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March 18, 2026ACS Energy Letters10 citations

Transition-Metal-Doped Halide Perovskites for Near-Infrared Emissions: Beyond Oxides

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SSSajid SaikiaAGAnimesh GhoshANAngshuman Nag

Key Points

  • The research explores the effects of doping heavier transition metals in halide perovskites to enhance near-infrared emissions.
  • Investigated the doping of 3d and heavier transition metals in halide perovskites
  • Analyzed crystallography and associated light-emission properties
  • Examined the synthesis and properties of colloidal nanocrystals
  • Demonstrated successful doping of heavier transition metals like Mo3+, Re4+, and Os4+ in halide hosts
  • Achieved tunable near-infrared emissions through tailored crystal field parameters
  • Outlined the differences in emission properties compared to traditional oxide-based phosphors

Abstract

Transition-metal-doped oxide-based phosphors led to near-infrared (NIR) light-emitting diodes and lasers. Mostly, the first transition series (3d) metal ions, like Cr3+, are doped. Interestingly, heavier transition-metal ions, like Mo3+, Re4+, and Os4+, in their low oxidation states, can be doped in halide perovskites, unlike the oxide hosts that stabilize the higher oxidation state. Consequently, doping heavier transition metal ions in halide hosts opens up new avenues to tailor NIR-I/II emissions for both narrow and broad-band d–d transitions. Furthermore, characteristics such as (i) tunability of crystal field parameters by halide ions, (ii) host emissions, and (iii) colloidal nanocrystal synthesis add new NIR functionalities to transition-metal-doped halide perovskites compared to oxides. Here we provide insights on recent progresses on the NIR emitting transition-metal-doped halides, connecting synthetic materials chemistry, spectroscopy and device fabrication. The present challenges and future opportunities are discussed.

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Cite This Study

Saikia et al. (2026) studied this question.

synapsesocial.com/papers/69ba42dc4e9516ffd37a3890https://doi.org/10.1021/acsenergylett.6c00105
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