Research progress on Ln-MOFs in the field of temperature detection

Expand
  • School of Chemistry and Chemical Engineering,Inner Mongolia University of Science and Technology,Baotou 014010

Received date: 2020-08-28

  Revised date: 2021-08-21

  Online published: 2021-12-31

Abstract

Temperature,as an important physical parameter,widely exists in the field of natural science and human daily life,so it is of far-reaching significance to seek efficient and accurate temperature detection methods.Lanthanide metal-organic framework materials (Ln-MOFs) show great potential in the field of temperature detection due to their excellent luminescent properties,and rich and diverse topologies.Compared with the single fluorescence emission MOF material constructed by transition metal,the advantages of Ln-MOFs double emission intensity ratio sensor in temperature detection were focused on,and summarized the important research results reported at home and abroad in recent years.The future development trend was forecasted.

Cite this article

Zhao Xiaoyang, Yang Hui, Zhao Wenyuan, Yang Qishan . Research progress on Ln-MOFs in the field of temperature detection[J]. New Chemical Materials, 2021 , 49(12) : 232 -235 . DOI: 10.19817/j.cnki.issn 1006-3536.2021.12.049

References

[1] Zhou You,Zhang Denan,Zeng Jin,et al.A luminescent Lanthanide-free MOF nanohybrid for highly sensitive ratiometric temperature sensing in physiological range[J].Talanta,2018,181:410-415.
[2] 谢荧玲,沈博,周兵帅,等.稀土上转换发光纳米材料及生物传感研究进展[J].中国激光,2020,47(2):222-241.
[3] Wang Kaimin,Lin Du,Ma Yulu,et al.Selective sensing of 2,4,6-trinitrophenol and detection of the ultralow temperature based on a dual-functional MOF as a luminescent sensor[J].Inorganic Chemistry Communications,2016,68:45-49.
[4] 杜鹏,高美玉,王子冲,等.用于发光温度传感的金属有机框架材料[J].云南化工,2019,46(3):112-114.
[5] 夏超.基于镧系金属—有机框架荧光探针的功能化设计及其传感性能研究[D].上海:华东师范大学,2020.
[6] Liu Lizhen,Wang Yu,Lin Rongyan,et al.Two water-stable lanthanide metal-organic frameworks with oxygen-rich channels for fluorescence sensing of Fe(ⅲ) ions in aqueous solution[J].Dalton Transactions (Cambridge,England),2018,47(45):16190-16196.
[7] Guo Hao,Wu Ning,Xue Rui,et al.Multifunctional Ln-MOF luminescent probe displaying superior capabilities for highly selective sensing of Fe3+ and Al3+ ions and nitrotoluene[J].Colloids and Surfaces A:Physicochemical and Engineering Aspects,2020,585:124094.
[8] Liu Ruilan,Liu Yaru,Yu Shihang,et al.A highly proton conductive 3D ionic cadmium-organic framework for ammonia and amines impedance sensing[J].ACS Applied Materials & Amp;Interfaces,2018,11(1):1713-1722.
[9] Liu Xue,Fu Wentian,Bouwman E.One-step growth of lanthanoid metal-organic framework (MOF) films under solvothermal conditions for temperature sensing[J].Chemical Communications (Cambridge,England),2016,52(42):6926-6929.
[10] Liu Lu,Liu Zhihai,Zhang Yu,et al.V-shaped micro-structure optical fiber surface plasmon resonance sensor for the simultaneous measurement of the refractive index and temperature[J].Optics Letters,2019,44(20):5093-5096.
[11] Ding Zhaoyang,Wang Chunfei,Wang Shichao,et al.Light-harvesting metal-organic framework nanoprobes for ratiometric fluorescence energy transfer-based determination of pH values and temperature[J].Microchimica Acta,2019,186(7):1-10.
[12] Fang Qianrong,Zhu Guangshan,Jin Zhao,et al.Mesoporous metal-organic framework with rare etb topology for hydrogen storage and dye assembly[J].Angewandte Chemie,2007,119(35):6758-6762.
[13] Zhu Qilong,Sheng Tianlu,Tan Chunhong,et al.Formation of Zn(Ⅱ) and Cd(Ⅱ) coordination polymers assembled by triazine-based polycarboxylate and in-situ-generated pyridine-4-thiolate or dipyridylsulfide ligands:observation of an unusual luminescence thermochromism[J].Inorganic Chemistry,2011,50(16):7618-7624.
[14] Ma Dingxuan,Li Baiyan,Zhou Xiaojing,et al.A dual functional MOF as a luminescent sensor for quantitatively detecting the concentration of nitrobenzene and temperature[J].Chemical Communications (Cambridge,England),2013,49(79):8964-8966.
[15] Huang Renwu,Zhu Yu,Zang Shuangquan,et al.Construction of silver-organic framework with silver rods of repeated Ag-triangle units:synthesis,structure,and properties[J].Inorganic Chemistry Communications,2013,33:38-42.
[16] 战智颖.基于含氮多羧酸配体构筑的稀土配位聚合物的合成、结构及荧光探针性质研究[D].呼和浩特:内蒙古大学,2019.
[17] 吴岱.金属有机骨架基荧光传感器的设计合成及性质研究[D].长春:吉林大学,2020.
[18] 夏体锋.基于六核簇稀土-有机框架材料的构筑及荧光传感应用[D].杭州:浙江大学,2019.
[19] Xia Tifeng,Song Tao,Cui Yuanjing,et al.A dye encapsulated terbium-based metal-organic framework for ratiometric temperature sensing[J].Dalton Transactions (Cambridge,England:2003),2016,45(46):18689-18695.
[20] Cui Yuanjing,Zhu Fengliang,Chen Banglin,et al.Metal-organic frameworks for luminescence thermometry[J].Chemical Communications (Cambridge,England),2015,51(35):7420-31.
[21] Cui Yuanjing,Xu Hui,Yue Yanfeng,et al.A luminescent mixed-lanthanide metal-organic framework thermometer[J].Journal of the American Chemical Society,2012,134(9):3979-3982.
[22] Rao Xingtang,Song Tao,Gao Junkuo,et al.A highly sensitive mixed lanthanide metal-organic framework self-calibrated luminescent thermometer[J].Journal of the American Chemical Society,2013,135(41):15559-15564.
[23] Yao Jin,Zhao Yanwu,Zhang Xianming,et al.Breathing europium-terbium Co-doped luminescent MOF as a broad-range ratiometric thermometer with a contrasting temperature-intensity relationship[J].ACS Omega,2018,3(5):5754-5760.
[24] Zhou You,Yan Bing,Lei Fang,et al.Postsynthetic lanthanide functionalization of nanosized metal-organic frameworks for highly sensitive ratiometric luminescent thermometry[J].Chemical Communications (Cambridge,England),2014,50(96):15235-15238.
[25] Liu Lu,Liu Zhihai,Zhang Yu,et al.V-shaped micro-structure optical fiber surface plasmon resonance sensor for the simultaneous measurement of the refractive index and temperature[J].Optics Letters,2019,44(20):5093-5096.
[26] Han Yunhu,Tian Chongbin,Li Qiaohong,et al.Highly chemical and thermally stable luminescent EuxTb1-x MOF materials for broad-range pH and temperature sensors[J].Journal of Materials Chemistry,2014,2(38):8065-8070.
[27] Wang Huizhen,Zhao Dian,Cui Yuangjing,et al.A Eu/Tb-mixed MOF for luminescent high-temperature sensing[J].Journal of Solid State Chemistry,2017,246:341-345.
[28] Xia Chao,Yu Caiyan,Cao Mengmeng,et al.A Eu and Tb Co-doped MOF-5 compound for ratiometric high temperature sensing[J].Ceramics International,2018,44(17):21040-21046.
[29] Lian Xiusheng,Zhao Dian,Cui Yuanjing,et al.A near infrared luminescent metal-organic framework for temperature sensing in the physiological range[J].Chemical Communications (Cambridge,England),2015,51(100):17676-17679.
[30] Zhao Dian,Zhang Jun,Yue Dan,et al.A highly sensitive near-infrared luminescent metal-organic framework thermometer in the physiological range[J].Chemical Communications (Cambridge,England),2016,52(53):8259-8262.
[31] 赵典.自校准荧光温度探测金属—有机框架的设计、合成及其性能调控[D].杭州:浙江大学,2017.
Options
Outlines

/