Hayami Wataru, Tang Shuai, Tang Jie, Qin Lu-Chang
International Center for Materials Nanoarchitectonics, National Institute for Materials Science Tsukuba Ibaraki 305-0044 Japan
Center for Green Research on Energy and Environmental Materials, National Institute for Materials Science Tsukuba Ibaraki 305-0047 Japan.
Nanoscale Adv. 2022 Oct 11;4(21):4669-4676. doi: 10.1039/d2na00536k. eCollection 2022 Oct 25.
Nanoscale electron field emitters are known to produce more stable electron emissions than conventional emitters. This has been attributed to size effects; nanoscale emitters can operate with a small emission current and a low extraction voltage, which reduces the bombardment of residual gas ions on the emitter tip. However, our experiments discovered that nanoscale LaB emitters had extremely stable emissions, suggesting that chemical effects are present in addition to size effects. This suggests that during operations, a material other than LaB may be deposited on the surface of the tip to enhance the stability of emissions. Therefore, we searched for possible materials theoretically within the La-B-O ternary system and found that lanthanum oxides (LaO) and oxygen-deficient LaO (LaO ) had good electrical conductivity and a low work function comparable to that of LaB. These lanthanum oxides are chemically less reactive to residual gases than LaB. Thus, if they are present on the LaB surface, they could stabilize electron emissions without diminishing the emission performance. These findings suggest that lanthanum oxides could be used for electron field emitters.
已知纳米级电子场发射器比传统发射器能产生更稳定的电子发射。这归因于尺寸效应;纳米级发射器可以在小发射电流和低提取电压下运行,这减少了残余气体离子对发射器尖端的轰击。然而,我们的实验发现纳米级LaB发射器具有极其稳定的发射,这表明除了尺寸效应外还存在化学效应。这表明在操作过程中,可能有除LaB之外的材料沉积在尖端表面以增强发射的稳定性。因此,我们在La-B-O三元体系中从理论上寻找可能的材料,发现氧化镧(LaO)和缺氧的LaO(LaO )具有良好的导电性和与LaB相当的低功函数。这些氧化镧在化学上对残余气体的反应性比LaB小。因此,如果它们存在于LaB表面,它们可以稳定电子发射而不降低发射性能。这些发现表明氧化镧可用于电子场发射器。