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Optical and surface characterization of amorphous boron nitride thin films for use as blood compatible coatings

机译:用作血液相容性涂层的非晶态氮化硼薄膜的光学和表面表征

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The aim of this work is the investigation of the haemocompatibility properties of homogeneous and amorphous boron nitride (a-BN) thin films, through the adsorption of two basic blood plasma proteins, human serum albumin (HSA) and fibrinogen (Fib). The a-BN thin films were grown onto c-Si(100) substrates under different values of substrate bias voltage, employing the radio frequency (RF) magnetron sputtering technique. For the consideration of the optical, compositional and structural properties of the films, Spectroscopic Ellipsometry (SE) in the Vis-UV spectral region was used, while for the study of surface topography and surface charge distribution as well as of the wetting properties of the a-BN thin films, Atomic Force Microscopy (AFM), Electric Force Microscopy (EFM) and Contact Angle measurements were additionally employed. The properties of the thin films were correlated with their haemocompatibility, through the estimation of the ratio of HSA/Fib surface concentration. The sp~3 content of the samples does not seem to correlate with the haemocompatibility of the a-BN thin films. However, the surface properties determine the thrombogenicity potential of the studied samples. More precisely, the a-BN films with a less negatively charged surface exhibit the smallest possibility of clot formation, possibly due to the interactions between the charged chains of the Fib molecules and the a-BN surface, while slight changes in the surface roughness do not affect their haemocompatibility properties. The wetting properties determine the thickness of the adsorbed Fib as well as the ratio of HSA/Fib surface concentration.
机译:这项工作的目的是通过吸附两种基本血浆蛋白,人血清白蛋白(HSA)和纤维蛋白原(Fib),研究均质和非晶态氮化硼(a-BN)薄膜的血液相容性。使用射频(RF)磁控溅射技术,在不同的衬底偏压值下,将a-BN薄膜生长到c-Si(100)衬底上。考虑到薄膜的光学,组成和结构特性,使用了Vis-UV光谱区的分光椭圆仪(SE),同时研究了薄膜的表面形貌和表面电荷分布以及润湿性能。另外还使用了a-BN薄膜,原子力显微镜(AFM),电力显微镜(EFM)和接触角测量。通过估计HSA /纤维表面浓度之比,将薄膜的性能与其血液相容性相关。样品中sp〜3的含量似乎与a-BN薄膜的血液相容性不相关。但是,表面性质决定了所研究样品的血栓形成潜力。更准确地说,带负电荷的表面较少的a-BN膜表现出最小的凝块形成可能,这可能是由于Fib分子的带电链与a-BN表面之间的相互作用所致,而表面粗糙度却有微小变化不影响其血液相容性。润湿性能决定了吸附的Fib的厚度以及HSA / Fib表面浓度之比。

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