Undoped Layered Perovskite Oxynitride Li2 LaTa2 O6 N for Photocatalytic CO2 Reduction with Visible Light.
Takayoshi OshimaTom IchibhaKen Sinkou QinKanemichi MuraokaJunie Jhon M VequizoKeisuke HibinoRyo KurikiShunsuke YamashitaKenta HongoTomoki UchiyamaKotaro FujiiDaling LuRyo MaezonoAkira YamakataHideki KatoKoji KimotoMasatomo YashimaYoshiharu UchimotoMasato KakihanaOsamu IshitaniHiroshi KageyamaKazuhiko MaedaPublished in: Angewandte Chemie (International ed. in English) (2018)
Oxynitrides are promising visible-light-responsive photocatalysts, but their structures are almost confined with three-dimensional (3D) structures such as perovskites. A phase-pure Li2 LaTa2 O6 N with a layered perovskite structure was successfully prepared by thermal ammonolysis of a lithium-rich oxide precursor. Li2 LaTa2 O6 N exhibited high crystallinity and visible-light absorption up to 500 nm. As opposed to well-known 3D oxynitride perovskites, Li2 LaTa2 O6 N supported by a binuclear RuII complex was capable of stably and selectively converting CO2 into formate under visible light (λ>400 nm). Transient absorption spectroscopy indicated that, as compared to 3D oxynitrides, Li2 LaTa2 O6 N possesses a lower density of mid-gap states that work as recombination centers of photogenerated electron/hole pairs, but a higher density of reactive electrons, which is responsible for the higher photocatalytic performance of this layered oxynitride.