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peu

  • 网络一点点;聚醚型聚氨酯;伦皮拉港
peupeu
  1. Study on Biological Characteristics of Structure Modified PEU

    聚醚氨酯结构修饰及其相关特性研究

  2. Study on Preparation Technology of PEU / PES Blend Membranes

    PEU/PES共混膜的制备工艺条件研究

  3. Design of Full-digital Thermal Imager PEU Based on DSP and FPGA

    基于DSP和FPGA的热像仪电子处理单元全数字化设计

  4. Design and Synthesis of PEU / LCP Composite Membrane and its Blood-compatibility

    改性PEU/LCP复合膜的设计、合成及其血液相容性研究

  5. Investigations of the structural and conductive properties of conducting polymer PEU by positron annihilation

    导电聚合物聚醚聚氨酯的结构与导电性能的正电子湮没研究

  6. Free volume of PEU studied by positron annihilation

    用正电子湮没研究聚醚聚氨酯的自由体积特性

  7. Study on Preparation and Characterization of Heparinized LCP / PEU Biomaterials

    肝素化高分子液晶/聚醚氨酯生物材料的研究

  8. Study on Heparin like Materials & Sulfonization and Blood Compatibility of PVA , PET and PEU

    类肝素化抗凝血材料的研究&PVA,PET及PEU的磺化反应及血液相容性

  9. We study the protein adsorption on PEU / LCP composite biomaterial surface by labeled protein with fluorescein isothiocyanate ( FITC ) .

    本研究以荧光标记为手段,研究了PEU/LCP复合生物材料表面的蛋白质吸附行为。

  10. The temperature dependences of the size of free-volume in PEU are calculated from the o-Ps annihilation lifetime .

    并由实验测得的o-Ps寿命计算出不同温度下PEU中自由体积孔洞的尺寸。

  11. The polyether-polyurethane ( PEU ) / polyethersulfone ( PES ) blend membranes and polyester-polyurethane ( PSU ) / PES blend membranes were prepared by phase inversion method .

    采用相转化法分别制备出聚醚型聚氨酯/聚醚砜(PEU/PES)共混膜与聚酯型聚氨酯/聚醚砜(PSU/PES)共混膜。

  12. Study on protein adsorption under static condition : In unitary BSA adsorption experiment , it is demonstrated that the amount of the adsorbed BSA on PEU / LCP surface is more than that of PVC and PEU .

    蛋白质静态吸附研究:白蛋白一元蛋白吸附实验表明,PEU/LCP复合材料在三种材料中白蛋白的吸附量最多,其次为功能化PVC材料,基材PEU。

  13. By determing and comparing structures and properties of different blend membranes , the results showed that polymer concentration , blend composition , the kind and the concentration of addictive were the main influence factors to performances of PEU / PES blend membrane .

    结果表明:聚合物浓度、共混组成比、添加剂种类与浓度是影响PEU/PES共混膜性能的主要因素。

  14. The characterized results of chemical stability showed that PEU / PES blend membranes possessed better acid-proof and alkali-proof advantages , but PSU / PES blend membranes did not possess the advantages , which restrict their application in preparation of pH sensitive membrane .

    基膜化学稳定性的研究表明,PEU/PES共混基膜具有较好的耐酸碱性,而PSU/PES共混基膜耐酸碱性较差,限制其在pH敏感膜的制备方面的应用。