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Luminescent Lanthanide MOFs: A Unique Platform for Chemical Sensing

Shu-na Zhao (UGent) , Guangbo Wang (UGent) , Dirk Poelman (UGent) and Pascal Van Der Voort (UGent)
(2018) MATERIALS. 11(4).
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Abstract
In recent years, lanthanide metal-organic frameworks (LnMOFs) have developed to be an interesting subclass of MOFs. The combination of the characteristic luminescent properties of Ln ions with the intriguing topological structures of MOFs opens up promising possibilities for the design of LnMOF-based chemical sensors. In this review, we present the most recent developments of LnMOFs as chemical sensors by briefly introducing the general luminescence features of LnMOFs, followed by a comprehensive investigation of the applications of LnMOF sensors for cations, anions, small molecules, nitroaromatic explosives, gases, vapors, pH, and temperature, as well as biomolecules.
Keywords
metal-organic frameworks, lanthanide codoping, chemical sensors, ratiometric luminescence sensing, METAL-ORGANIC FRAMEWORK, TUNABLE EMISSION PROPERTIES, BASIC PYRIDYL SITES, EU/TB-MIXED MOF, SMALL MOLECULES, THIN-FILM, NITROFURAN ANTIBIOTICS, COORDINATION POLYMER, FLUORESCENT-PROBE, QUANTUM DOTS

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Citation

Please use this url to cite or link to this publication:

Chicago
Zhao, Shu-na, Guangbo Wang, Dirk Poelman, and Pascal Van Der Voort. 2018. “Luminescent Lanthanide MOFs: A Unique Platform for Chemical Sensing.” Materials 11 (4).
APA
Zhao, Shu-na, Wang, G., Poelman, D., & Van Der Voort, P. (2018). Luminescent Lanthanide MOFs: A Unique Platform for Chemical Sensing. MATERIALS, 11(4).
Vancouver
1.
Zhao S, Wang G, Poelman D, Van Der Voort P. Luminescent Lanthanide MOFs: A Unique Platform for Chemical Sensing. MATERIALS. 2018;11(4).
MLA
Zhao, Shu-na et al. “Luminescent Lanthanide MOFs: A Unique Platform for Chemical Sensing.” MATERIALS 11.4 (2018): n. pag. Print.
@article{8585072,
  abstract     = {In recent years, lanthanide metal-organic frameworks (LnMOFs) have developed to be an interesting subclass of MOFs. The combination of the characteristic luminescent properties of Ln ions with the intriguing topological structures of MOFs opens up promising possibilities for the design of LnMOF-based chemical sensors. In this review, we present the most recent developments of LnMOFs as chemical sensors by briefly introducing the general luminescence features of LnMOFs, followed by a comprehensive investigation of the applications of LnMOF sensors for cations, anions, small molecules, nitroaromatic explosives, gases, vapors, pH, and temperature, as well as biomolecules.},
  articleno    = {572},
  author       = {Zhao, Shu-na and Wang, Guangbo and Poelman, Dirk and Van Der Voort, Pascal},
  issn         = {1996-1944},
  journal      = {MATERIALS},
  language     = {eng},
  number       = {4},
  pages        = {26},
  title        = {Luminescent Lanthanide MOFs: A Unique Platform for Chemical Sensing},
  url          = {http://dx.doi.org/10.3390/ma11040572},
  volume       = {11},
  year         = {2018},
}

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