Luminescence Mechanochromism of an Anionic Dinuclear Copper Iodide Complex

Abstract This article reports the mechanochromic luminescence properties of a copper iodide complex formulated (PrPh3P)2[Cu2I4] (1), which displays a contrasted reversible emission color switch from green (λmax = 535 nm) to yellow (λmax = 565 nm), upon mechanical solicitations. In addition to being a rare example of an ionic dinuclear copper-based mechanochromic compound, this complex is capable of congruently melting at a relatively low temperature (159 °C) to form a yellow emissive glassy phase (λmax = 590 nm). This amorphous state is considered as the reference state of the partial crystalline-to-amorphous transformation that occurs upon grinding. Comparison of these two amorphous phases helps mechanism investigations. In particular, solid-state NMR (nuclear magnetic resonance) analysis allowed quantification of the amorphous fraction, constituting 23% of the mechanically altered phase. Mechanical grinding disrupts long-range order and induces small changes in the molecular structure of [Cu2I4]2– leading to different emissive properties. The thermochromic luminescence properties also displayed originate from the two independent emissive centers: (PrPh3P)+ and [Cu2I4]2–. Thanks to the combined luminescent mechanochromic properties and congruent melting of 1, luminescent and transparent glass films and mechanochromic crystalline films were prepared, demonstrating its potential for developing low-cost and environmentally friendly materials for a large panel of applications.

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Publication Details

Journal
Inorganic Chemistry
Published
2026-09-28
DOI
https://doi.org/10.1021/acs.inorgchem.6c02630
Primary Topic
Luminescence and Fluorescent Materials
Type
article
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article

Luminescence Mechanochromism of an Anionic Dinuclear Copper Iodide Complex

Sandrine Perruchas, Camille Latouche, Michaël Paris, Hélène Serier‐Brault et al.
Inorganic Chemistry
Luminescence and Fluorescent Materials
article

Luminescence Mechanochromism of an Anionic Dinuclear Copper Iodide Complex

Sandrine Perruchas, Camille Latouche, Michaël Paris, Hélène Serier‐Brault, Imen Zareb, Jean-Yves Mevellec, Alexia Rocheteau, Marie Cordier
article en

Abstract

Abstract This article reports the mechanochromic luminescence properties of a copper iodide complex formulated (PrPh3P)2[Cu2I4] (1), which displays a contrasted reversible emission color switch from green (λmax = 535 nm) to yellow (λmax = 565 nm), upon mechanical solicitations. In addition to being a rare example of an ionic dinuclear copper-based mechanochromic compound, this complex is capable of congruently melting at a relatively low temperature (159 °C) to form a yellow emissive glassy phase (λmax = 590 nm). This amorphous state is considered as the reference state of the partial crystalline-to-amorphous transformation that occurs upon grinding. Comparison of these two amorphous phases helps mechanism investigations. In particular, solid-state NMR (nuclear magnetic resonance) analysis allowed quantification of the amorphous fraction, constituting 23% of the mechanically altered phase. Mechanical grinding disrupts long-range order and induces small changes in the molecular structure of [Cu2I4]2– leading to different emissive properties. The thermochromic luminescence properties also displayed originate from the two independent emissive centers: (PrPh3P)+ and [Cu2I4]2–. Thanks to the combined luminescent mechanochromic properties and congruent melting of 1, luminescent and transparent glass films and mechanochromic crystalline films were prepared, demonstrating its potential for developing low-cost and environmentally friendly materials for a large panel of applications.

Inorganic Chemistry
Centre National de la Recherche Scientifique (FR), Institut Universitaire de France (FR), Institut des Sciences Chimiques de Rennes (FR), Université de Nantes (FR), Université de Rennes (FR), Nantes Université (FR)
Openalex Percentile: Top 26%
Luminescence and Fluorescent Materials
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