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Emission and evaporation properties of 75 at.% Re-25 at.% W mixed matrix impregnated cathode

机译:75原子%Re-25原子%W混合基质浸渍阴极的发射和蒸发特性

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We present a comprehensive study on the phase, emission performance, surface composition, chemical states and evaporation properties of a 75 at.% Re-25 at.% W (75Re) mixed matrix impregnated cathode by several modern analyzers, including XRD, electron emission test device, in situ AES, XPS and Quartz Crystal Oscillation Instrument (QCOI). On the basis of experimental results, the adsorption energy and charge transfer of the Ba-O dipole adsorbed on cathode surface was investigated by the first-principles density functional theory calculations. The in situ AES analyses indicate that the atomic ratio of Ba:O of the active emission layer on the cathode surface converged to 3:2 for a conventional Ba-W cathode and to about 3: 1 for the 75Re cathode. Due to the larger adsorption energy of Ba and Ba-O on 75Re cathode surface, the total evaporation rate of Ba and BaO in the 75Re cathode is much lower than that for the Ba-W cathode, which is agreed favorably with the experimental evaporation data. Our characterizations and calculations suggest that rhenium in the matrix of impregnated cathodes improves the stability of Ba-O dipole on the cathode surface and enhances the emission capability substantially. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们通过几种现代分析仪,包括XRD,电子发射,对75at。%Re-25 at。%W(75Re)混合基质浸渍阴极的相,发射性能,表面成分,化学状态和蒸发性能进行了全面研究。测试设备,原位AES,XPS和石英晶体振荡仪(QCOI)。在实验结果的基础上,采用第一性原理密度泛函理论计算了Ba-O偶极子在阴极表面的吸附能和电荷转移。原位AES分析表明,对于传统的Ba-W阴极,阴极表面活性发射层的Ba:O原子比收敛至3:2,而对于75Re阴极约为3:1。由于Ba和Ba-O在75Re阴极表面上的吸附能量较大,因此75Re阴极中Ba和BaO的总蒸发速率远低于Ba-W阴极,这与实验蒸发数据相吻合。我们的表征和计算表明,浸渍阴极基质中的s提高了阴极表面Ba-O偶极子的稳定性,并显着增强了发射能力。 (C)2017 Elsevier B.V.保留所有权利。

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