首页> 外文期刊>Journal of neurosurgical sciences >OPTIMIZATION OF COMPOSITION AND FORMATION OF TITANIA SOL-GEL COATINGS ON TITANIUM SUBSTRATE USING DIP-COATING TECHNIQUE
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OPTIMIZATION OF COMPOSITION AND FORMATION OF TITANIA SOL-GEL COATINGS ON TITANIUM SUBSTRATE USING DIP-COATING TECHNIQUE

机译:用浸涂技术优化二氧化钛溶胶 - 凝胶涂层的组合物与形成

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摘要

The objective of this work was to use a sol-gel method to prepare bioactive coatings containing calcium and phosphate ions under various coating conditions on a non-porous titanium substrate. Titania sol based on tetra-n-butyl-orthotitanate was prepared by direct dissolution of reagents and from stock ethanol solutions. The titanium substrate was grinded and coatings were prepared on the surface using a dip-coating technique under different coating conditions which are critical for preparation of sol-gel coatings. The conditions, which included the coating speed, chosen reagents and other experimental conditions, were selected based on previous experiments. The coating process was followed by drying for various periods of time and firing of the coated substrates. Bioactivity of the fired coatings was tested with a static in vitro test in simulated body fluid. After the firing and after the in vitro test the coatings were characterized with an optical microscope and with a scanning electron microscope. After the firing all types of coatings were made up of white circle areas of diverse morphology. After the in vitro test all types of the coatings contained a new Ca-P nuclei and white Ca-P phases of diverse morphology and size. The most continual precipitated Ca-P phases were detected on a sample prepared at the dipping and withdrawal speed of 20 cm.min(-1) with the dwell time of 30 s.
机译:这项工作的目的是使用溶胶 - 凝胶法在非多孔钛基材上的各种涂料条件下制备含有钙和磷酸盐离子的生物活性涂层。通过直接溶解试剂和乙醇溶液,制备基于Tetra-N-丁基 - 正交的二氧化钛溶胶。研磨钛基材在表面上使用浸涂技术在表面上制备涂层,这对于制备溶胶 - 凝胶涂层至关重要。根据先前的实验选择包括涂层速度,所选试剂和其他实验条件的条件。涂布过程随后在各种时间和涂覆的基材烧制时干燥。用静态体外试验在模拟体液中测试燃烧涂层的生物活性。在烧制之后和在体外测试之后,用光学显微镜和扫描电子显微镜表征涂层。在射击后,所有类型的涂料都是由不同形态的白圆面积组成的。在体外测试后,所有类型的涂层含有新的Ca-P核和白色CA-P阶段的不同形态和尺寸。在以20cm.min(-1)的浸渍和撤回速度为20cm.min(-1)的样品上检测最不连续的沉淀的Ca-p相。

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