High loading of Mn(ii)-metalated porphyrin in a MOF for photocatalytic CO2 reduction in gas–solid conditions†
Abstract
A high loading of Mn(II)-metalated porphyrin was achievable in a 2D porphyrin-based Mn-MOF induced by an ionic liquid. The excellent stability, sufficient redox potential, atomically dispersed porphyrin Mn(II) sites, desired CO2 affinity, high visible light-harvesting and efficient charge separation, endow this MOF with the overall photocatalytic conversion of CO2 to CH4 in gas–solid conditions.