首页> 外文会议>Indium Phosphide and Related Materials, 1992., Fourth International Conference on >Time and temperature dependence of phosphorus vapor pressure as measured by a pressure-balanced, sealed-ampoule technique
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Time and temperature dependence of phosphorus vapor pressure as measured by a pressure-balanced, sealed-ampoule technique

机译:通过压力平衡的密封安瓿技术测量的磷蒸气压的时间和温度依赖性

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For some commercial red P currently available, the vapor pressure values given by the supplier's data sheets are much different from those of K.J. Bachmann and E. Buehler (1974). During the synthesis of InP in sealed fused silica ampoules, explosions often occur when the vapor pressure estimated from the P reservoir temperature and the Bachmann-Buehler data is well below the breaking strength of the ampoule. To avoid such problems, the authors are balancing the P pressure inside the sealed synthesis ampoule with high-pressure Ar gas in a steel pressure vessel. Balancing is accomplished with the aid of a transducer that senses the difference between the P and Ar pressures. Unexpectedly rapid changes in P pressure with reservoir temperature have been observed during synthesis runs employing this procedure. A study of the time and temperature dependence of P vapor pressure that utilizes the pressure balancing apparatus and technique developed for InP synthesis is described.
机译:对于目前可用的一些商用红色P,供应商数据表中给出的蒸气压值与K.J. Bachmann和E.Buehler(1974)。在密封的熔融石英安瓿中合成InP期间,根据P储层温度和Bachmann-Buehler数据估算的蒸气压远低于安瓿的断裂强度时,经常会发生爆炸。为避免此类问题,作者在钢制压力容器中使密封的合成安瓿瓶内的P压力与高压Ar气达到平衡。平衡是借助感应器实现的,该感应器可感测P和Ar压力之间的差异。在采用该程序的合成运行过程中,观察到P压力随储层温度的快速变化。描述了利用为InP合成开发的压力平衡设备和技术对P蒸气压的时间和温度依赖性进行的研究。

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