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Specialized investigations on physical and morphological features of TiC thin films synthesized by PECVD method

机译:PECVD法合成TiC薄膜的物理形态特征的专门研究

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Deposition of titanium carbide (TiC) thin film on 304 stainless steel was investigated by the plasma enhanced chemical vapor deposition (PECVD) method using a 5% C2H2 + 95% Ar gas mixture as a reactant gases and carbon source with titanium plate as a target. Physical and mechanical properties of the synthesized TiC thin film on 304 stainless steel were studied to determine its potential application as a protective layer for first wall of Tokamaks. X-ray diffraction (XRD) showed that the crystalline structures of TiC (111 and 220) for sample without annealing and TiC (111, 220 and 311) for sample with annealing at 1000 degrees C for 1 h, was formed. The XPS Ti 2p spectrum of sample shows two peaks related to the binding energies of 455.3 eV (the photoelectron peaks of Ti 2p 3/2) and 460.9 eV (the photoelectron peaks of Ti 2p 1/2). Also, the C 1s spectra with the binding energy of 281.3 eV was seen in XPS analysis. TiC film of about 10.9 mu m thickness was observed on scanning electron microscopy (SEM) image. The morphological feature like statistical parameters, the motifs analysis and the watershed segmentation of the thin film 3D surface of TiC films were investigated by the AFM analysis and MountainsMap Premium 7.2 (64-bit version) and Gwyddion softwares. Also, the effect of annealing on Minkowski functionals of TiC samples were studied. At the end, we can conclude that TiC NPs synthesized in this work by PECVD method have uniformly deposition. All results of AFM analysis provide general insight of nanostructures and properties of these thin films and can be used to achieve to a new topography model of the thin film 3D surface.
机译:采用等离子增强化学气相沉积(PECVD)方法,以5%C2H2 + 95%Ar气体混合物为反应气体,以碳源为钛板,研究了在304不锈钢上沉积碳化钛(TiC)薄膜。研究了在304不锈钢上合成的TiC薄膜的物理和机械性能,以确定其潜在用途作为Tokamaks第一壁的保护层。 X射线衍射(XRD)表明,形成了未退火的样品的TiC(111和220)和在1000℃下退火1h的样品的TiC(111、220和311)的晶体结构。样品的XPS Ti 2p光谱显示了两个与结合能相关的峰,分别为455.3 eV(Ti 2p 3/2的光电子峰)和460.9 eV(Ti 2p 1/2的光电子峰)。同样,在XPS分析中发现结合能为281.3 eV的C 1s光谱。在扫描电子显微镜(SEM)图像上观察到约10.9μm厚度的TiC膜。通过AFM分析,MountainMap Premium 7.2(64位版本)和Gwyddion软件研究了TiC薄膜的3D薄膜表面的统计参数,图案分析和分水岭分割等形态特征。此外,还研究了退火对TiC样品的Minkowski功能的影响。最后,我们可以得出结论,通过PECVD方法合成的TiC NPs具有均匀的沉积。 AFM分析的所有结果提供了这些薄膜的纳米结构和特性的一般见识,并可用于实现薄膜3D表面的新形貌模型。

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