• 其次较详细地介绍纳米管的结构表征吸附机制

    Secondly, we introduce the carbon nanotubes' configuration, characterization, and adsorption mechanism in details.

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  • 利用SEMTEM纳米碳管结构进行了表征

    The structure of the carbon nanotubes was represented with SEM and TEM.

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  • 采用FT-IR高分辨透射电镜对改性纳米粉体进行结构形貌表征

    The structure and polymorphy of the particle modified are characterized by FT-IR and HRTEM.

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  • 采用光学显微镜XRDSEMTEMSAED等手段,表征纳米材料尺寸、形貌、组成晶体结构

    Optical microscopy, XRD, SEM, tem and SAED are used to systemically characterize the morphology and structure of silver nanostructures.

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  • 采用TEMTGFT_IR对表面修饰后纳米氧化锆结构和表面特性进行了表征研究

    Research and characterization on the structure and surface characteristic of surface-modified nano-zirconia were achieved by TG, TEM and FT-IR.

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  • 利用PL光谱XRDTEMSEM分析手段纳米复合荧光粉光谱结构粒度形貌进行了表征

    Using the testing method of PL spectra, XRD, TEM and SEM, the properties of composite phosphor were identified, including spectrum, structure, granularity and appearance.

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  • 采用微波热法制备了表面包覆硬脂酸的掺杂的二氧化钛纳米粒子,对其结构进行表征

    Nanograde titanium oxide with ferric stearate on surface was prepared by microwave radiation with water, and the product was characterized by a series of analysis.

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  • 运用扫描电子显微镜透射电子显微镜、X射线衍射仪表面仪等测试手段二氧化钛纳米纳米粉体形貌结构进行表征

    To measure morphology and structure of nanotubes and nano titanium dioxide powder by using scanning electron microscopy, transmission electron microscopy, X-ray diffraction and BET instrument;

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  • 方法:应用共沉淀法制备纳米羟基磷灰石/壳聚糖复合材料,并采用TEMSEMXRD手段材料晶相组成、微观结构、晶粒大小进行分析表征

    Methods:Nano-hydroxyapatite/chitosan composites were prepared through a co-precipitation method. The properties of these composites were characterized by means of TEM , SEM, XRD test machine.

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  • 研究纳米粒子表面修饰稳定分散技术,借助于TEMXPSXRDFTIR等分析手段表征了表面修饰前后纳米银粒子的微观结构

    The surface modification and steady dispersion technology of silver nanoparticles were studied and their microstructure were characterized by TEM, XPS, XRD and FTIR.

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  • 综述了纳米塑料常见制备方法以及纳米塑料的优异性能结构性能的表征方法

    The preparing methods of nanometer plastics were reviewed. Excellent properties and characterization of structures and properties of nanometer plastics were also introduced.

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  • 利用透射电镜TEM)、X射线衍射XRD)、X射线光电子表征了金纳米粉末的结构形貌及其化学组分

    Their structure, morphology and components have been characterized using transmission electron microscope(TEM), X-rays diffraction(XRD), and X-rays photoelectron spectrometer(XPS).

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  • 采用X 射线光电子谱(XPS)对BCN非晶纳米薄膜结构进行表征

    The structure of BCN amorphous nano-films were studied by XPS.

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  • 利用分辨透射电镜电子衍射仪器合成的纳米颗粒的结构进行表征

    High resolution transmission electron microscopy and selected area electron diffraction were used to characterize the products.

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  • 研究纳米晶体材料压制工艺条件其相对密度显微硬度影响,并用正电子湮没寿命谱、扫描电镜和热重分析仪对微观结构进行了表征

    The influence of relative density and microhardness on pressing parameter of nanocrystalline Cu was studied, and its microstructure was characterized by PAS, SEM and TG.

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  • 本文介绍了纳米结构性质纳米管的制备现状、表征及其在电子领域应用做了详细回顾

    In this paper, structure and properties of CNTs were summarized shortly. Relatively detailed review was given on preparation, characterization and applications of CNTs in electronic field.

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  • 纳米材料性质与其结构密切相关,在纳米尺度操控材料表征结构纳米科学技术的关键

    Manipulation of materials with nanoscale control is the key of nanoscience and nanotechnology, because the intrinsic properties of nanoscale materials are closely determined by their structures.

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  • 复合材料结构拉伸强度进行表征研究,表明聚合物纳米显著提高了PVC的拉伸强度。

    The structure and tensile strength of nano-composites was studied. Results show that MWNTs grafted polymer chain enhances the tensile strength of PVC significantly.

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  • 合成表征BPDP12分子,利用扫描隧道显微镜得到其在石墨上组装纳米结构,并对BPDP12单分子进行光照反应

    Compound BPDP12 was synthesized and by STM we obtained the ordered self-assembly films of BPDP12. What's more, we also found the self-assembly films of photo reaction.

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  • 纳米颗粒形貌结构化学状态分别通过TEM、HRTEMXRD和XPS进行了表征

    The morphology, structure and chemical state were investigated by TEM, XRD, HRTEM and XPS.

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  • 纳米颗粒形貌结构化学状态分别通过TEM、HRTEMXRD和XPS进行了表征

    The morphology, structure and chemical state were investigated by TEM, XRD, HRTEM and XPS.

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