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首页> 外文期刊>Surface & Coatings Technology >New approach to improve polymer-Mg interface in biodegradable PLA/Mg composites through particle surface modification
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New approach to improve polymer-Mg interface in biodegradable PLA/Mg composites through particle surface modification

机译:通过颗粒表面改性改善生物降解PLA / Mg复合材料中的聚合物-MG界面的新方法

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摘要

PLA/Mg composites have been successfully proposed as biodegradable and fully bioabsorbable materials for bone repair. The present work claims the benefits of Mg particles modification throughout the adsorption of surface modifiers in the in vitro biodegradation behavior of PLA/Mg composites. Additionally, the mixture of PLA with Mg particles in a colloidal suspension replaces the thermal-melting extrusion mixing, preventing the drawbacks associated to the thermal degradation of the polymer during processing. To fulfill this requirement it is necessary to improve the interaction particle-liquid medium for the hydrophilic surface of Mg particles and the organic solvent of PLA, which will provide the maximum dispersion of the Mg in the composite. In this sense, surfaces of Mg particles were modified by the adsorption of two different stabilizers, a surfactant as cetyl-trimethylammonium bromide (CTAB) and a polyelectrolyte as polyethylenimine (PEI). The colloidal and chemical stability of Mg was studied in terms of Mg2+ dissolution, zeta-potential and rheology. A chemically stable suspension of modified Mg particles was mixed with the PLA solution in THF, and the mixture was used as feedstock to prepare films by tape casting. The characterization of the composites shows that particle surface modification determines Mg corrosion and hence governs the composite biodegradation.
机译:已成功提出PLA / Mg复合材料作为可生物降解和完全生物可吸收的骨骼修复材料。本作本作在PLA / Mg复合材料的体外生物降解行为中,在整个表面改性剂中造成Mg颗粒改性的益处。另外,PLA在胶体悬浮液中用Mg颗粒的混合物取代了热熔挤出混合,防止了与加工过程中聚合物的热劣化相关的缺点。为了满足该要求,有必要改善用于Mg颗粒的亲水表面和PLA的有机溶剂的相互作用颗粒 - 液体培养基,其将提供Mg在复合材料中的最大分散体。从这个意义上讲,通过吸附两种不同的稳定剂,作为聚乙基 - 三甲基溴化铵(CTAB)的表面活性剂和聚乙基亚胺(PEI)的聚电解质来改变Mg颗粒的表面。根据Mg2 +溶解,Zeta潜力和流变学,研究了Mg的胶体和化学稳定性。将改性的Mg颗粒的化学稳定的悬浮液与THF中的PLA溶液混合,并将混合物用作原料以通过胶带铸造制备薄膜。复合材料的表征表明,颗粒表面改性决定了Mg腐蚀,因此控制了复合生物降解。

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