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納米La2O3/TPU復合彈性體的製備及生物性能

Preparation and Biological Properties of Nano La2O3/TPU Composite Elastomer

  • 摘要: 稀土元素具有獨特的4f-5d空軌結構➞,易與高分子結構中的O、N元素形成配位鍵🚆,進而改善高分子的性能。熱塑性聚氨酯彈性體(TPU)由於結構穩定性和微生物抗性以及蛋白質相似性的分子結構和分子結構🍄‍🟫♔,是一種很好的生物材料,在高分子材料中引入少量稀土可以提高其血液相容性和生物相容性🐓,使其在體內穩定存在。以納米氧化鑭(La2O3)為研究對象⭐️,采用具有獨特納米空腔結構的樹枝狀大分子為模板劑👐🏽,誘導控製製備出不同形態結構的納米La2O3。再將稀土化合物引入TPU原位本體聚合中🛟,得到納米La2O3/TPU彈性體復合材料。系統研究了納米La2O3/TPU彈性體復合材料的生物性能。研究結果表明📌,由於納米稀土的引入💷,TPU彈性體血液相容性和生物相容性顯著提高。

     

    Abstract: Rare earth elements have a unique 4f-5d orbital structure, which is easy to form coordination bonds with O and N elements in the polymer structure, thus improving the properties of the polymer. Thermoplastic urethane (TPU) is a good biomaterial due to its structural stability, microbial resistance and similar molecular structure and structure of proteins. Introducing a small amount of rare earth into the polymer material can improve its blood compatibility and biocompatibility and make it exist stably in vivo. In this paper, nano lanthanum oxide (La2O3) was used as the research object, and dendritic macromolecules with unique nano cavity structure were used as templates to induce and control the preparation of nano lanthanum oxide with different morphological structures. The La2O3/TPU elastomer composites were prepared by introducing rare earth compounds into TPU in-situ bulk polymerization. The biological properties of nano-La2O3 /TPU elastomer composites were systematically studied. The results showed that the blood compatibility and biocompatibility of TPU elastomers were significantly improved due to the introduction of nano rare earth.

     

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