Cyano-Engineered Tetraphenylethene-Based Pd2L4 Metallacages for Iodide Detection

Abstract Selective recognition of iodide remains challenging because of its large ionic radius, weak hydration, and high polarizability. Herein, we report two tetraphenylethene-based Pd2L4 metallacages featuring cyano-vinylene spacers for confined-cavity engineering and iodide recognition. Structural analysis reveals that subtle ligand variation leads to distinct supramolecular microenvironments, in which inward-oriented cyano-vinylic hydrogen atoms generate an electron-deficient cavity favorable for anion binding. Both metallacages exhibit aggregation-induced emission and pronounced photoluminescence quenching in response to iodide, with high selectivity over competing anions. Solid-state sensing strips enable rapid, concentration-dependent visual iodide detection with minimal interference from counter cations or pH variations.

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Publication Details

Journal
Inorganic Chemistry
Published
2026-10-08
DOI
https://doi.org/10.1021/acs.inorgchem.6c04441
Primary Topic
Molecular Sensors and Ion Detection
Type
article
Field-Weighted Citation Impact
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article

Cyano-Engineered Tetraphenylethene-Based Pd2L4 Metallacages for Iodide Detection

Youzhi Xu, Rui Cao, Wenxi Li, Yibo Zhao et al.
Inorganic Chemistry
Molecular Sensors and Ion Detection
article

Cyano-Engineered Tetraphenylethene-Based Pd2L4 Metallacages for Iodide Detection

Youzhi Xu, Rui Cao, Wenxi Li, Yibo Zhao, Yuan-Qing Xu, Beibei Li, Ao Yang
article en

Abstract

Abstract Selective recognition of iodide remains challenging because of its large ionic radius, weak hydration, and high polarizability. Herein, we report two tetraphenylethene-based Pd2L4 metallacages featuring cyano-vinylene spacers for confined-cavity engineering and iodide recognition. Structural analysis reveals that subtle ligand variation leads to distinct supramolecular microenvironments, in which inward-oriented cyano-vinylic hydrogen atoms generate an electron-deficient cavity favorable for anion binding. Both metallacages exhibit aggregation-induced emission and pronounced photoluminescence quenching in response to iodide, with high selectivity over competing anions. Solid-state sensing strips enable rapid, concentration-dependent visual iodide detection with minimal interference from counter cations or pH variations.

Inorganic Chemistry
Henan University (CN)
Openalex Percentile: Top 26%
Molecular Sensors and Ion Detection
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Cyano-Engineered Tetraphenylethene-Based Pd2L4 Metallacages for Iodide Detection — Youzhi Xu, Rui Cao, et al. · Inorganic Chemistry (2026) | TGRS Research Map | TGRS