Issue 45, 2025

Silver-confined SVNIT-1 metal–organic framework as a promising H2S sensor for asthma monitoring and diagnosis

Abstract

The development of reliable, real-time, and non-invasive sensors for early asthma diagnosis remains a significant clinical challenge. In this work, a new zinc-based metal–organic framework (MOF), SVNIT-1, developed using an amine-functionalized ligand; 4,4′-(((2,3,5,6-tetramethyl-1,4-phenylene)bis(methylene))bis(azanediyl))dibenzoic acid (PMBADH2), was post-synthetically modified with silver ions to afford Ag@SVNIT-1, a chemodosimetric sensor for sulfide (S2−) detection. The embedded Ag+ ions in the composite material coordinate with the –NH groups of the MOF, forming emissive centers via metal–ligand charge transfer interactions. Upon exposure to Na2S, a specific conversion of Ag+ to Ag2S disrupts the Ag–NH interaction, resulting in a fluorescence “turn-on” response at 352 nm. This irreversible transformation underpins the sensor's high sensitivity (LOD = 2.03 μM), excellent selectivity, rapid response time (≤1 min), and robust performance in aqueous and biologically relevant media. An AND-type molecular logic gate was also fabricated using Na2S and Ag@SVNIT-1 as chemical inputs, with fluorescence intensity as the output, enabling binary decision-making for H2S levels. The sensor successfully differentiated physiological and pathological H2S concentrations in a model simulating asthma severity. Post-sensing structural integrity was validated by PXRD, XPS, and FTIR, confirming the framework's stability. These results establish Ag@SVNIT-1 as a promising MOF-based platform for intelligent biosensing applications and early-stage asthma diagnostics.

Graphical abstract: Silver-confined SVNIT-1 metal–organic framework as a promising H2S sensor for asthma monitoring and diagnosis

Supplementary files

Article information

Article type
Paper
Submitted
27 Aug 2025
Accepted
10 Oct 2025
First published
14 Oct 2025

J. Mater. Chem. C, 2025,13, 22692-22701

Silver-confined SVNIT-1 metal–organic framework as a promising H2S sensor for asthma monitoring and diagnosis

K. Maru, K. Rathore, S. Kalla, K. K. Jangir and R. Jangir, J. Mater. Chem. C, 2025, 13, 22692 DOI: 10.1039/D5TC03234B

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