurs. Correspondence of the surface relief with the phase structure proves the influence of different mechanical behavior of individual blend components on the resulting morphology. [References: 17]
机译:超薄切片是用于透射电子显微镜(TEM)的样品制备类型之一,被认为是导致切片最薄(50-100 nm)的最完美切片技术。在一项基于最新开发的低压TEM技术的研究之后,观察到聚合物共混物的超薄部分出现了起伏,这归因于共混物成分的机械性能存在实质性差异。[1]在这项研究中,类似掺混物的浮雕被观察到,其成分均难以切割。使用低压扫描TEM和原子力显微镜来寻找聚合物共混物超薄部分表面起伏的起源。聚碳酸酯/苯乙烯-丙烯腈共混物作为室温下所有组分均在T-g下的共混物的代表进行了检验。在共混物的超薄切片和剩余切割表面上均观察到明显的表面起伏,用于低温和室温切割。在超薄部分发现比在其余切割表面上更粗糙的表面起伏。当发生大范围剪切时,假定在切割过程中发生表面起伏。表面起伏与相结构的对应性证明了单个共混物组分的不同机械行为对所得形态的影响。 [参考:17]

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