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Methacrylic acid-acraldehyde/ montmorillonite nanocomposites were prepared using Na+- montmorillonite via in-situ polymerization of methacrylic acid and acraldehyde in aqueous medium.

采用水溶性聚合单体甲基丙烯酸和丙烯醛在钠基蒙脱土层间直接原位插层聚合制备水溶性MAA-AL/MMT纳米复合材料,通过XRD和TEM对纳米复合材料的结构进行表征,采用TGA、DSC研究了纳米复合材料的热性能,同时考察了甲基丙烯酸与丙烯醛配比及体系pH值对纳米复合材料结构及应用性能的影响。

On the basics of briefly summarizing the research and application presents of building coatings and nano-composite building coatings in domestic and overseas, we presented a creative approach of modified exterior and interior building latex coatings applying inorganic nano-powders and its compound, systematically studied the effect of factors such as nano-material's category、additive capacity、dispersing method on the behavior of exterior building coating's weathering resistance、scratch resistance、water resistance、alkaline resistance and on the behavior of interior building coating's restraining bacterium、degrading all kinds of bad organic matter,and triumphantly developed nano-composite building latex coating.

本文在简要叙述国内外建筑涂料和纳米复合建筑涂料的应用研究现状的基础上,提出了使用无机纳米粉体及其复合材料改性建筑外墙乳胶漆的创新思路,系统地研究了纳米粉体材料的种类、添加量、分散方式等因素对外墙乳胶漆耐候性、耐洗刷性、耐水耐碱性等性能的影响,以及这些因素对内墙乳胶漆抗菌杀菌、降解有害有机物等性能的影响,成功地开发了纳米改性建筑外墙和内墙乳胶漆产品。

On the other hand, in order to contact to practical application and combine the actual experimental condition, we can make some elementary research on the application of boron nitride which has been synthesized.

将合成的纳米氮化硼材料进行表面改性,改善纳米粉体表面的润湿性,增强了其在介质中的界面相容性,使氮化硼纳米粒子容易在有机化合物中分散,提高了氮化硼纳米粉体的应用性能。

Probably, during the formation of spherical Au nanocrystals, PVP or PAM can be selectively adsorb on certain crystal planes of Au nanocrystals by the complexing effect between N or O with Au atom, thus leading to the different growth rates at different crystal planes of spherical Au nanocrystals and resulting in the formation of faceted Au nanocrystals and Au nanoplates.

研究表明,多面体和片状Au纳米晶是由球形Au纳米晶转变而来,这个转变是由于在球形Au纳米晶的形成过程中,PVP和PAM借助于其特有的N原子和O原子吸附到Au纳米晶的Au原子上,造成了晶体不同晶面生长速率的差异而导致的结果。

The short SWCNTs prepared are able to directly dissolve in polar solvents,such as water,alcohol and acetone.

纳米管,特别是单壁碳纳米管在纳米药物和生物技术[6-8]、纳米电子装置[9]、纳米复合材料[10-12]等方面都有重要用途。

The company has developed products: biological nano-fuelling, nano-titanium oxide, nano-zinc oxide, NT nanocomposite materials, nano-materials and antibacterial ultraviolet shielding material, powder and far-infrared antibacterial, with the exception of formaldehyde, the release of anions The function of fiber materials, water repellent, anti-oil antibacterial fabric, eliminate bacteria, decomposition of harmful gas purifying the air, anion magnetic goggles, bathing beauty leader Kang Jian, tourmaline-ceramic series of health products.

目前公司已开发产品有:纳米生物助长器,纳米氧化钛,纳米氧化锌,NT纳米复合材料,纳米抗菌材料和紫外线屏蔽材料,远红外粉以及抗菌、除甲醛、释放负离子的功能纤维材料,拒水、抗油抗菌布料,灭病菌、分解有害气体的空气净化器,负离子磁疗眼罩,键康美容沐浴龙头,托玛琳多功能陶粒等系列健康产品。

Two new methods about preparation of nano-inorganic coated polymer microsphere have been found. The research mainly focused on controlled precipitation of inorganic precurdors onto the polymer microspheres, technique of preparation and size distribution of transition metal oxides and sulfides emulsion particles, nano-paticles''surface modification and the HLB values adjustment, emulsification of oil-soluble monomer in inorganic colloid and emulsion stability, emulsion polymerization that inorganic particles act as medi-phase, the preparation of inorganic nano-particle/polymer hybrid microspheres, preparation of hybrid materials in inverse emulsion, inverse emulsion polymerization of acrylamide and its phase behavior. Inorganic nano-particles we studied concerning TiO2、SiO2、Fe3O4、ZnO、ZnS、Ag and black carbon. Also we studied the morphology and capability of the hybrid materials.

主要内容有:无机物在高分子乳胶模板体系的界面定位沉积研究;过渡金属氧化物、硫化物纳米胶体粒子的制备工艺与胶粒尺寸分布研究;纳米粒子的表面修饰及其亲水亲油平衡值的调制;油溶性单体在无机胶体中的乳化行为与乳液稳定性研究;以无机纳米粒子做中介相的乳液聚合与无机纳米粒子/高分子复合微球制备研究;反相体系中杂化材料的制备;丙烯酰胺水溶液反相乳液聚合、相行为与稳定性;丙烯酰胺反相体系中无机粒子的制备研究;涉及到TiO2、SiO2、Fe3O4、ZnO、ZnS、Ag、碳黑等纳米无机物,系统考察了相关材料的形态与性能,为其应用开发奠定了基础。

Based on the previous experiments, we choose CNTs/CdS core-shell nanowires as inorganic materials and poly(benzyl-ether) dendrons with thiol functionalities as organic solubilizer. The solubility of CNTs/CdS core-shell nanowires in normal solvents was expected to improve through chemical interactions between core-shell nanowires and solubilizer. The enhanced solubility can improve facility in processability. It also provides a new application method in nanomaterials.

本论文在课题组原有工作的基础上,以制备可溶、易加工的有机-无机复合纳米材料为应用目标,选择具有自己课题组研究特色的CNTs/CdS核壳纳米线结构作为无机材料,选择带巯基的聚苯甲醚树枝状分子作为有机增溶剂,通过带巯基的聚苯甲醚树枝状分子对CNTs/CdS核壳纳米线的化学作用,改善了核壳纳米线在常用有机溶剂中的溶解性能,为材料的湿法加工提供了基础,也为类似纳米材料的应用开拓了一种新的方法。

In order to realize nano feeding under large feeding force, according to the research state of nano feeding device and development tendency all over the world, combing with china "863" Program "the key technic research of nano precision drive parts having large feeding force", a scheme of nano precision drive parts with bilateral symmetrical structure using in quasi-static state conditions is proposed, the nano precision thermal drive parts are developed and the experimental system is established.

为了实现具有进给力的纳米级进给,根据国内外纳米级驱动部件的研究现状及发展趋势,结合国家&863&高科技计划资助项目&具有大进给力的纳米级驱动部件关键技术的研究&,本文首次提出一种在准静态条件下使用的具有双边对称结构的纳米级热驱动部件设计方案,并且研制纳米级热驱动部件及试验系统。

Secondly, the experimental research advances of cyclopeptide nanotubes using as the templets to produce biologic sensors by synthesis with functional nanomaterials such as electronic, optical and magnetic ones.

进而介绍了环肽纳米管用作生物传感器模板,与功能性纳米材料合成制备生物传感器的实验研究进展,接着介绍了环肽纳米管作为药物或药物载体潜在的应用前景,特别是在某些抗菌和抗感染药物开发设计中的应用以及环肽在不同极性的环境中自组装过程微观机制的MD模拟研究进展,最后介绍了环肽纳米管作为模板,制备磁性、电性纳米材料方面的实验和理论研究进展。

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