UNI-MB - logo
UMNIK - logo
 
E-viri
Celotno besedilo
Recenzirano
  • Surface-Plasmon-Enhanced Ph...
    Zhang, Huabin; Wang, Tao; Wang, Junjie; Liu, Huimin; Dao, Thang Duy; Li, Mu; Liu, Guigao; Meng, Xianguang; Chang, Kun; Shi, Li; Nagao, Tadaaki; Ye, Jinhua

    Advanced materials (Weinheim) 28, Številka: 19
    Journal Article

    Highly efficient utilization of solar light with an excellent reduction capacity is achieved for plasmonic Fe@C nanostructures. By carbon layer coating, the optimized catalyst exhibits enhanced selectivity and stability applied to the solar‐driven reduction of CO2 into CO. The surface‐plasmon effect of iron particles is proposed to excite CO2 molecules, and thereby facilitates the final reaction activity.