1)Interfacial modification界面修饰
1.Essentials and types of interfacial modification of anodes in organic electroluminescent devices are summarized in this paper.阳极界面修饰作为简单易行的工艺和方法,可以有效地改善有机电致发光器件的性能而得到广泛应用。
2)Modification of the cathodic interface阴极界面修饰
3)materials of interfacial modification of cathodes阴极界面修饰材料
4)materials of interfacial modification of cathode (anode)阴(阳)极界面修饰材料
5)surface modified表面修饰
1.Experimental study on fluorine-heparin surface modified intraocular lenses;氟-肝素表面修饰人工晶状体的实验研究
2.It was inferred that the crystallization ends when the fronts of the spherulites in the surface modified PEG particle arrive the wall.采用乙基纤维素对聚乙二醇(PEG)粒子进行表面修饰,通过对修饰后PEG粒子和未修饰PEG粒子进行差示扫描量热(DSC)测试,研究PEG材料尺寸对非等温结晶过程的影响。
3.The structure of surface modified FeS nanoparticle by dialkyldithiophosphate(DDP) molecules was investigated by TEM,DSC,XRD and FT-IR.采用表面修饰的方法,以双十八烷基二硫代磷酸盐(DDP)为表面修饰剂,制备了双十八烷氧基二硫代磷酸(DDP)表面修饰的FeS纳米微粒。
英文短句/例句
1.Study on the (SiC)_p Surface Decoration Characterization and Application;(SiC)_p表面修饰、表征及应用的研究
2.Study on Preparation and Characterization and Surface Modification of In_2O_3/SnO_2 Nanopowders;In_2O_3/SnO_2纳米粉制备表征与表面修饰研究
3.The Surface Coordination and Application of SAO-ED;SAO-ED的表面修饰及应用研究
4.Surface Modification by Silver Coating for Improving Electrochemical Properties of LiFePO_4;银包覆表面修饰提高LiFePO_4的电化学性能
5.Surface Modification of ZnO Quantum Dots and Their Fluorescent PropertiesZnO量子点的表面修饰及发光性能研究
6.The electrochemical performance of ZnO after surface modified with In(OH)_3表面修饰In(OH)_3后ZnO的电化学性能
7.Progress in Study of Surface Modification Technology of Inorganic Nanoparticles无机纳米粒子表面修饰技术研究进展
8.Isothermal Crystallization Kinetics of Surface-modified Poly(ethylene oxide) Films表面修饰PEO薄膜的等温结晶动力学
9.Study on Anti-wear and Reduce Friction Performance of Surface Modified Nano-SiO_2表面修饰纳米SiO_2的抗磨减磨性能研究
10.Surface-modified nanometer silica toughening and reinforcing polyvinylchloride表面修饰纳米SiO_2增强增韧聚氯乙烯
11.The analysis of adherence cells on the surface of modified silicone intraocular lens表面修饰硅凝胶人工晶状体表面黏附细胞分析
12.The Syntheses and Crystal Structures of Novel Keggin Molybdenum Phosphates Decorated by Transition Metal Complexes;表面修饰的Keggin型钼磷酸盐化合物的合成及表征
13.Surficial Decoration and Characterization of Microstructure for Low-dimension Nanostruced Materials;低维纳米材料的表面修饰与微结构表征
14.Surface Modification of Magnetic Anocomposite and Its Biologic Application Research;磁性纳米颗粒的表面修饰及其生物学应用研究
15.Molecular Dynmaics Simulation on Surface Modification of Poymer Materials;高分子材料表面修饰的分子动力学模拟研究
16.Surface Modifications of Gold Nanorods and Studies of Biorecognition;金纳米棒的表面修饰及其生物识别的研究
17.Surface Modification and Characterization of Fe_3O_4 NanoparticlesFe_3O_4纳米颗粒表面的修饰和表征
18.A layer of decoration, such as gold leaf or wood veneer, applied to a surface.饰面一层修饰,如金箔或木镶板,铺于表层上
相关短句/例句
Modification of the cathodic interface阴极界面修饰
3)materials of interfacial modification of cathodes阴极界面修饰材料
4)materials of interfacial modification of cathode (anode)阴(阳)极界面修饰材料
5)surface modified表面修饰
1.Experimental study on fluorine-heparin surface modified intraocular lenses;氟-肝素表面修饰人工晶状体的实验研究
2.It was inferred that the crystallization ends when the fronts of the spherulites in the surface modified PEG particle arrive the wall.采用乙基纤维素对聚乙二醇(PEG)粒子进行表面修饰,通过对修饰后PEG粒子和未修饰PEG粒子进行差示扫描量热(DSC)测试,研究PEG材料尺寸对非等温结晶过程的影响。
3.The structure of surface modified FeS nanoparticle by dialkyldithiophosphate(DDP) molecules was investigated by TEM,DSC,XRD and FT-IR.采用表面修饰的方法,以双十八烷基二硫代磷酸盐(DDP)为表面修饰剂,制备了双十八烷氧基二硫代磷酸(DDP)表面修饰的FeS纳米微粒。
6)surface-modified表面修饰
1.Synthesis of solvent-stabled copper nanoparticles surface-modified with platinum and their catalytic properties;表面修饰铂的铜纳米颗粒的制备及催化性能
2.Preparation of Valaciclovir Loaded Bovine Serum Albumin Nanoparticles Surface-modified with Glycyrrhizin and Its Characteristics of Targeting to Liver;甘草酸表面修饰万乃洛韦白蛋白纳米粒的制备及其肝靶向性研究
3.Synthesis of copper nanoparticles surface-modified with self-assembled monolayers单分子层表面修饰铜纳米颗粒的制备方法
延伸阅读
DNA修饰分子式:CAS号:性质:在专一酶的作用下,某个特定碱基加上侧基的DNA改变。最熟知的DNA修饰作用是甲基化作用。甲基化常用于保护基因组DNA不受细菌中限制性内切酶的破坏。真核生物转移RNA合成中,也有一些碱基发生甲基化,有证据表明,很少转录的序列通常含有丰富的甲基化碱基,高等植物中胞嘧啶甲基化非常普遍,在控制DNA功能中有重要作用。