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Vacuum solid-state ion-conducting silver source for application in field emission electric propulsion systems

机译:真空固态离子导电银源,用于场发射电推进系统

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A point-like silver ion source with thin film of RbAg4I5 solid electrolyte was developed for application in field emission electric propulsion systems. The solid electrolyte produced by mechano-chemical synthesis was deposited on the apex of a silver tip using pulsed laser deposition. The running tests at 195 degrees C working temperature and 10 kV accelerating potential have demonstrated that the source can continuously produce positive ion current of several hundred pA during a few days with a peak value of 25-50 nA. Using TOF-SIMS analysis it has been shown that the ion current consists of Ag+ with a small contribution of Rb+, lower than 0.5 at.%. We suggest that Ag+ emission occurs mainly by means of field assisted ion evaporation and/or ion desorption, and the solid electrolyte plays a role of the transport system, in which the emitted Ag+ ions are continually replaced by mobile Ag+ ions delivered from the silver reservoir by direct mass transfer under the influence of an external electric field. (C) 2016 Elsevier Ltd. All rights reserved.
机译:开发了具有RbAg4I5固体电解质薄膜的点状银离子源,用于场发射电推进系统。通过机械化学合成产生的固体电解质使用脉冲激光沉积沉积在银尖端的顶点上。在195摄氏度的工作温度和10 kV的加速电位下进行的运行测试表明,该离子源可以在几天内连续产生数百pA的正离子电流,其峰值为25-50 nA。使用TOF-SIMS分析表明,离子电流由Ag +组成,Rb +的贡献很小,低于0.5 at。%。我们认为,Ag +的发射主要通过场辅助离子蒸发和/或离子解吸而发生,并且固体电解质起着传输系统的作用,其中所发射的Ag +离子不断地被从银储层中输送的可移动Ag +离子代替通过在外部电场的影响下直接传质。 (C)2016 Elsevier Ltd.保留所有权利。

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