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An anomalous near‐infrared (NIR) upconversion (UC) emission band at approximately 770 nm is demonstrated in KZnF 3 :Yb 3+ ,Mn 2+ nanocrystals with heavy Mn 2+ doping. This band would enable advanced biological imaging with improved resolution and enhanced penetration depth. Careful studies based on structure analysis, excitation and emission spectra, and luminescence decay curves indicate that this unusual NIR emission (770 nm) originates from the 6 A 1g (S) 4 T 1g (G)→ 6 A 1g (S) 6 A 1g (S) transitions of the Mn 2+ –Mn 2+ dimers. The influence of Mn 2+ concentration and temperature on the Stokes and UC luminescence properties are also investigated. The proposed mechanism for the observed NIR UC emission involves ground state absorption and excited state absorption processes. The present results not only provide a useful and effective approach to achieving pure NIR UC emission, and also new insights into the development of advanced photonic devices and technologies.
Song et al. (Mon,) studied this question.