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Phase transformation and morphological evolution of electrospun zirconia nanofibers during thermal annealing

机译:电纺氧化锆纳米纤维在热退火过程中的相变和形貌演变

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摘要

Pure zirconia nanofibers were fabricated by electrospinning zirconia-polymer precursor and subsequent annealing. Fiber properties such as polymer decomposition, crystallization formation, phase transformation, surface morphologies, etc., were investigated by various techniques, including thermogravimetric analysis (TGA) and differential thermal analysis (DTA), high temperature differential scanning calorimeter (HTDSC), powder X-ray diffractometer (XRD), field emission scanning electron microscopy (FESEM), etc. It was found that the crystallization of as-spun fibers started at 450 deg C and the initial crystallized zirconia phase was tetragonal (t), which began transforming to monoclinic (m) phase at 650 deg C as evidenced by XRD; HTDSC showed at different thermal circles, the m-to-t transformation temperatures remained virtually unchanged while the reverse t-to-m temperatures systemagally shifted from 924.9 to 978.6 deg C as the progress of thermal circles; FESEM examinations revealed that fibers calcined to 1000 deg C went through thermal grooving due to surface diffusion during heat treatment; fibers heated to 1370 deg C formed the so-called "bamboo wires", where volume diffusion was the dominant driving force.
机译:通过静电纺丝氧化锆聚合物前体并随后进行退火,可以制造出纯氧化锆纳米纤维。通过各种技术研究了纤维特性,例如聚合物分解,结晶形成,相变,表面形态等,包括热重分析(TGA)和差热分析(​​DTA),高温差示扫描量热仪(HTDSC),粉末X射线衍射仪(XRD),场发射扫描电子显微镜(FESEM)等。发现初纺纤维的结晶始于450℃,初始结晶的氧化锆相为四方晶体(t),并开始转变为XRD证实在650摄氏度时为单斜(m)相; HTDSC显示,在不同的热循环下,随着热循环的进行,m到t的转变温度实际上保持不变,而反向的t到m的温度系统地从924.9℃转变到978.6℃。 FESEM检查显示,煅烧至1000摄氏度的纤维由于热处理过程中的表面扩散而经历了热切槽;加热到1370摄氏度的纤维形成了所谓的“竹线”,其中体积扩散是主要的驱动力。

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