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Multiple Soaking with Different Solution Concentration in Doped Silica Preform Fabrication Using Modified Chemical Vapor Deposition and Solution Doping

机译:改进的化学气相沉积和溶液掺杂技术在掺杂二氧化硅预制棒制备中多次浸泡不同溶液浓度

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Incorporation of alumina (Al2O3) into a silica matrix by modified chemical vapor deposition and a solution doping technique is investigated in this study. Multiple soaking cycles were used to increase the aluminum content in the core layer The effect of alumina retention in silica matrix soot is focused by multiple cycles of soaking with different solution concentrations, while the effect of the adsorption mechanism is fixed by maintaining the soot deposition process (such as temperature [1,800 degrees C], precursor, total gas flow, and soaking time). The deposited soot is examined for porosity characteristics and effective surface area by a gas adsorption technique with Brunauer Emett Teller surface area analysis and the surface and cross-section morphology using scanning electron microscopy. Three different concentrations are used in this work (0.3, 0.7, and 1.2 M) with multiple cycles of soaking. Sintering and the collapsing process is controlled for each preform. The result shows that the alumina content is increased substantially as the number of soaking processes is increased, which may be due to the retention effect as only a small amount of adsorption process takes place as indicated by the slight decrease in the surface area of soot. The collapsed preforms are analyzed using a preform analyzer Energy dispersive x-ray spectrometry is used to check aluminum content and distribution into the core layer
机译:在这项研究中研究了通过改良的化学气相沉积和溶液掺杂技术将氧化铝(Al2O3)掺入二氧化硅基质中。使用多个浸泡循环来增加芯层中的铝含量。通过在不同溶液浓度下进行多个浸泡循环,可以集中氧化铝在二氧化硅基体烟灰中的保留效果,同时通过保持烟灰沉积过程来固定吸附机制的效果。 (例如温度[1,800摄氏度],前体,总气体流量和均热时间)。通过气体吸附技术,通过布鲁瑙尔·艾米特·泰勒(Brunauer Emett Teller)表面积分析以及使用扫描电子显微镜的表面和横截面形态,检查沉积的烟灰的孔隙率特性和有效表面积。在这项工作中使用了三种不同的浓度(0.3、0.7和1.2 M),并进行了多次浸泡。每个预成型坯的烧结和塌陷过程均受到控制。结果表明,随着浸泡过程次数的增加,氧化铝含量显着增加,这可能是由于保持作用所致,因为烟灰的表面积略有减少表明仅发生了少量的吸附过程。使用瓶坯分析仪分析塌陷的瓶坯,使用能量色散X射线光谱法检查铝含量和分布到芯层中

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