Volume 3, 2024

Synthesis and characterization of La QDs: sensors for anions and H2O2

Abstract

The development of sensitive and accurate fluorescence sensors for the detection of anions and reactive oxygen species (ROS, H2O2) is essential as they play significant roles in biological and chemical processes. In this work, semiconductor La QDs were synthesized. The synthesized La QDs were determined to be pure with 100% La element using EDS technique. La QDs were observed in both cubic and hexagonal lattice configurations through powder XRD analysis. The morphology of the La QDs was characterized using HRTEM and FESEM data as tiny, spherical, homogenous QDs with a diameter ranging from 2 to 6 nm. The fluorescence characteristics of the synthesized La QDs were examined by studying their sensing properties that increased with an increase in anion concentration and decreased with an increase in [H2O2]. The variation in emission intensity at 315 nm and 440.5 nm satisfied the Stern–Volmer equation. The LOD and LOQ of H2O2 and anion sensing with La QDs were studied in the μM range. The Langmuir binding plots and FTIR spectra supported the concept that the surface functionalization of La QDs occurred in the presence of anions. With two band gap energies of about 3.26 eV and 4.66 eV, the synthesized La QDs are a mixture of two (binary) semiconductors.

Graphical abstract: Synthesis and characterization of La QDs: sensors for anions and H2O2

Supplementary files

Article information

Article type
Paper
Submitted
04 May 2024
Accepted
08 Jul 2024
First published
26 Jul 2024
This article is Open Access
Creative Commons BY license

Sens. Diagn., 2024,3, 1476-1493

Synthesis and characterization of La QDs: sensors for anions and H2O2

A. Sahoo and A. N. Acharya, Sens. Diagn., 2024, 3, 1476 DOI: 10.1039/D4SD00142G

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