MOF-Based Chemiresistive Gas Sensors: Toward New Functionalities

被引:215
|
作者
Jo, Young-Moo [1 ,2 ]
Jo, Yong Kun [1 ]
Lee, Jong-Heun [1 ]
Jang, Ho Won [3 ]
Hwang, In-Sung [4 ]
Yoo, Do Joon [5 ]
机构
[1] Korea Univ, Dept Mat Sci & Engn, Seoul 02841, South Korea
[2] MIT, Dept Chem, Cambridge, MA 02139 USA
[3] Seoul Natl Univ, Res Inst Adv Mat, Dept Mat Sci & Engn, Seoul 08826, South Korea
[4] Sentech Gmi Co Ltd, Seoul 07548, South Korea
[5] SentechKorea Co Ltd, Paju 10863, South Korea
基金
新加坡国家研究基金会;
关键词
chemiresistors; gas sensors; metal-organic frameworks; metal-organic framework derivatives; metal-organic framework membranes; METAL-ORGANIC-FRAMEWORK; ZEOLITIC-IMIDAZOLATE FRAMEWORK; CHEMICAL-VAPOR-DEPOSITION; REDUCED GRAPHENE OXIDE; MIXED MATRIX MEMBRANES; IN-SITU FABRICATION; ROOM-TEMPERATURE; MICROWAVE SYNTHESIS; SENSING PROPERTIES; SOLVOTHERMAL SYNTHESIS;
D O I
10.1002/adma.202206842
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The sensing performances of gas sensors must be improved and diversified to enhance quality of life by ensuring health, safety, and convenience. Metal-organic frameworks (MOFs), which exhibit an extremely high surface area, abundant porosity, and unique surface chemistry, provide a promising framework for facilitating gas-sensor innovations. Enhanced understanding of conduction mechanisms of MOFs has facilitated their use as gas-sensing materials, and various types of MOFs have been developed by examining the compositional and morphological dependences and implementing catalyst incorporation and light activation. Owing to their inherent separation and absorption properties and catalytic activity, MOFs are applied as molecular sieves, absorptive filtering layers, and heterogeneous catalysts. In addition, oxide- or carbon-based sensing materials with complex structures or catalytic composites can be derived by the appropriate post-treatment of MOFs. This review discusses the effective techniques to design optimal MOFs, in terms of computational screening and synthesis methods. Moreover, the mechanisms through which the distinctive functionalities of MOFs as sensing materials, heterostructures, and derivatives can be incorporated in gas-sensor applications are presented.
引用
收藏
页数:31
相关论文
共 50 条
  • [21] MOF-Based Organic Microlasers
    He, Huajun
    Li, Hongjun
    Cui, Yuanjing
    Qian, Guodong
    ADVANCED OPTICAL MATERIALS, 2019, 7 (17)
  • [22] MOF-Based Photonic Crystal Film toward Separation of Organic Dyes
    Liu, Chang
    Tong, Yu -Long
    Yu, Xiao-Qing
    Shen, Haixia
    Zhu, Zhijie
    Li, Qing
    Chen, Su
    ACS APPLIED MATERIALS & INTERFACES, 2020, 12 (02) : 2816 - 2825
  • [23] A MOF-based metamodeling environment
    Emerson, MJ
    Sztipanovits, J
    Bapty, T
    JOURNAL OF UNIVERSAL COMPUTER SCIENCE, 2004, 10 (10) : 1357 - 1382
  • [24] MOF-based membranes for pervaporation
    Xu, Xiao
    Nikolaeva, Daria
    Hartanto, Yusak
    Luis, Patricia
    SEPARATION AND PURIFICATION TECHNOLOGY, 2022, 278
  • [25] MOF-Based Bioelectronic Supercapacitors
    Sarac, Begum
    Yucer, Seydanur
    Ciftci, Fatih
    SMALL, 2025,
  • [26] Polyoxometalates-based functional materials in chemiresistive gas sensors and electrochemical sensors
    Chen, Li
    Geng, Jing
    Guo, Zheng
    Huang, Xing-Jiu
    TRAC-TRENDS IN ANALYTICAL CHEMISTRY, 2023, 167
  • [27] Copper-based metal oxides for chemiresistive gas sensors
    Ding, Yanqiao
    Guo, Xuezheng
    Zhou, Yong
    He, Yong
    Zang, Zhigang
    JOURNAL OF MATERIALS CHEMISTRY C, 2022, 10 (43) : 16218 - 16246
  • [28] Recent progress in the development of MOF-based optical sensors for Fe3+
    Panda, Suvam Kumar
    Mishra, Sagarika
    Singh, Akhilesh Kumar
    DALTON TRANSACTIONS, 2021, 50 (21) : 7139 - 7155
  • [29] Chemiresistive polyaniline-based gas sensors: A mini review
    Fratoddi, Ilaria
    Venditti, Iole
    Cametti, Cesare
    Russo, Maria Vittoria
    SENSORS AND ACTUATORS B-CHEMICAL, 2015, 220 : 534 - 548
  • [30] A review on chemiresistive ZnO gas sensors
    Franco, Mariane A.
    Conti, Patrick P.
    Andre, Rafaela S.
    Correa, Daniel S.
    SENSORS AND ACTUATORS REPORTS, 2022, 4