核-壳结构,Core-shell structure
1)Core-shell structure核-壳结构
1.Research on techniques for the synthesis of ACR impact modifier with core-shell structure;核-壳结构冲击改性剂ACR合成技术研究
2.Preparation of polymer-tungsten-silica composite microspheres with multi-layer core-shell structures;多层核-壳结构高分子-钨-二氧化硅复合微球的制备研究
3.Organosilicon-acrylate micro emulsion with core-shell structure was synthesized with OP-10,JFC and amyl alcohol nonionic compounded emulsifier by means of seeded emulsion polymerization.运用种子乳液聚合工艺以OP-10/JFC/戊醇非离子复合乳化剂合成了具有核-壳结构的有机硅-丙烯酸酯微乳液,研究了复合乳化剂类型、丙烯酸酯单体、有机硅单体加入方式和含量、pH值、硫醇对微乳液聚合过程中稳定性和光泽度的影响,通过差示扫描量热仪(DSC)和透射电镜(TEM)对微乳液的结构进行了表征。
英文短句/例句

1.Preparation and characterization of magnetic composite microspheres with core-shell structure核-壳结构磁性复合微球的制备与表征
2.Synthesis and performance of new core-shell type vinyl acetate-acrylate emulsion新型核-壳结构醋丙乳液的合成及性能
3.Restricted Swelling of Environmentally Responsive Core-Shell Microgels;环境响应性核-壳结构微凝胶的受限溶胀
4.core, shell structure核一壳结构(粘合剂制造中形成的结构)
5.Nuclear deformations confirm shell structure.原子核形变证实壳层结构。
6.Study of Core-shell CTP Ink Jet Nanoparticle Latex;核壳结构纳米喷墨CTP墨水开发研究
7.Synthesis and Characterization of CeO_2@Au Core-Shell Structured Nanoparticles;CeO_2@Au核壳结构纳米粒子的制备与表征
8.Synthesis and Characterization of Acrylates Emulsion of Core-shell Structure;核壳结构丙烯酸酯乳液的合成与表征
9.Optical Properties of ZnS:Tb/SiO_2 Core-shell Nanocrystals;ZnS:Tb/SiO_2核壳结构纳米晶的光学性质
10.Core-Shell Structured ABS Modifier Toughenned PVC核壳结构改性剂ABS增韧PVC的性能
11.Study on preparation of printing binder with core-shell structure核壳结构涂料印花黏合剂的制备研究
12.STRUCTURE AND SPECTRAL CHARACTERISTICS OF CdS/CdSe CORE/SHEL STRUCTURE SEMICONDUCTOR NANOCRYSTALCdS/CdSe核壳结构半导体纳米晶结构及光谱特性
13.Temperature-dependent Luminescence Properties of CdS/ZnS Core/Shell Nanocrystals with Different Shell Thickess不同壳层的CdS/ZnS核/壳结构量子点的温度相关荧光性质(英文)
14.Preparation and Characterization of PS/Ag Core-shell Nanoparticles聚苯乙烯/银核壳结构纳米粒子的制备与表征
15.The Preparation of Modified Silicone Microparticles with Core/Shell Structure具有核/壳结构的改性硅橡胶微粒的研制
16.Synthesis and Properties of Self Cross-linkable Core-shell Latex at Ambient Temperature;室温交联核/壳结构乳液的制备及其性能研究
17.Studies on the Preparation and Magnetic Properties of the Nanoparticles of Ni and Core-shell Structured Ni/NiO;纳米Ni球和核—壳结构Ni/NiO球的制备及磁性研究
18.Synthesis and Electrochemical Characterization of Core-Shell Ru@Pt Nanocrystals;核壳结构Ru@Pt纳米催化剂的制备和表征
相关短句/例句

Core-shell核-壳结构
1.Core-shell Au-Pt nanoparticles were synthesized by chemical reduction method.用化学还原法合成了核-壳结构 Au-Pt 纳米粒子,紫外可见光谱(UV-Vis)、电化学循环伏安(CV)和透射电子显微镜(TEM)表征结果指出,所合成的核-壳结构 Au-Pt 纳米粒子为球形,平均直径为27nm。
2.The development of core-shell polymers was generalized in this paper.本文综述了近几年来核-壳结构聚合物微粒的最新研究进展,包括合成方法的最新研究进展、影响核-壳结构聚合物微粒形态因素的最新研究进展,并对核-壳结构聚合物微粒的应用进行了展望。
3.The results indicate that the nanocomposite is core-shell structure,the size of which is 50 nm.结果表明,所得的炭黑/聚苯胺纳米复合粒子粒度约为50 nm并具有核-壳结构,其电导率达30 S。
3)Core shell structure核-壳结构
4)core/shell structure核壳结构
1.Synthesis of Bi_2O_3/Cu-O-Cr core/shell structured nano-composites;Bi_2O_3/Cu-O-Cr核壳结构纳米复合物的合成
2.Progress in preparations of microspheres with core/shell structure;核壳结构微球的制备方法与展望
3.Effects of emulsifier on the preparation of PBA/P(α-MS-AN) with core/shell structure;乳化剂在制备核壳结构PBA/P(α-MS-AN)反应中的应用
5)Core-shell structure"核-壳"结构
6)core-shell structure壳核结构
1.The HRTEM shows the nanoparticles form in a core-shell structure, with the size of the particles in range of 5-60 nm and the thickness of the shell 2-4 nm.高分辨电镜显示该纳米颗粒具有壳核结构,核为纳米Ni及Ni-Al合金,壳为Al2O3/NiO复合氧化物。
2.The HRTEM and X-ray energy-dispersive spectrum(EDS) as well as X-ray photoelectron spectrum(XPS) show the nanoparticles form in a core-shell structure.结果高分辨电镜(HRTEM)和能量散射谱(EDS)以及XPS光电子能谱研究表明该复合粉体颗粒具有壳核结构,颗粒的尺寸为20~200 nm,核为Fe纳米颗粒,壳为Ni-P合金,其厚度为3~10 nm。
3.Based on the effective medium theory,effective permittivity of metal-dielectric composite materials with a two-dimensional core-shell structure bedded in a matrix of another dielectric has been simulated using the finite-element method.基于有效媒质理论,采用有限元法计算了二维金属-介质壳核结构复合材料模型的等效介电常数。
延伸阅读

不锈钢包壳核燃料分子式:CAS号:性质:奥氏体不锈钢在高温水、氦气和液态金属钠等介质中具有良好的耐腐蚀性能和适当的高温强度,加工工艺成熟,但因其热中子吸收截面较大,在热中子堆中只能作为浓缩铀燃料的包壳。在快中子增殖堆中,大多数采用不锈钢包壳的氧化物燃料。在所选定的工作温度范围内,不锈钢包壳材料与冷却剂钠能够相容,而且成本低。