Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
11026548 | Vacuum | 2018 | 14 Pages |
Abstract
We propose an effective and rapid route for synthesizing polycrystalline mayenite electride (C12A7:eâ) in dense bulk. C12A7:eâ bulks with high-density electron doping were obtained via a comprehensive method, which combined Ti powder treatment with spark plasma sintering (SPS) process under a 10â2Pa vacuum. The resulting electride, which exhibits an electron concentration of â¼2.3â¯Ãâ¯1021cmâ3, an electrical conductivity of â¼1.38â¯Ãâ¯103â¯S/cm at 300â¯K, and an absorption peak at 2.5eV, was obtained via SPS process at 1150â¯Â°C for 20â¯min. Furthermore, thermionic emission from a flat surface of C12A7 electride was examined at temperatures of 973-1373â¯K and acceleration electrical field of 3000-35000â¯V/cm in a 10â5 vacuum. A large current density of 1.68â¯A/cm2 was obtained in the thermionic emission with an work function (ÏWF) of 2.13eV for an applied electric field of 35000â¯V/cm. Moreover, the emission with a current density of 1.68â¯A/cm2 was stably sustained for 30â¯h. These results not only suggest an efficient method for fabricating high-quality mayenite electrides but also pave a way for various applications including thermionic emission.
Keywords
Related Topics
Physical Sciences and Engineering
Materials Science
Surfaces, Coatings and Films
Authors
Fan Li, Xin Zhang, Hongliang Liu, Jiping Zhao, Yixin Xiao, Qi Feng, Jiuxing Zhang,