Room-temperature gas sensors based on three-dimensional Co3O4/Al2O3@Ti3C2Tx MXene nanocomposite for highly sensitive NOx detection

被引:51
作者
Sun, Baihe [1 ,3 ]
Qin, Fangjie [1 ]
Jiang, Lin [1 ]
Gao, Jun [4 ]
Liu, Zhuo [1 ]
Wang, Jue [1 ,2 ]
Zhang, Yang [1 ]
Fan, Jiahui [1 ]
Kan, Kan [2 ]
Shi, Keying [1 ]
机构
[1] Heilongjiang Univ, Sch Chem & Mat Sci, Key Lab Funct Inorgan Mat Chem, Minist Educ, Harbin 150080, Peoples R China
[2] Heilongjiang Acad Sci, Inst Adv Technol, Harbin 150020, Peoples R China
[3] Heilongjiang Inst Technol, Coll Mat & Chem Engn, Harbin 150050, Peoples R China
[4] Harbin Normal Univ, Harbin 150025, Peoples R China
基金
中国国家自然科学基金;
关键词
Ti3C2Tx MXene; Co3O4; Heterostructure; Gas sensor; NOx; SURFACE;
D O I
10.1016/j.snb.2022.132206
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A self-sacrificial template and a hydrothermal method were utilized to successfully synthesize Ti3C2T, MXene-supported Co3O4/Al2O3 assembled with nanosheets derived from layered double hydroxides. Within three-dimensional Co3O4/Al2O3@Ti3C2T, MXene composite, Co3O4, as the active center component, was evenly distributed on Ti3C2Tx MXene nanosheets and Al2O3 as the addition. The 3D structure could expose more active center sites on the surface of Co3O4/Al2O3 @Ti3C2T, MXene and provide more gas diffusion channels, which were beneficial to the gas sensing performance. Comparing to CoALLDH@Ti3C2T, MXene (CAM, and CoAl-LDH represents the cobalt-aluminum layered double hydroxide), Co3O4/Al2O3@Ti3C2T, MXene (CAM-AC) exhibited an enhancing response (S = R-0/R-g = 40.3) and a shorter response time of 1.3 s to 100 ppm NOx. Besides, CAM-AC also showed an ultra-low detection limit of 10 ppb and excellent repeatability, selectivity and long-term stability. The outstanding gas sensing performance could be attributed to the 3D structure, porous structure and the heterostructure between Co3O4/Al2O3 and Ti3C2Tg. MXene. Therefore, the Co3O4/Al2O3@Ti3C2Tx MXene is an excellent NOx gas sensor candidate.
引用
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页数:8
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