Molecule:100659: Difference between revisions
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molecule
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M V30 COUNTS 57 63 0 0 0 | M V30 COUNTS 57 63 0 0 0 | ||
M V30 BEGIN ATOM | M V30 BEGIN ATOM | ||
M V30 1 P | M V30 1 P 15.0 0.075 0.0 0 CHG=-1 | ||
M V30 2 F | M V30 2 F 15.0 -0.925 0.0 0 | ||
M V30 3 F | M V30 3 F 15.0 1.075 0.0 0 | ||
M V30 4 F | M V30 4 F 14.134 0.575 0.0 0 | ||
M V30 5 F 15. | M V30 5 F 15.866 -0.425 0.0 0 | ||
M V30 6 F 15. | M V30 6 F 15.866 0.575 0.0 0 | ||
M V30 7 F | M V30 7 F 14.134 -0.425 0.0 0 | ||
M V30 8 P | M V30 8 P 15.925 -3.85 0.0 0 CHG=-1 | ||
M V30 9 F | M V30 9 F 15.925 -4.85 0.0 0 | ||
M V30 10 F | M V30 10 F 15.925 -2.85 0.0 0 | ||
M V30 11 F | M V30 11 F 15.059 -3.35 0.0 0 | ||
M V30 12 F | M V30 12 F 16.791 -4.35 0.0 0 | ||
M V30 13 F | M V30 13 F 16.791 -3.35 0.0 0 | ||
M V30 14 F | M V30 14 F 15.059 -4.35 0.0 0 | ||
M V30 15 C 3.85985 -1.02507 0.0 0 | M V30 15 C 3.85985 -1.02507 0.0 0 | ||
M V30 16 C 5.59015 -1.02459 0.0 0 | M V30 16 C 5.59015 -1.02459 0.0 0 | ||
Revision as of 17:23, 13 February 2024
| Properties | |
|---|---|
| CID | 15198704 |
| CAS | n/a |
| IUPAC-Name | 4-methyl-2-(4-methylpyridin-2-yl)pyridine;ruthenium(2+);dihexafluorophosphate |
| Abbreviation | [Ru(dmb)3][PF6]2 |
| Trivialname | ru(dmb)3(pf6)2 |
| Exact mass | 944.132847 |
| Molecular formula | C36H36F12N6P2Ru |
| LogP | n/a |
| Has vendors | true |
| Molecular role | n/a |
| Synonyms | ru(dmb)3(pf6)2,c76671,en300-19370044,lambda2-ruthenium(2+) ion tris(4-methyl-2-(4-methylpyridin-2-yl)pyridine) bis(hexafluoro-lambda5-phosphanuide) |
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Molecule is used on following pages
topic
- Photocatalytic CO2 conversion to CO
- Homogeneous photocatalytic CO2 conversion
- Photocatalytic CO2 conversion to HCOOH
publication
- Photocatalytic CO2 Reduction under Visible-Light Irradiation by Ruthenium CNC Pincer Complexes
- Photocatalytic CO2 reduction using a Mn complex as a catalyst
- Photocatalytic Reduction of Carbon Dioxide to CO and HCO2H Using fac-Mn(CN)(bpy)(CO)3
investigation
- Photocatalytic CO2 Reduction under Visible-Light Irradiation by Ruthenium CNC Pincer Complexes/Conditions optimizations for photocatalytic reduction of CO2
- Photocatalytic Reduction of Carbon Dioxide to CO and HCO2H Using fac-Mn(CN)(bpy)(CO)3/Table 1: Summary of Catalytic Experiments for Photocatalysis.
- Photocatalytic Reduction of Carbon Dioxide to CO and HCO2H Using fac-Mn(CN)(bpy)(CO)3/Table 2: Summary of Control Experiments for Photocatalysis.
- Photocatalytic CO2 reduction using a Mn complex as a catalyst/Photocatalytic CO2 reduction: conditions optimization
Molecule roles
| Investigation type | Photosensitizer |
|---|---|
| Photocatalytic CO2 conversion experiments |
|
| Cyclic Voltammetry experiments | ![]() |
| Absorption Emission Spectroscopy experiments | ![]() |
| Ultraviolett Visuell experiments | ![]() |


