2D layered metal halides have gained extensive attention due to their excellent chemical stability and remarkable optoelectronic properties. Herein, Pb 2+ /Mn 2+ codoped Cs 2 CdCl 4 nanocrystals (NCs) were synthesized by a facile hot-injection method. It is found that the Cs 2 CdCl 4:0.6%Pb 2+,5%Mn 2+ NCs exhibit a photoluminescence quantum yield as high as 18.1%. Tunable emission color from cyan to white and then to orange covering the wavelength range between 400 and 750 nm was achieved by varying the doping concentration of Mn 2+ ions in Cs 2 CdCl 4:0.6%Pb 2+ NCs. Spectral characterizations and density functional theory calculations reveal that the substantially enhanced Mn 2+ emission centered at ∼600 nm is attributed to the efficient energy transfer from self-trapped excitons to Mn 2+, with an energy transfer efficiency up to 40%. Importantly, Pb 2+ /Mn 2+ codoped Cs 2 CdCl 4 NCs also exhibit good air and thermal stabilities.