Antimony -doped indium-based halide single crystals enabling white-light emission

INORGANIC CHEMISTRY FRONTIERS(2022)

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摘要
A metal ion doping strategy has been employed to achieve white light emission in metal halide materials; however, it is still challenging to explore lead-free metal halides. Herein, we report a series of organic-inorganic metal halide hybrids (OIMHHs) (TMPL)(3)InCl6 center dot EtOH:xSb(3+) (TMPL = protonated thiomorpholine, C4H10SN, x = 0-15%) exhibiting tunable emission covering the cyan to orange region along with a photoluminescence quantum yield (PLQY) increase from 1.73% to 85.35% via Sb3+ ion doping. Surprisingly, white light emission was successfully obtained when the Sb3+ concentration chosen was 0.1%. Spectroscopic analysis unveiled that the white light emission originates from a combination of organic [C4H10SN](+) and self-trapped exciton (STE) emission of [In(Sb)Cl-6](3-). Additionally, a down-convention white LED was obtained based on hybrid (TMPL)(3)InCl6 center dot EtOH:15%Sb3+ due to their superior photophysical properties. Metal ion doping studied herein provides a significant design strategy for achieving single-component white light by the combination of fluorescence from the organic part and phosphorescence from the inorganic part of 0D lead-free metal hybrid halides.
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