magnetic polymer 中文意思是什麼

magnetic polymer 解釋
磁性聚合物
  • magnetic : adj. 1. 磁(性)的;(可)磁化的。2. 吸引人心的;有魅力的。3. 催眠術的。
  • polymer : n. 【化學】聚合體,聚合物,多聚物。 high molecular polymers 高聚物,高分子聚合物。adj. -ic
  1. Development of magnetic polymer microsphere used in medicine

    醫藥用磁性聚合物微球的研究進展
  2. In chapter 1 of this paper, simply introduces material polymer materials, organometallic polycondensate, organometallic coordination polymer and organometallic polymeric magnetic materials

    本文第一章簡要介紹了材料、高分子材料、金屬有機高分子材料、金屬有機縮聚高分子、金屬有機配位聚合物和金屬有機高分子磁性材料。
  3. The fluctuation of ion beam has been controlled within 20 %, significantly lower than that of 50 - 80 % for external - magnetic field mid of annular configuration and ion diode without magnetic field by using polymer anodes

    離子束密度的波動不超過20 ,顯著低於同類陽極的無磁絕緣和環型結構外磁絕緣離子二極體的50 - 80 。
  4. As a kind of functional film, magnetic polymer film can be used in the military and domestic areas. at present, traditional magnetic composite films could n ' t have higher quality

    磁性聚合物膜既具有磁記錄、磁分離、吸波、縮波等磁特性,又具備質輕柔韌、易加工的高分子特性,從而可以在功能性記憶材料、膜分離材料、隱身材料、微波通訊材料等多種軍用、民用領域獲得應用。
  5. Characterization of an external - magnetic field mid with polymer anode and a self - magnetic field mid with graphite anode operated in unipolar and bipolar pulse mode, respectively, has been performed. it is found that the characteristics of hipib are mainly depended on two crucial factors, i. e. the properties of insulated magnetic field and anode plasma

    通過聚合物陽極的單極脈沖模式外磁絕緣離子二極體和石墨陽極的雙極脈沖模式自磁絕緣離子二極體工作特性的實驗研究發現,影響hipib產生特性的主要因素是離子二極體的絕緣磁場性質和陽極等離子體特性。
  6. Finally enzyme is covalently immobilized. the reclaimed efficiency of immobilized enzyme that is prepared by this vector is over 76 %, but others are between 45 % and 65 %. it shows that activated magnetic polymer composite microspheres is an efficient vector that can be applied immobilization field

    通過這類載體制備的固定化酶的酶活回收率在76以上,而由一般載體制備的固定化酶的酶活回收率在45 - 65之間,這表明活化后的磁性高分子復合微球是一類可以應用於酶固定化領域的高效載體。
  7. In this study, it has been put forward that taking reactive nanometer magnetic fe304 particles as magnetic nucleus, and the copolymer of styrene ( st ) ? crylic acid ( aa ) as macromolecular shell, we could synthesize, magnetic polymer composite microspheres containing carboxyl groups on their surface, then microspheres are activated by thionylchloride, the surface of such magnetic composite microspheres thus produced had reactive acid chloride groups which then react with the free amino groups of the free soluble enzymes to give peptide bonds ( ? o ? h ?,

    本研究首次提出了以納米級磁性fe _ 3o _ 4粒子為核心,苯乙烯( st ) ?丙烯酸( aa )共聚物為高分子殼層,合成了表面帶羧基的磁性高分子復合微球,然後將這種微球用二氯亞碸進行活化處理,在其表面形成了反應性酰氯基團,該基團可以與游離酶的氨基形成肽鍵,從而將游離酶固定化。
  8. 2 with dispersion - polymerization, taking above reactive nanometer magnetic fe304particles as nucleus, and the copolymer of styrene ( st ) ? crylic acid ( aa ) as macromolecular shell, we could synthesize, magnetic polymer composite microspheres containing carboxyl groups on their surface

    2採用分散聚合法,以上述反應型納米磁性fe _ 3o _ 4粒子為核心,苯乙烯( st ) ?丙烯酸( aa )共聚物為高分子殼層,合成了表面帶羧基的磁性高分子復合微球。
  9. Research progress in magnetic polymer microspheres

    磁性高分子微球研究進展
  10. Synthesis and characterization of magnetic polymer microspheres with surface hydroxy groups

    含羥基磁性高分子微球的合成與表徵
  11. Several kinds of preparation methods and the applied developments of magnetic polymer microsphere in cell separation, immobilized enzyme, dna separation and medicine carrier are discussed in detail, and the prospects of magnetic polymer microsphere are also proposed

    在此基礎上,對磁性高分子微球在細胞分離、固定化酶、靶向藥物、核酸分離等領域的最新應用及存在的問題進行了分析,並指出了該領域今後的研究方向。
  12. On the basis of the research efforts of magnetic polymer nanocomposite at home and abroad in recent years, the preparation methods of magnetic polymer nanocomposite were reviewed in this article, the latest research advanced in magnetic polymer nanocomposite with core - shell structure and sandwich structure were also reviewed in detail, and also the applications in determinating microbe and organism in water determination were summarized

    在總結國內外有關磁性高分子微球研究成果的基礎上,介紹了納米磁性高分子復合微球的制備方法,重點闡述了核殼式結構和三明治式結構納米磁性高分子復合微球制備的最新研究進展,概述了磁性高分子復合微球在檢測水中微生物和有機物的應用。
  13. Electro - magnetic wave absorption properties of polymer matrix composites made by blending polymer with nanometer powders and ordinary absorbers were investigated in the paper

    研究了各種納米和普通吸收劑制備的聚合物基復合材料的電磁波吸收性能。
  14. Some special surface treatment methods were adopted to improve the interface interaction between the polymer and magnetic particles in order to increase the encapsulation efficiency. the ultrasonic technique, some organic solvents and several functional steric stabilizers were applied to improve the quality of final magnetic particles. ps / iron oxides magnetic composite microspheres with the size 80 - 210nm were prepared via improved emulsion polymerization

    三種方法可以制備具有不同粒徑和磁性能的磁性fe _ 3o _ 4納米粒子,其中,共沉澱法制備的磁性微粒粒徑大小穩定,比較容易控制在10nm左右,且所得磁性微粒的磁響應性強,具有超順磁性,利於制備高性能的磁性復合微球。
  15. The results showed that appropriate copolymer composition and processing techniques were fairly important in the preparation of composite magnetic microspheres. superparamagnetic magnetic composite microspheres with size less than 500nm, magnetic content 22 % and saturation magnetization 32. 5emu / g could be prepared by this novel method. it is proposed that the polymer

    綜合看來,採用dpe法制備的磁性復合微球磁含量高、飽和磁化強度高、無機微粒分佈均勻,且表面潔凈,包覆效率高,因而具有更好的綜合性能,是一種具有廣闊應用前景的新方法。
  16. The development of research on magnetic polymer microspheres

    磁性高分子復合微球的研究進展
  17. Preparation and characterization of magnetic polymer microsparticles with surfactant amido groups

    含氨基磁性高分子微粒的制備和表徵
  18. Because of different magnetic polymer nanocomposite has different structure, so the preparation methods are also different

    摘要不同的納米磁性高分子復合微球,因其結構不同,制備方法也各不相同。
  19. The application of rare earth compounds on polymer, including being used as catalyst, fluorescent or lasering material, magnetic polymer, filler or modifier, stabilizer and so on, were reviewed

    摘要綜述了稀土化合物在高分子材料科學領域應用研究的現狀和進展。
  20. It ' s also difficult to prepare magnetic polymer film using structure type polymers due. a new generation film is available which is called organic - inorganic nanostructure magnetic composite film

    一方面,傳統的無機磁粉-聚合物膜難以具備高性能;另一方面,由於合成的困難性,直接利用結構型高分子制備磁性聚合物膜現階段還難以實現。
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