97
with aminoporphyrin cobalt complex was quite efficient for nicotinamide adenine
dinucleotide photoregeneration with 48.53% over time (Kumar et al. 2018).
Dye-sensitized zone plus a catalysis zone is designed by Guohui Qin et al.
(2013) for photocatalytic reduction of CO 2 to fuels with visible light by using
bi- functionalized TiO 2 film. Separation of the charge can be done entirely with the
Fig. 4.2 CO 2 reduction under visible light using Ru(II) − Re(I) binuclear complex (RuReCl).
(Reprinted from reference 56 with permission from ACS publication)
Fig. 4.3 Z-scheme CO 2 reduction under visible light using a hybrid that consists of a semiconductor and a binuclear Ru complex. (Reprinted from reference number 57 with permission from ACS
publication)
4 Conversion of Carbon Dioxide into Formic Acid
with aminoporphyrin cobalt complex was quite efficient for nicotinamide adenine
dinucleotide photoregeneration with 48.53% over time (Kumar et al. 2018).
Dye-sensitized zone plus a catalysis zone is designed by Guohui Qin et al.
(2013) for photocatalytic reduction of CO 2 to fuels with visible light by using
bi- functionalized TiO 2 film. Separation of the charge can be done entirely with the
Fig. 4.2 CO 2 reduction under visible light using Ru(II) − Re(I) binuclear complex (RuReCl).
(Reprinted from reference 56 with permission from ACS publication)
Fig. 4.3 Z-scheme CO 2 reduction under visible light using a hybrid that consists of a semiconductor and a binuclear Ru complex. (Reprinted from reference number 57 with permission from ACS
publication)
4 Conversion of Carbon Dioxide into Formic Acid
