• 核壳蛋白抗体可考虑用于早期诊断。

    Antibody to nucleocapsid protein may be a potential target for early diagnosis.

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  • 他把这轨道宽度称作核壳。

    And that bandwidth he called the shell.

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  • 具有明显的核壳结构,且呈规整的球形。

    Obvious core-shell structure could be seen in the particles.

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  • 磁性纳米复合粒子具有典型的核壳结构。

    The magnetic nano-composite particle has a typical core-shell structure.

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  • 综述了近几年聚硅氧烷核壳粒子的研究进展。

    Research progress of polysiloxane core-shell particles in recent years was reviewed.

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  • 这就是核壳模型。

    This is the shell model.

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  • 通过透射电镜的观察,证明胶乳粒子为核壳结构;

    The nuclear-hull structure of the latex particles can be proved by means of SEM.

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  • 本文研究了内核经硫加金增感的内敏核壳乳剂的感光性能和离子性能。

    The properties and ionic conductivities of internal sensitive emulsions, the core of which were chemically sensitized with sulfur-plus-gold, were studied.

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  • 通过多步复合乳液聚合方法合成了一种具有核壳结构的刚性聚合物微球。

    A kind of rigid polymer microsphere with core shell structure was synthesized by multi step composite emulsion polymerization technique.

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  • 几十年来,核壳功能性材料因具有很大的发展潜力而引起人们广泛的兴趣。

    During the last decades, there has been increasing interest in core-shell materials with unique functions due to its potential in developing novel materials.

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  • 真空干燥后的核壳复合粒子在不经任何表面修饰就可进行多层包裹BFP。

    The zeta potential of core-shell composite particles were still minus, so multiple layers of BFP on the surface of microspheres could be obtained.

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  • 通过表面改性(如制备核壳结构的纳米粒子)可以使其获得更多特殊的性质。

    By modifying their surfaces such as preparing core-shell nanoparticles, many special properties can be obtained.

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  • 本发明采用核壳乳液聚合工艺,制备用于药物包衣的聚丙烯酸树脂III材料。

    The invention adopts a nucleocapsid emulsion polymerization process to prepare a polyacrylic acid resin III material for medicine coating.

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  • 介绍了核壳乳液聚合工艺的概念、合成机理、合成方法、影响因素以及测试方法。

    The concept, synthesis mechanism, preparation method and test measure of the core-shell emulsion, along with factors affected the performance were introduced.

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  • 文章综述了利用物理法和化学法制备核壳型复合材料,并对其应用前景作出了展望。

    Their preparations by using the physical and chemical method, and their application prospect were summarized in this paper.

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  • 该核壳纳米粒子的研究人员开发的布朗大学和橡树岭国家实验室这些问题都解决了。

    The core-shell nanoparticle developed by researchers at Brown University and Oak Ridge National Laboratory addresses both of these problems.

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  • 较高的核玻璃化温度则有利于形成明显的核壳结构乳胶粒子,且有助于漆膜硬度的提高。

    The latex with higher core T_g has more obvious core-shell structure, and the pencil hardness of the film is higher.

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  • 作者介绍了目前以无机纳米粒子为芯核的核壳材料的制备现状,以及复合技术的发展趋势。

    In this paper, the progresses on preparation of core-shell materials as well as the trend of composite technology were introduced.

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  • 具有核壳结构的包覆型复合纳米材料是最近几年材料科学前沿的一个日益重要的研究领域。

    The coated composite nano materials with core-shell structures have recently become an increasingly important research branch in materials area.

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  • 采用新型乳剂制备技术,研制出彩色底片感红层核壳型乳剂,其照相性能得到明显的改善。

    By using a new emulsion making technique, a core-shell AgX emulsion for color negative red-sensitive layer was prepared successfully with photographic characteristics significantly improved.

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  • 本发明的一种超顺磁性介孔二氧化硅复合球及其制备方法属于核壳型磁性纳米粒子的技术领域。

    A superparamagnetism mesoporous silicon dioxide composite ball of the present invention and manufacture method thereof belong to nucleocapsid type technology field of magnetic nano particle.

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  • 统一尺寸、结构上有序包覆的核壳型复合材料,具有高折射率以及独特的电磁、光学和机械性质。

    Due to their uniform size and regularity in the structure, core-shell structure composite nanoparticles will exhibit unique properties in electromagnetism, optics and mechanism.

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  • 以十二烷基硫酸钠和OP-10为混合乳化剂,制备了壳层富含氟的核壳结构丙烯酸酯共聚物胶乳。

    Acrylate copolymer latex of core-shell structure with rich fluorine in shell was prepared using SDS and OP-10 as emulsifier.

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  • 着重讨论了如何获得低渗流阈的炭黑填充的导电复合材料及制备聚合物为壳,炭黑为核的核壳材料。

    Emphasis is placed on how to obtain the lower percolation threshold of carbon black-filled polymers and preparing polymers encapsula.

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  • 简述了纳米微粒表面修饰的重要性以及修饰方法,并指出制备核壳型纳米材料是一种重要的表面修饰方法。

    The importance of surface modification and modification methods are briefly stated. And the preparation of core-shell nano-material is an important technique for surface modification.

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  • 因此,核壳高分子微球作为一种新型材料,具有重要的应用价值和前景,已成为近年来高分子领域的研究热点。

    Therefore, the core-shell polymer microspheres took one kind of new material, it has the important application value and the prospect, has become the recent years polymer domain the research hot spot.

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  • 论述了利用模板技术可以制备材料的类型及模板技术在核壳结构材料、空心微球材料、生物技术方面的新进展。

    And discusses the class of prepared material, emphasizes on introducing new templating development in core-shell structure materials, censphere materials and biotechnology.

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  • 随着核壳粒子橡胶相尺寸的减小,改性体系的冲击强度逐渐增加,内应力降低,但对体系的剪切强度影响并不显著。

    With the decrease of core sizes, the impact strength modified systems increases and the internal stress of modified systems decreases apparently, while shearing strength changes slightly.

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  • 介绍了环氧树脂增韧改性的新方法,即用橡胶弹性体、热塑性树脂、刚性粒子和核壳型结构聚合物来增韧环氧树脂。

    New methods for the toughening of epoxy resin by rubber elastomers, thermoplastic resins, rigid particles and core-shell polymer particles are introduced.

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  • 介绍了环氧树脂增韧改性的新方法,即用橡胶弹性体、热塑性树脂、刚性粒子和核壳型结构聚合物来增韧环氧树脂。

    New methods for the toughening of epoxy resin by rubber elastomers, thermoplastic resins, rigid particles and core-shell polymer particles are introduced.

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