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List of results
- Concentration and solvent effect + (1.2)
- Photocatalytic CO2 Reduction by 1 (2 μM) in CO2-Saturated Aqueous CH3CN Solutions + (1.3)
- Photocatalytic CO2 reduction: conditions optimization + (1.3)
- Control experiments + (1.3)
- Concentration and solvent effect + (1.3)
- Optimizations of conditions for Co(qpy)(H2O)2(ClO4)2 and purpurin + (1.3)
- Iron-Catalyzed Photochemical CO2 Reduction under diverse conditions + (1.3)
- CO2 Reduction under diverse conditions with diverse sensitizers + (1.3)
- Iron-Catalyzed Photochemical CO2 Reduction under diverse conditions error + (1.3)
- Photocatalytic CO2 Reduction by 1 (2 μM) in CO2-Saturated Aqueous CH3CN Solutions + (1.5)
- Table 1 + (1.6)
- Control experiments + (1.6)
- Control experiments + (1.6)
- Concentration and solvent effect + (1.6)
- Control experiments + (1.6)
- Photocatalytic reduction of CO2 + (1.7)
- Photocatalytic CO2 Reduction by 1 (2 μM) in CO2-Saturated Aqueous CH3CN Solutions + (1.8)
- Table 1 + (1.8)
- Results for photocatalytic reduction of CO2 + (1.9)
- Photocatalytic reduction of CO2 + (2)
- Photocatalytic reduction of CO2 + (2)
- Table 1 + (2.1)
- Concentration and solvent effect + (2.1)
- Best result and control experiments + (2.1)
- Photocatalytic reduction of CO2 + (2.3)
- Photocatalytic reduction of CO2 + (2.4)
- Optimizations of conditions for Fe(qpy)(H2O)2(ClO4)2 and Ru(bpy)3Cl2 + (2.6)
- Table 1 + (2.7)
- Photocatalytic reduction of CO2 + (2.7)
- BIH + TEOA under Various Conditions + (2.8)
- Photocatalytic CO2 Reduction by 1 (2 μM) in CO2-Saturated Aqueous CH3CN Solutions + (2.8)
- Study on the concentration of catalyst + (2.8)
- Control experiments + (2.8)
- Solvent effect study between DMA DMF and acetonitrile + (2.8)
- Photocatalytic reduction of CO2 + (2.8)
- Table 1 + (2.9)
- Table 1 + (3)
- Photocatalytic reduction of CO2 + (3.1)
- Iron-Catalyzed Photochemical CO2 Reduction under diverse conditions + (3.2)
- CO2 Reduction under diverse conditions with diverse sensitizers + (3.2)
- Iron-Catalyzed Photochemical CO2 Reduction under diverse conditions error + (3.2)
- Photocatalytic CO2 Reduction by 1 (2 μM) in CO2-Saturated Aqueous CH3CN Solutions + (3.4)
- Table 1 + (3.7)
- Concentration and solvent effect + (3.7)
- Optimizations of conditions for Fe(qpy)(H2O)2(ClO4)2 and Ru(bpy)3Cl2 + (3.7)
- Photocatalytic CO2 Reduction by 1 (2 μM) in CO2-Saturated Aqueous CH3CN Solutions + (3.9)
- Optimizations of conditions for Co(qpy)(H2O)2(ClO4)2 and Ru(bpy)3Cl2 + (3.9)
- Photocatalytic reduction of CO2 + (3.9)
- Table 1 + (4)
- Solvent effect study between DMA DMF and acetonitrile + (4.1)