不同起泡器设计的输运特性[MOVPE]

M.S. Ravetz, R. Odedra, L. M. Smith, S. Rushworth, A. B. Leese, G. Williams, R. Kanjolia
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引用次数: 1

摘要

在MOVPE工艺中,前驱体进入反应室的稳定、可控的通量是制作高度复杂的三元和四元层器件结构的关键因素。历史上,一种简单的起泡器设计被用来执行这项任务,载气流量和源温度控制能够提供一个适当稳定的系统。然而,随着对MOVPE设备体积需求的增加,增加流量和更大的起泡器成为必要,简单的倾斜管(倾斜支管)方法不再100%适用。本文对三种新型起泡器浸管设计进行了研究,并与标准方法进行了比较。Epison III型超声波分析仪用于监测各种起泡器在一定流量和温度范围内对前驱体的拾取。研究人员对流量高达10 sclm的起泡器浸出管设计进行了研究,并观察到了不同设计之间的差异,结果突出了采用新的横向浸出管设计可以实现的改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transport properties for different bubbler designs [MOVPE]
In the MOVPE process a steady, controllable flux of precursor into the reaction chamber is a key factor when fabricating highly complex device structures employing ternary and quaternary layers. Historically a simple bubbler design has been employed to perform this task with carrier gas flow and source temperature control able to provide a suitably stable system. However, with the increasing volume demands placed on MOVPE equipment, increased flows and larger bubblers have become necessary and the simple dip tube (dip leg) approach is no longer 100% suitable. In this study, an investigation of 3 novel bubbler dip tube designs have been performed and a comparison made with the standard approach. An Epison III ultrasonic analyser was employed to monitor the pick up of the precursor from a variety of bubblers across a range of flow rates and temperatures. Flows up to 10 sclm have been investigated and differences observed between bubbler dip leg designs the results of which highlight the improvements achievable using a new crosspiece dip tube design.
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