Volodin Alexander M, Kenzhin Roman M, Kapishnikov Aleksandr V, Komarovskikh Andrey Y, Vedyagin Aleksey A
Boreskov Institute of Catalysis, 630090 Novosibirsk, Russia.
Department of Natural Sciences, Novosibirsk State University, 630090 Novosibirsk, Russia.
Materials (Basel). 2022 Dec 16;15(24):8988. doi: 10.3390/ma15248988.
The evolution of the structure and the phase composition of a dispersed mayenite at its interaction with metallic aluminum was studied in a temperature range from 900 to 1400 °C in both argon and air atmospheres. The aluminum loading was varied from 0 to 50 wt%. It was found that the addition of aluminum significantly affects the stability of the mayenite and other calcium aluminate phases within the studied temperature range. The formation of the electride state registered by the appearance of a characteristic electron paramagnetic resonance (EPR) signal from F+-like centers (g~1.994) in an argon atmosphere was shown to take place already at 1150 °C due to an aluminothermic reduction of this material. The super-narrow (Hp-p < 0.5 G) EPR spectra from F+-like centers, which were recently observed for the core−shell structures of the C12A7@C type only, were registered for mayenite for the first time. The results obtained in the present study testify firstly towards the possibility of significantly diminishing the temperatures required for the formation of the electride state in such systems and secondly towards the ability to stabilize the size of small electride nanoparticles within the synthesized calcium aluminate matrix.
在氩气和空气气氛中,于900至1400°C的温度范围内,研究了分散的钙铝石在与金属铝相互作用时其结构和相组成的演变。铝负载量在0至50 wt%之间变化。结果发现,在所研究的温度范围内,铝的添加显著影响钙铝石和其他铝酸钙相的稳定性。由于该材料的铝热还原作用,在氩气气氛中,在1150°C时就已出现由类似F +中心(g~1.994)的特征电子顺磁共振(EPR)信号所表征的电子化物态的形成。首次在钙铝石中记录到了仅在C12A7@C型核壳结构中最近才观察到的来自类似F +中心的超窄(Hp-p < 0.5 G)EPR谱。本研究获得的结果首先证明了显著降低此类体系中形成电子化物态所需温度的可能性,其次证明了在合成的铝酸钙基质中稳定小尺寸电子化物纳米颗粒大小的能力。