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◆ Inorganic Chemistry2026-04-06· Halide

Melt-Processable Zero-Dimensional Mn Hybrid Metal Halides

Rae Hunter, J. Muralidhar, Ryan T. VanderLinden, Aadam Shakir, Connor G. Bischak

原始摘要(英文原文)· Original abstract
Leveraging phase transitions in hybrid metal halides offers broad opportunities for creating programmable, dynamic materials. Here, we report a new family of meltable zero-dimensional Mn 2+ hybrid metal halides containing oligo-ethylene glycolammonium cations that exhibit bright green emission and exceptionally low melting points near 55 °C. By varying the length of oligo-ethylene glycol ammonium cations, we tune thermodynamic and optoelectronic properties, linking molecular design with phase stability and optoelectronic properties. Temperature-dependent X-ray diffraction and photoluminescence measurements show that melting leads to a substantial reduction of emission in the molten phase. These results establish oligo-ethylene glycol ammonium cations as an effective strategy for engineering low-melting-point, phase-reconfigurable hybrid metal halides. More broadly, this work demonstrates a pathway toward melt-processable and thermally responsive hybrid semiconductors, with potential applications in sustainable materials processing and adaptive optoelectronic technologies.
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