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等离子体聚合 meaning in Chinese

plasma polymerization

Examples

  1. The result showed that plasma polymerized trimethylphosphit can improve hydrophile of 317l stainless - steel dramatically
    结果发现亚磷酸三甲脂等离子体聚合膜可以明显改善不锈钢表面的亲水性。
  2. The coating nano - metal materials are prepared by physical adsorption , surface deposition , arc discharge , plasma polymerization , laser cvd and emulsion polymerization
    其制备方法主要有物理吸附法、表面沉积法、电弧放电法、等离子体聚合法、激光化学气相沉积法、乳液聚合法等。
  3. For its high sensitivity and simple to carry out , it is has excellent application foreground in analysis science , material science , and biology science etc . but the sensitive membrane is not perfectly adhered to the qcm , which makes the 0cm sensor ? properties not steady and dependable
    采用简单易行的方法与普通的等离子体设备就能使等离子体技术在qcm传感器的制备中取得良好的应用。最后,阐述了等离子体聚合与等离子体表面该性在成膜方面的独特应用。
  4. The mechanism of the formation of ppf and the effects of the main experimental conditions are discussed respectively . in addition , the sensitivity , selectivity , stability and reproducibility of the immunosensor are investigated in detail . the immunosensor can determine the transferrin with the linear range of 0 . 10 ~ 12 . 65 ug / ml
    探讨了正丁胺等离子体聚合膜的形成机理和传感器主要检测条件的影响;考察了传感器的灵敏度、选择性、重现性和再生性能;传感器测定人血清中转铁蛋白的线性范围为0 . 10 12 . 65ug ml 。
  5. In this thesis , a kind of reversible immobilization method based on the plasma - polymerized film ( ppf ) used for effective immobilization of active bio - molecules and easy reproduction of sensors is developed . the surface of quartz crystal microbalance ( qcm ) is firstly prepared with plasma - polymerized film of butyl amine by glow - charge technique and then covered with a negative - charged polyelectrolyte by self - assembling . through strong electrostatic attraction , antibodies ( antigens ) positive - charged are immobilized for the determination of antigens ( antibodies )
    本论文基于等离子体聚合膜,设计了一种既能固定生物活性物质又易于传感器再生的可逆固定化方法,即采用辉光放电的等离子体沉积技术,先在石英晶体上沉积一层正丁胺等离子体聚合膜,再在膜上自组装一层带负电的聚电解质,用以静电吸附固定抗体(抗原)测定抗原(抗体) 。

Related Words

  1. 氦等离子体
  2. 等离子体禁闭
  3. 等离子体寿命
  4. 水蒸汽等离子体
  5. 宇宙等离子体
  6. 天体等离子体
  7. 辐照等离子体
  8. 等离子体片
  9. 碰撞等离子体
  10. 稀薄等离子体
  11. 等离子体禁闭
  12. 等离子体浸没掺杂
  13. 等离子体聚合涂层
  14. 等离子体聚焦
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