Mixed-Ligand Engineering to Enhance Luminescence of Mn(2+)-Based Metal Halides for Wide Color Gamut Display

混合配体工程增强Mn(2+)基金属卤化物发光性能,实现广色域显示

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Abstract

Lead-free Mn(2+)-based metal halide materials are now being considered as clean candidates for backlight displays and lights due to the d-d transition, diverse components, and environmental friendliness. Therefore, efficient and stable Mn(2+)-based metal halide phosphors are in great demand for practical applications. In this work, adopting the mixed-ligand strategy, a series of [(CH(3))(4)N](2-x)[(C(2)H(5))(4)N](x)MnCl(4) phosphors were synthesized by mechanochemical process. With the increase molar ratio of (CH(3))(4)N/(C(2)H(5))(4)N, the phase of phosphors is transformed from orthorhombic to tetragonal. Compared to [(CH(3))(4)N](2)MnCl(4) and [(C(2)H(5))(4)N](2)MnCl(4) phosphors, the mixed-ligand strategy significantly boosts the green emission intensity of Mn(2+)-based metal halide phosphors. The obtained [(CH(3))(4)N][(C(2)H(5))(4)N]MnCl(4) phosphors exhibit a high photoluminescence quantum yield (PLQY) of 83.78% under 450 nm excitation, which is attributed to the modulation of the adjacent [MnCl(4)](2)- distance by using the different chain length of organic cations, effectively suppressing non-radiative recombination. Additionally, the [(CH(3))(4)N][(C(2)H(5))(4)N]MnCl(4) phosphors exhibit a green emission at 516 nm, narrow full width at half-maximum (FWHM) of 45.53 nm, and good thermal stability. The constructed white light-emitting diode (WLED) device exhibits a wide color gamut of 108.3% National Television System Committee, demonstrating the suitability of the [(CH(3))(4)N][(C(2)H(5))(4)N]MnCl(4) phosphors as a green emitter for WLED displays and lightings. This work provides a new way to modulate the PL performance of manganese-based metal halides for application in the optoelectronic field.

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