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Phase Transformation in the Surface Region of Zirconia Detected by UV Raman Spectroscopy

机译:紫外拉曼光谱检测氧化锆表面区域的相变

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The phase transformation of zirconia from tetragonal to monoclinic is characterized by UV Raman spectroscopy, visible Raman spectroscopy, and XRD. Electronic absorption of ZrO_2 in the UV region makes UV Raman spectroscopy more sensitive at the surface region than XRD or visible Raman spectroscopy. Zirconia changes from the tetragonal phase to the monoclinic phase with calcination temperatures elevated and monoclinic phase is always detected first by UV Raman spectroscopy for the samples calcined at lower temperatures than that by XRD and visible Raman spectroscopy. When the phase of zirconia changes from tetragonal to monoclinic, the slight changes of the phase at very beginning can be detected by UV Raman sepctroscopy. UV Raman spectra clearly indicate that the phase transition takes place initially at the surface regions. It is found that the phase change from tetragonal to monoclinic is significantly retarded when amorphous Zr(OH)_4was agglomerated to bigger particles and the particle agglomeration of amorphous zirconium hydroxide is beneficial to the stabilization of t-ZrO_2 phase.
机译:氧化锆从四方相到单斜相的相变通过紫外拉曼光谱,可见拉曼光谱和XRD表征。与XRD或可见拉曼光谱相比,ZrO_2在紫外区域的电子吸收使紫外拉曼光谱在表面区域更敏感。随着煅烧温度的升高,氧化锆从四方相变为单斜晶相,对于比XRD和可见拉曼光谱法煅烧温度低的样品,总是首先通过UV拉曼光谱法检测单斜晶相。当氧化锆的相位从四方变为单斜晶时,可以通过紫外拉曼光谱仪检测到相的最开始有细微变化。 UV拉曼光谱清楚地表明,相变最初发生在表面区域。研究发现,当非晶态Zr(OH)_4团聚成较大的颗粒时,从四方相到单斜相的相变被显着延迟,并且非晶态氢氧化锆的颗粒团聚有利于t-ZrO_2相的稳定。

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