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Blood Compatibility of TiO_(2-x)N_x Thin Films Prepared by Improved Ultrasonic Spray Pyrolysis

机译:通过改进超声波喷雾热解制备的TiO_(2-X)N_X薄膜的血液相容性

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Nitrogen-doped titanium oxide (TiO_(2-x)N_x) films were prepared by an improved ultrasonic spray pyrolysis device with buty1 titanate as the titanium source and ammonia as the nitrogen source. X-ray diffraction technique, scanning electronic microscope and UV-VIS spectroscopy were applied to study the microstructure, surface morphology and optical properties of the resulting films. The XRD peak intensity of the as-prepared films decreased with the increasing of nitrogen content and increased with the increasing of temperature, which indicates that the N doping introduced defects or strain in the TiO_2 film. The SEM results indicate that all the samples have a nano-sized uniform surface. The smallest band gap and best hydrophobicity are obtained at the nitrogen concentration of 4 at. % and deposited at 400. The blood compatibility of TiO_(2-x)N_x thin films was observed through platelet adhesion. The experiments results show that the amount of thrombus on the TiO_(2-x)N_x thin films is much less than that of pyrolytic carbon. The experimental results show that the nano-sized TiO_(2-x)N_x thin films will be a new kind of promising materials applied to artificial heart valve and endovascula stent.
机译:通过用Buty1钛酸钛作为钛源和氨作为氮源,通过改进的超声波喷雾热解装置制备氮掺杂氧化钛(TiO_(2-X)N_X)膜。 X射线衍射技术,扫描电子显微镜和UV-Vis光谱应用研究了所得薄膜的微观结构,表面形态和光学性质。由于氮含量的增加,由氮含量的增加和温度的增加而增加,XRD峰强度降低,表明N掺杂引入TiO_2膜中的缺陷或菌株。 SEM结果表明所有样品具有纳米尺寸的均匀表面。在4at的氮浓度下获得最小的带隙和最佳疏水性。 %并沉积在400中。通过血小板粘附观察TiO_(2-x)N_x薄膜的血液相容性。实验结果表明,TiO_(2-x)N_X薄膜上的血栓量远小于热解碳的量。实验结果表明,纳米大小的TiO_(2-X)N_X薄膜将是一种适用于人造心脏瓣膜和Endocascula支架的新型有希望的材料。

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