表面接枝

  • 网络Graft to;grafting to;graft;surface grafting
表面接枝表面接枝
  1. MW等离子体引发单体在聚四氟乙烯表面接枝共聚

    Microwave plasma initiated graft copolymerization modification of monomers onto PTFE surface

  2. Ce(Ⅳ)盐引发丙烯酰胺在聚乙烯醇微球表面接枝聚合的研究

    Studies on graft polymerization of acrylamide on crosslinked polyvinyl alcohol microspheres by initiating of cerium (ⅳ) salt

  3. 纳米二氧化硅表面接枝的X射线光电子能谱研究

    XPS of Modified Nano-SiO _ 2 by Surface Grafting

  4. 表面接枝改性对PET薄膜包装特性的影响

    Influence of Grafting Polymerization on the Packaging Characteristics of PET Membrane

  5. PET膜表面接枝生物活性短肽方法的研究

    The Research of Method of Bioactive Peptide Grafting on the PET Surface

  6. 含氢硅油表面接枝改性PET织物的拒水性能

    Water Repellency of PET Fabric Grafted with Hydrogen Silicone Fluid Through Corona Discharge

  7. 紫外辐照在PET膜表面接枝氨基酸的研究

    Study on grafting amino acid onto PET film surface

  8. 纳米Al2O3表面接枝修饰的XPS研究

    XPS Investigation on the Modified Nano-Al_2O_3 by Surface Grafting

  9. 利用表面接枝反应控制PS亲水性能

    Controlling Wetting Performance of PS Surface by Grafting of MMA onto PS

  10. 以纳米TiO2为反应中心核,通过一步法在纳米TiO2表面接枝超支化聚合物。

    Nano-TiO2 was grafted with hyperbranched polymer through one-step polycondensation .

  11. 硅胶表面接枝度光电子能谱(XPS)的测定

    Determination of the Graft Degree on the Surface of Silica GEL by XPS

  12. 用RAFT活性聚合方法在碳纳米管表面接枝聚合物

    Grafted Polymer onto Carbon Nanotubes by Reversible Addition Fragmentation Chain-transfer Active Polymerization

  13. 缩聚表面接枝纳米SiO2改性PBT

    Study on surface modification of PBT with grafted nano-SiO_2 by polycondensation

  14. 通过改变碱处理的时间,可以得到不同接枝率的复合膜。通过红外光谱(FTIR)、光电子能谱(XPS)、扫描电镜(SEM)等分析手段证实了膜表面接枝共聚物的存在。

    Grafted copolymers on the surface of composite membrane were verified by FTIR , XPS and SEM .

  15. 等离子体引发丙烯酸在LDPE薄膜表面接枝聚合的研究(Ⅰ)

    Study on plasma-induced graft polymerization of acrylic acid on LDPE film (ⅰ)

  16. 表面接枝高分子季铵盐的纳米SiO2应用于抗菌塑料的制备

    Preparation of Antimicrobial Plastics Containing Nano-meter SiO_2 Grafted High-molecular Quaternary Ammonium Salt

  17. 纳米TiO2表面接枝聚甲基丙烯酸甲酯及其在白色油墨中的应用

    Grafting PMMA on surface of nano TiO_2 and its application in white ink

  18. 红外光谱的分析表明,在无机纳米粒子TiO2的表面接枝上了PMMA;

    The results of FT-IR confirm that PMMA has been grafted onto the surface of nano-TiO_2 ;

  19. 表面接枝TDI碳纳米管/聚氨酯复合材料的研制

    Preparation and properties of TDI modified carbon nanotubes / polyurethane composites

  20. 超细SiO2微粒的表面接枝聚合改性研究进展

    Progress in Surface Grafting Polymerization Modification for Superfine SiO_2

  21. 分子筛表面接枝TDI的研究

    Study of Graft TDI on the Surface of Molecular Sieve

  22. 采用紫外光表面接枝聚合的方法来提高PET非织造布与基体的界面结合性能。

    Using UV photo-grafting treatment of PET non-woven fabric to increase the property of the interfacial connection of non-woven fabric and basal body .

  23. PMA表面接枝包覆纳米TiO2及其在PP中抗紫外老化的研究

    Study on Surface Grafting of Nano-meter TiO_2 by PMA and its UV Aging Resistance in PP

  24. 基于活性自由基聚合的纳米SiO2表面接枝及其应用

    Grafting Polymers from the Surface of Silica Nanoparticles via Living Radical Polymerization and Their Applications

  25. 以二苯甲酮(BP)为光敏剂,用紫外光引发固相接枝法在聚丙烯粉(PP)表面接枝马来酸酐(MAH)。

    MAH is grafted on PP powder surface by using the method of UV irradiation solid phase with BP as photosensitizer .

  26. 用XeCl准分子激光照射聚对苯二甲酸乙二酯(PET)薄膜,并同时进行表面接枝,提高薄膜表面亲水性。

    PET film surface was irradiated and grafted with hydrophilic monomer by XeCl excimer laser to improve surface hydrophilicity .

  27. Kevlar-49芳纶纤维表面接枝改性

    Surface Modification of Kevlar - 49 by Plasmas Grafting Polymer

  28. 当SiO2粒子改性后,表面接枝机理成为主导。

    When the surface of silica used was modified , the mechanism of polymer grafting on silica surface became reigning .

  29. 通过硅烷偶联剂疏水预处理和丙烯酰胺在其表面接枝聚合改性,获得了有机包覆的改性SiC微粉。

    The surface modified SiC fine powder was prepared by organic coating through silane coupling agent hydrophobic processing and acrylamide monomer graft polymerization on its surface .

  30. 通过紫外改性成功地在材料表面接枝了PEG和肝素,很好地改善了材料的生物相容性。

    This experiment has succeeded in grafting PEG and Heparin to the surface of PET material , of which the biocompatibility is improved .