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Study on surface modification of ultrafine inorganic antibacterial particles

机译:超细无机抗菌颗粒的表面改性研究

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In the paper, titanate and aluminate-coupling agents were used to the surface modification of ultrafine inorganic antibacterial particles (UIAP) by dry mixing and solution methods. Several characterization methods were carried out to qualitatively and quantitatively analyze the results of surface modification such as FT-IR, water-absorbability and viscosity methods. The modified UIAP was added into PP to prepare antibacterial composites. The SEM showed that the surface-modified UIAP was well dispersed in PP and the average particle size was lower than 0.5 μm. Solution method has better effect on the surface treatment of inorganic particles compared with dry mixing method. The mechanical properties of composites were tested, and the results approved that coupling agents could improve the mechanical properties of composites in a certain range. The experimental results indicated that the optimal content of titanate- and aluminate-coupling agents were 1.5 and 2.0-3.0 wt.%, respectively. Examination of antibaterial property proved that surface modification had no influence on antibacterial capability of UIAP; moreover, PP/UIAP composites have good antibacterial property and broad-spectrum antibacterial capability as well as UIAP.
机译:本文采用钛酸盐和铝酸盐偶联剂通过干混和溶液法对超细无机抗菌颗粒(UIAP)进行表面改性。进行了多种表征方法,以定性和定量分析表面改性的结果,如FT-IR,吸水率和粘度法。将改性的UIAP添加到PP中以制备抗菌复合材料。 SEM显示表面改性的UIAP充分分散在PP中,平均粒径小于0.5μm。与干混法相比,固溶法对无机颗粒的表面处理效果更好。对复合材料的力学性能进行了测试,结果表明偶联剂可以在一定范围内改善复合材料的力学性能。实验结果表明,钛酸酯和铝酸酯偶联剂的最佳含量分别为1.5和2.0-3.0重量%。检查抗菌性能证明表面改性对UIAP的抗菌能力没有影响。而且,PP / UIAP复合材料与UIAP一样,具有良好的抗菌性和广谱抗菌能力。

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