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Showing below up to 50 results in range #151 to #200.

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  1. Photocatalytic reduction of CO2 (6 revisions)
  2. All Molecules (6 revisions)
  3. Control experiments (6 revisions)
  4. CO2 reduction experiments testing different catalysts (6 revisions)
  5. Photoreduction of CO2 result (6 revisions)
  6. Optimizations of conditions for Co(qpy)(H2O)2(ClO4)2 and purpurin (6 revisions)
  7. experiments (6 revisions)
  8. Time profile in DMF (6 revisions)
  9. photocatalytic CO2 conversion under different conditions (6 revisions)
  10. Concentration and solvent effect (7 revisions)
  11. Photochemical Reduction of Carbon Dioxide to Formic Acid using Ruthenium(II)-Based Catalysts and Visible Light/Table 3 - CV (7 revisions)
  12. Test (7 revisions)
  13. photocatalytic CO2 conversion (7 revisions)
  14. BIH + TEOA under Various Conditions (7 revisions)
  15. Study on the concentration of catalyst (7 revisions)
  16. Durability test (7 revisions)
  17. Control experiments (7 revisions)
  18. Table 1 (7 revisions)
  19. Optimizations of conditions for Fe(qpy)(H2O)2(ClO4)2 (7 revisions)
  20. Table 1 (7 revisions)
  21. Table 2: Summary of Control Experiments for Photocatalysis. (8 revisions)
  22. Product Control in Visible-Light-Driven CO2 Reduction by Switching Metal Centers of Binuclear Catalysts (8 revisions)
  23. A molecular noble metal-free system for efficient visible light-driven reduction of CO2 to CO (8 revisions)
  24. CO2 (8 revisions)
  25. Photochemical CO2 reduction with mononuclear and dinuclear rhenium catalysts bearing a pendant anthracene chromophore (8 revisions)
  26. Table 2 CO gas (8 revisions)
  27. Table 1 (8 revisions)
  28. Table 1 (8 revisions)
  29. Solvent effect study between DMA DMF and acetonitrile (9 revisions)
  30. Table 1 (9 revisions)
  31. Results for photocatalytic reduction of CO2 (9 revisions)
  32. Photochemical CO2 Reduction Driven by Water-Soluble Copper(I) Photosensitizer with the Catalysis Accelerated by Multi-Electron Chargeable Cobalt Porphyrin (9 revisions)
  33. Optimizations of conditions for Fe(qpy)(H2O)2(ClO4)2 and Ru(bpy)3Cl2 (9 revisions)
  34. Table 1 (10 revisions)
  35. Table 1 (10 revisions)
  36. photocatalytic CO2 conversion under different conditions (10 revisions)
  37. Photocatalytic CO2 reduction: best results (10 revisions)
  38. Phenoxazine-Sensitized CO2-to-CO Reduction with an Iron Porphyrin Catalyst: A Redox Properties-Catalytic Performance Study (10 revisions)
  39. Photoreduction of CO2 (10 revisions)
  40. Photocatalytic CO2 reduction: conditions optimization (11 revisions)
  41. Optimizations of the conditions (11 revisions)
  42. Conditions optimizations for photocatalytic reduction of CO2 (11 revisions)
  43. Photocatalytic CO2 reduction under varied conditions (11 revisions)
  44. Photocatalytic CO2 Reduction Mediated by Electron Transfer via the Excited Triplet State of Zn(II) Porphyrin (11 revisions)
  45. Selective and Efficient Photocatalytic CO2 Reduction to CO Using Visible Light and an Iron-Based Homogeneous Catalyst (11 revisions)
  46. Table 2 (11 revisions)
  47. Highly efficient and selective visible-light driven CO2-to-CO conversion by a Co-based cryptate in H2O-CH3CN solution (11 revisions)
  48. Photocatalytic reduction of CO2 (12 revisions)
  49. Photocatalytic CO2 reduction with the Mn complexes under various conditions. (12 revisions)
  50. Table 01 (12 revisions)

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