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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Antibacterial activity of silver-doped silica glass microspheres prepared by a sol-gel method.
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Antibacterial activity of silver-doped silica glass microspheres prepared by a sol-gel method.

机译:通过溶胶-凝胶法制备的掺银二氧化硅玻璃微球的抗菌活性。

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摘要

Various kinds of inorganic substances doped with silver ions have been developed as antibacterial materials, and some have already been commercialized. Previously, we successfully prepared colorless silica glass microspheres doped with silver ions in combination with aluminum ions by a sol-gel method. However, the antibacterial activity of the microspheres was not maintained for long periods in an aqueous environment, since the silver ions were located only in a thin layer near the surface of the microspheres. In this study, silica glass microspheres in which silver ions are uniformly distributed were attempted to be prepared. A tetraethoxysilane ethanol solution was mixed with aqueous silver nitrate and aluminum nitrate solutions to be subjected to almost simultaneous hydrolysis and polycondensation. An ammonia solution was then added, to form microspheres. Monodispersed microspheres about 0.1 microm in diameter were obtained, which did not show coloring even after heat treatment at 600-1000 degrees C, indicating that the silver in the microspheres took the form of Ag(+) ions and not colloid, even after the heat treatments. Microspheres heat-treated at temperatures ranging from 700 to 800 degrees C showed much higher antibacterial activity than commercial antibacterial zeolites and maintained their high antibacterial activities for long periods in an aqueous environment. Polypropylene plates and films mixed with the microspheres heat-treated at 800 degrees C showed excellent antibacterial properties.
机译:已经开发出各种掺杂有银离子的无机物质作为抗菌材料,并且一些已经商业化。以前,我们已经通过溶胶-凝胶法成功地制备了无色石英玻璃微球,其中掺有银离子和铝离子。但是,由于银离子仅位于微球表面附近的薄层中,因此在水环境中不能长期保持微球的抗菌活性。在该研究中,试图制备其中银离子均匀分布的二氧化硅玻璃微球。将四乙氧基硅烷乙醇溶液与硝酸银水溶液和硝酸铝溶液混合,以使其几乎同时水解和缩聚。然后加入氨溶液以形成微球。获得直径约0.1微米的单分散微球,即使在600-1000℃下热处理后也没有显示出着色,表明即使在加热后,微球中的银也呈Ag(+)离子而不是胶体的形式。治疗。在700到800摄氏度的温度范围内进行热处理的微球具有比商业抗菌沸石高得多的抗菌活性,并且在水性环境中可长期保持高抗菌活性。与在800℃下热处理过的微球混合的聚丙烯板和膜表现出出色的抗菌性能。

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