Yang Jing, Li Xianliang, Wu Junbiao, Han Yide, Wang Zhuopeng, Zhang Xia, Xu Yan
Department of Chemistry, College of Sciences, Northeastern University, Shenyang, Liaoning 110819, P.R. China.
College of Materials Science and Engineering, Shenyang University of Chemical Technology, Shenyang, Liaoning 110142P.R. China.
Dalton Trans. 2020 Oct 27;49(41):14475-14482. doi: 10.1039/d0dt03106b.
Multicomponent spinel ferrites are essential to be used in high-performance gas-sensing materials. Herein, multinary (Cu,Zn)Fe2O4 spinel nano-microspheres with tunable internal structures, including solid, core-shell, and yolk-shell, were successfully synthesized by a simple self-templated solvothermal method combined with a subsequent annealing strategy. The internal structures of the (Cu,Zn)Fe2O4 nano-microspheres significantly rely on the heating rates of the precursors, which show promising selective response towards trimethylamine gas. Among them, the as-formed yolk-shell (Cu,Zn)Fe2O4 nano-microspheres exhibited high response to triethylamine with excellent selectivity of STEA/SX = 1.86 at 160 °C, fast response-recovery rate (58 s/136 s), and long-term repeatability and stability of more than one month. The corresponding triethylamine gas-sensing mechanism with the special microstructures is discussed. This work provides new insights into the rational design of interior structure and the modulation of high gas response and selectivity of multinary spinel ferrites in gas-sensing applications.
多组分尖晶石铁氧体对于高性能气敏材料的应用至关重要。在此,通过一种简单的自模板溶剂热法结合后续退火策略,成功合成了具有可调内部结构(包括实心、核壳和蛋黄壳结构)的多元(Cu,Zn)Fe₂O₄ 尖晶石纳米微球。(Cu,Zn)Fe₂O₄ 纳米微球的内部结构显著依赖于前驱体的加热速率,其对三甲胺气体表现出有前景的选择性响应。其中,所形成的蛋黄壳结构(Cu,Zn)Fe₂O₄ 纳米微球对三乙胺表现出高响应,在160℃时具有优异的选择性,STEA/SX = 1.86,响应 - 恢复速率快(58 s/136 s),并且具有超过一个月的长期重复性和稳定性。讨论了具有特殊微观结构的相应三乙胺气敏机理。这项工作为气敏应用中多元尖晶石铁氧体内部结构的合理设计以及高气敏响应和选择性的调控提供了新的见解。