Related Experiment Video
Updated: Sep 17, 2026

High-throughput and Comprehensive Drug Surveillance Using Multisegment Injection-Capillary Electrophoresis-Mass Spectrometry
Published on: April 23, 2019
Quantitative Environmental Monitoring of Pharmaceuticals in Complex Matrices using Isoreticular Ln-BDC Frameworks
Alan Raúl Medina-Ambriz1, Sandra Loera-Serna1, G Alarcón-Flores2
1Universidad Autónoma Metropolitana Azcapotzalco, Av. San Pablo No. 420 Col. Nueva El Rosario C.P. 02128, Azcapotzalco, CDMX, Mexico, Mexico City, 02200, Mexico.
Abstract:
Lanthanide-based metal-organic frameworks (Ln-MOFs) offer a unique combination of adsorption capabilities and tunable luminescent properties, making them promising materials for environmental applications. This study details the synthesis of a family of isoreticular Ln-MOFs (Ln = Sm, Eu, Tb, Dy) using benzene-1,4-dicarboxylic acid (BDC) as a linker, yielding materials with nanometric crystallite sizes. We explore their efficiency in removing four emerging contaminants (ECs) and systematically evaluate the impact of adsorption on their luminescent properties. While exhibiting a maximum adsorption of 50.2% for naproxen on Dy 2 (BDC) 3 , highlighting the influence of EC functional groups, the materials demonstrate superior functionality as a luminescent sensor. Notably, ciprofloxacin adsorption induces a significant and specific luminescence enhancement (up to 202.24% for Eu-MOF), suggesting great potential for luminescence-based chemical sensing applications. The consistent fitting to the Freundlich model supports the occurrence of adsorption on energetically heterogeneous surfaces. These findings underscore the versatility of Ln-MOF for environmental monitoring through a mechanism that combines adsorption and modulated luminescence.
More Related Videos
05:46Identification of Pharmaceuticals in The Aquatic Environment Using HPLC-ESI-Q-TOF-MS and Elimination of Erythromycin Through Photo-Induced Degradation
Published on: August 1, 2018
08:31Biosensor-based High Throughput Biopanning and Bioinformatics Analysis Strategy for the Global Validation of Drug-protein Interactions
Published on: December 1, 2020