23 Enhancing the strength of these artificial photocatalytic procedures is highly significant due to their limited stability; thus, it is desirable to incorporate these systems in a heterogeneous matrix for achieving isolated active sites. 24 In this paper, a procedure for the preparation of an efficient bifunctional hybrid catalyst via the co-immobilization of a ruthenium( ii ) complex in similar cavities within the fibres of DFNS was reported and the catalyst was screened for its photocatalytic properties for the reduction of CO 2 to formate under visible-light irradiation.
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FeNi<sub>3</sub> magnetic nanoparticles supported on ruthenium silicate-functionalized DFNS for photocatalytic CO<sub>2</sub> reduction to formate.
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