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射频溅射沉积 ZnO 薄膜的结构与血液相容性

Structure and haemocompatibility of ZnO films deposited by radio frequency sputtering.

机构信息

State Key Laboratory of Optoelectronic Materials and Technologies, Sun Yat-Sen University, Guangzhou 510275, People's Republic of China.

出版信息

Biomed Mater. 2009 Oct;4(5):055004. doi: 10.1088/1748-6041/4/5/055004. Epub 2009 Sep 23.

Abstract

ZnO films were first deposited on silicon and glass substrates using radio frequency sputtering and then annealed in air at different temperatures from 300 to 700 degrees C. The microstructures, surface energy and optical properties of ZnO films were examined by x-ray diffraction, Raman spectroscopy, contact angle test and UV-visible optical absorption spectroscopy, respectively. Results show that a perfectly oriented ZnO (0 0 2) thin film is obtained in all ZnO samples. Raman spectroscopy, in combination with those derived by UV-visible optical absorption spectroscopy, provides us with an accurate description of ZnO nature, revealing that, after annealing, ZnO films exhibit better crystallinity and narrower optical energy gap. The contact angle test denotes that the adhesive work and polar component of the surface energy of ZnO films increase steadily with the annealing temperature, which leads to more active interaction between annealed ZnO films and blood plasma. The platelet adhesion experiment shows that there are fewer platelets adhered to the surface of ZnO films compared to the polyurethane (PU) used in clinical application, suggesting ZnO's better compatibility with blood. As the annealing temperature increases, the number of platelets adhered to ZnO films increases correspondingly, which we believe is due to the narrower optical energy gap. Therefore, the appropriate surface properties and the wide optical energy gap of ZnO thin films are believed to be the main factors responsible for the excellent haemocompatibility.

摘要

氧化锌薄膜首先通过射频溅射沉积在硅和玻璃衬底上,然后在空气气氛中于 300 至 700°C 的不同温度下退火。通过 X 射线衍射、拉曼光谱、接触角测试和紫外-可见吸收光谱分别研究了 ZnO 薄膜的微观结构、表面能和光学性能。结果表明,所有 ZnO 样品中均获得了完全取向的 ZnO(002)薄膜。拉曼光谱与紫外-可见吸收光谱相结合,为我们提供了 ZnO 性质的准确描述,表明退火后 ZnO 薄膜表现出更好的结晶度和更窄的光学能隙。接触角测试表明,随着退火温度的升高,ZnO 薄膜的粘附功和表面能的极性分量稳步增加,这导致退火后的 ZnO 薄膜与血浆之间的相互作用更加活跃。血小板粘附实验表明,与临床应用中的聚氨酯(PU)相比,附着在 ZnO 薄膜表面的血小板较少,这表明 ZnO 与血液具有更好的相容性。随着退火温度的升高,附着在 ZnO 薄膜上的血小板数量相应增加,我们认为这是由于光学能隙变窄所致。因此,ZnO 薄膜的适当表面性能和宽光学能隙被认为是其具有优异血液相容性的主要原因。

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