• 论文研究纳米碳酸纳米氧化锌制备表征性能

    This thesis studied on the preparation, characterization and capability of nanosized zinc carbonate and zinc oxide.

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  • 纳米氧化锌作为一种新型无机非金属材料有着许多优异的性能广泛应用很多领域中显示出独特魅力

    As a new inorganic nonmetal material, nanometer zinc oxide has many excellent properties and wide application, its unique attraction is shown in many fields.

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  • 目前,寻求纳米氧化锌结构、新性质新的应用领域成为材料研究的重点课题之一

    These unique nanostructures unambiguously demonstrate that ZnO probably has the richest family of nanostructures among all materials, both in structures and in properties.

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  • 纳米氧化锌作为种功能材料有着许多优异的性能广泛应用价值研究得到了高度重视。

    Nanometer zinc oxide is the functional material with manifold excellent performances and widespread applications. The study has being attached great importance to it.

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  • 发明提供了一种含有载银纳米氧化锌抗菌PET纤维及其制备方法应用

    The invention provides an antibiotic PET fiber with silver nanometer zinc oxide, relative preparation method and application.

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  • 摘要试验旨在研究饲添加不同剂量纳米氧化锌断奶仔猪生长性能血清免疫生化指标影响

    Abstract: This study was conducted to investigate the effects of different doses of dietary zinc oxide nanoparticles on growth performance, serum immune and biochemical indices of weaned piglets.

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  • 结果表明,普通氧化锌同等用量时,纳米氧化锌可以缩短硫化时间提高胶料的力学性能

    It was showed that the nanoparticle ZnO may shorten the sulfurization time and improve mechanics performance of the rubber.

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  • 水合醋酸水合肼反应物,在不使用任何表面活性剂条件下采用一种简单的液相法制备了氧化锌纳米

    ZnO nanorod bundles were synthesized by employing zinc acetate dihydrate and hydrazine hydrate as reactants via a simple mild solution method without using any surfactant.

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  • 扫描电镜(SEM)、透射电镜(TEM)X射线衍射仪(XRD)对氧化锌纳米线形貌结构以及相组成进行了分析。

    The morphology and crystalloid structure of zinc oxide nanowire arrays were characterized by SEM, TEM and XRD.

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  • 结论纳米氧化锌糊剂、羟磷灰石糊剂纳米羟磷灰石糊剂具有良好组织相容性根尖封闭性,可以作为封闭剂用于根管充填

    Conclusion: Nano-zinc-oxide, hydroxyapatite and nanohydroxyapatite have favorable histocompatibility and excellent apical sealing ability, so they are suitable for root filling as root canal sealers.

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  • 穿戴心跳脚步甚至是一缕轻风足以使压电氧化锌纳米线纤维产生电流

    The wearer's heartbeat and steps, or even a light wind, would be enough to move the piezoelectric zinc oxide nanowires in the fibers, generating electrical current.

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  • 利用TG DTA、XRDTEM等多种手段进行了系统研究论述热分解条件对沉淀-热分解二步法制备纳米氧化锌产品结构形貌影响

    The influence of thermal decomposition conditions on the morphology of the zinc oxide powder product was systematically investigated by means of TG-DTA, XRD and tem.

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  • 理论分析试验结果相比较表明影响纳米氧化锌晶粒形成与生长的因素主要反应温度反应物起始浓度过饱比。

    Theoretical analysis and experimental results indicate that the influencing factors of crystal formation are mainly reaction temperature and original reaction concentration ratio.

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  • 氧化锌纳米颗粒氧化铝都是绝缘体所以只有少量的电子能够通过它们

    Both the zinc oxide nanoparticles and aluminum oxide are electronic insulators, so only a tiny amount of electricity flows through them.

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  • 借助于XRDSEM测试手段,对锥状纳米氧化锌薄膜制备条件发射特性稳定性分析研究

    With the aid in test methods and so on XRD, SEM, Research nanometer zinc oxide thin film preparation condition, field emission performance and stability.

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  • 喷金的聚碳酸酯模板工作电极采用电沉积法氯化锌氯化钾溶液中制得氧化锌纳米

    Using gold-sprayed polycarbonate template as working electrode, ZnO nanorods were prepared by electro-deposition from a solution of ZnCl2 and KCl.

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  • 氧化锌纳米颗粒导电能力介于导体绝缘体之间一种典型半导体

    ZnO nanoparticle is a typical semiconductor Electric conductivity of which is between that of conductors and that of insulators.

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  • 试验结果表明纳米氧化锌可延长焦烧时间提高硫化拉伸性能耐磨性能,硫化胶的老化性能也较好;

    The test results showed that the scorch time of rubber compound ex tended by adding nano-zinc oxide, and the tensile strenght, abrasion resistance a nd aging property of its vulcanizate improved;

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  • 介绍纳米二氧化钛纳米氧化锌纳米碳酸钙和纳米几种纳米粉体材料生产现状

    This paper introduces the current situation of several nano-powder material in commercials production , including nano - TiO2 , nano - ZnO, nano - CaCO3 , nano - Ni powder.

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  • 介绍纳米二氧化钛纳米氧化锌纳米碳酸钙和纳米几种纳米粉体材料生产现状

    This paper introduces the current situation of several nano-powder material in commercials production , including nano - TiO2 , nano - ZnO, nano - CaCO3 , nano - Ni powder.

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