Molecule:100671: Difference between revisions
From ChemWiki
molecule
(auto-generated) Tag: Reverted |
(auto-generated) Tag: Manual revert |
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|moleculeKey=JQYRTQVHCKLBTL-YQGGSDPOSA-M | |moleculeKey=JQYRTQVHCKLBTL-YQGGSDPOSA-M | ||
|molOrRxn= | |molOrRxn= | ||
-INDIGO- | -INDIGO-01262316022D | ||
0 0 0 0 0 0 0 0 0 0 0 V3000 | 0 0 0 0 0 0 0 0 0 0 0 V3000 | ||
Line 9: | Line 9: | ||
M V30 COUNTS 58 69 0 0 0 | M V30 COUNTS 58 69 0 0 0 | ||
M V30 BEGIN ATOM | M V30 BEGIN ATOM | ||
M V30 1 | M V30 1 N 6.98772 -6.7701 0.0 0 | ||
M V30 2 C | M V30 2 C 7.80607 -7.37551 0.0 0 | ||
M V30 3 C 7. | M V30 3 C 7.51066 -8.30641 0.0 0 | ||
M V30 4 | M V30 4 C 6.49388 -8.31487 0.0 0 | ||
M V30 5 C 6. | M V30 5 C 6.16893 -7.37025 0.0 0 | ||
M V30 6 C 6. | M V30 6 C 6.10232 -3.40916 0.0 0 | ||
M V30 7 C | M V30 7 C 6.44675 -2.53661 0.0 0 | ||
M V30 8 C | M V30 8 C 7.41478 -2.56299 0.0 0 | ||
M V30 9 | M V30 9 C 7.69742 -3.45888 0.0 0 | ||
M V30 10 | M V30 10 N 6.89204 -4.05852 0.0 0 | ||
M V30 11 C | M V30 11 C 9.08699 -4.58435 0.0 0 | ||
M V30 12 C 10. | M V30 12 C 10.0503 -4.7827 0.0 0 | ||
M V30 13 C | M V30 13 C 10.1105 -5.73375 0.0 0 | ||
M V30 14 C | M V30 14 C 9.17226 -6.06686 0.0 0 | ||
M V30 15 N | M V30 15 N 8.59884 -5.34847 0.0 0 | ||
M V30 16 C | M V30 16 C 4.64465 -4.5018 0.0 0 | ||
M V30 17 | M V30 17 N 5.15986 -5.26196 0.0 0 | ||
M V30 18 C | M V30 18 C 4.62597 -5.99495 0.0 0 | ||
M V30 19 C | M V30 19 C 3.64856 -5.69087 0.0 0 | ||
M V30 20 | M V30 20 C 3.68534 -4.71739 0.0 0 | ||
M V30 21 C | M V30 21 C 5.0256 -7.04334 0.0 0 | ||
M V30 22 C 8. | M V30 22 C 8.87109 -7.05607 0.0 0 | ||
M V30 23 C | M V30 23 C 8.72924 -3.68784 0.0 0 | ||
M V30 24 C | M V30 24 C 5.0393 -3.60776 0.0 0 | ||
M V30 25 C | M V30 25 C 4.4184 -2.82387 0.0 0 | ||
M V30 26 C | M V30 26 C 9.37707 -2.92606 0.0 0 | ||
M V30 27 C | M V30 27 C 9.57674 -7.76464 0.0 0 | ||
M V30 28 C | M V30 28 C 4.34943 -7.78009 0.0 0 | ||
M V30 29 C | M V30 29 C 3.90319 -9.45186 0.0 0 | ||
M V30 30 C | M V30 30 C 4.60881 -8.7466 0.0 0 | ||
M V30 31 | M V30 31 C 2.93618 -9.19344 0.0 0 | ||
M V30 32 | M V30 32 C 3.37855 -7.52064 0.0 0 | ||
M V30 33 C | M V30 33 C 2.67598 -8.23235 0.0 0 | ||
M V30 34 | M V30 34 C 11.2485 -8.21089 0.0 0 | ||
M V30 35 C | M V30 35 C 10.5433 -7.50527 0.0 0 | ||
M V30 36 C | M V30 36 C 10.9901 -9.17789 0.0 0 | ||
M V30 37 C | M V30 37 C 9.31729 -8.73552 0.0 0 | ||
M V30 38 C | M V30 38 C 10.029 -9.43809 0.0 0 | ||
M V30 39 C | M V30 39 C 9.82331 -1.25429 0.0 0 | ||
M V30 40 C | M V30 40 C 9.11769 -1.95954 0.0 0 | ||
M V30 41 C | M V30 41 C 10.7903 -1.5127 0.0 0 | ||
M V30 42 C | M V30 42 C 10.3479 -3.18551 0.0 0 | ||
M V30 43 C | M V30 43 C 11.0505 -2.47379 0.0 0 | ||
M V30 44 C 2. | M V30 44 C 2.74663 -2.37763 0.0 0 | ||
M V30 45 C | M V30 45 C 3.45188 -3.08325 0.0 0 | ||
M V30 46 C 3. | M V30 46 C 3.00504 -1.41062 0.0 0 | ||
M V30 47 C | M V30 47 C 4.67784 -1.853 0.0 0 | ||
M V30 48 C | M V30 48 C 3.96613 -1.15042 0.0 0 | ||
M V30 49 | M V30 49 O 5.64284 -1.59073 0.0 0 | ||
M V30 50 | M V30 50 O 3.19312 -4.04919 0.0 0 | ||
M V30 51 | M V30 51 O 3.11629 -6.55564 0.0 0 | ||
M V30 52 O | M V30 52 O 5.57475 -9.00537 0.0 0 | ||
M V30 53 O | M V30 53 O 8.35229 -8.99778 0.0 0 | ||
M V30 54 O | M V30 54 O 10.802 -6.53932 0.0 0 | ||
M V30 55 O | M V30 55 O 10.6102 -4.1505 0.0 0 | ||
M V30 56 O | M V30 56 O 8.15175 -1.70078 0.0 0 | ||
M V30 57 | M V30 57 Fe 6.95 -5.3 0.0 0 | ||
M V30 58 Cl | M V30 58 Cl 7.65 -4.65 0.0 0 | ||
M V30 END ATOM | M V30 END ATOM | ||
M V30 BEGIN BOND | M V30 BEGIN BOND | ||
M V30 1 | M V30 1 1 1 2 | ||
M V30 2 1 2 3 | M V30 2 1 2 3 | ||
M V30 3 | M V30 3 2 3 4 | ||
M V30 4 | M V30 4 1 4 5 | ||
M V30 5 1 1 | M V30 5 1 5 1 | ||
M V30 6 | M V30 6 2 6 7 | ||
M V30 7 1 7 8 | |||
M V30 8 2 8 9 | |||
M V30 | M V30 9 1 9 10 | ||
M V30 | M V30 10 1 10 6 | ||
M V30 | M V30 11 1 11 12 | ||
M V30 | M V30 12 2 12 13 | ||
M V30 | M V30 13 1 13 14 | ||
M V30 | M V30 14 2 14 15 | ||
M V30 | M V30 15 1 15 11 | ||
M V30 | M V30 16 1 16 17 | ||
M V30 | M V30 17 2 17 18 | ||
M V30 | M V30 18 1 18 19 | ||
M V30 | M V30 19 2 19 20 | ||
M V30 | M V30 20 1 20 16 | ||
M V30 | M V30 21 1 18 21 | ||
M V30 | M V30 22 2 21 5 | ||
M V30 | M V30 23 2 2 22 | ||
M V30 | M V30 24 1 14 22 | ||
M V30 | M V30 25 2 11 23 | ||
M V30 26 1 | M V30 26 1 23 9 | ||
M V30 27 2 | M V30 27 2 16 24 | ||
M V30 28 | M V30 28 1 24 6 | ||
M V30 29 1 24 | M V30 29 1 24 25 | ||
M V30 30 1 | M V30 30 1 23 26 | ||
M V30 31 | M V30 31 1 22 27 | ||
M V30 32 1 | M V30 32 1 21 28 | ||
M V30 33 | M V30 33 2 30 28 | ||
M V30 34 | M V30 34 2 31 29 | ||
M V30 35 | M V30 35 1 28 32 | ||
M V30 36 1 | M V30 36 1 29 30 | ||
M V30 37 | M V30 37 2 32 33 | ||
M V30 38 1 | M V30 38 1 33 31 | ||
M V30 39 | M V30 39 2 35 27 | ||
M V30 40 | M V30 40 2 36 34 | ||
M V30 41 | M V30 41 1 27 37 | ||
M V30 42 | M V30 42 1 34 35 | ||
M V30 43 2 | M V30 43 2 37 38 | ||
M V30 44 | M V30 44 1 38 36 | ||
M V30 45 | M V30 45 2 40 26 | ||
M V30 46 | M V30 46 2 41 39 | ||
M V30 47 | M V30 47 1 26 42 | ||
M V30 48 1 39 | M V30 48 1 39 40 | ||
M V30 49 | M V30 49 2 42 43 | ||
M V30 50 1 | M V30 50 1 43 41 | ||
M V30 51 2 | M V30 51 2 45 25 | ||
M V30 52 2 44 | M V30 52 2 46 44 | ||
M V30 53 1 | M V30 53 1 25 47 | ||
M V30 54 1 | M V30 54 1 44 45 | ||
M V30 55 2 | M V30 55 2 47 48 | ||
M V30 56 1 46 | M V30 56 1 48 46 | ||
M V30 57 | M V30 57 1 47 49 | ||
M V30 58 | M V30 58 1 45 50 | ||
M V30 59 1 | M V30 59 1 32 51 | ||
M V30 60 1 | M V30 60 1 30 52 | ||
M V30 61 | M V30 61 1 37 53 | ||
M V30 62 1 | M V30 62 1 35 54 | ||
M V30 63 1 | M V30 63 1 42 55 | ||
M V30 64 1 | M V30 64 1 40 56 | ||
M V30 65 | M V30 65 10 17 57 | ||
M V30 66 | M V30 66 10 15 57 | ||
M V30 67 | M V30 67 8 10 57 | ||
M V30 68 1 | M V30 68 8 1 57 | ||
M V30 69 | M V30 69 8 58 57 | ||
M V30 END BOND | M V30 END BOND | ||
M V30 END CTAB | M V30 END CTAB | ||
M END | M END | ||
|smiles= | |smiles=N12~[Fe](~Cl)34~N5C6C(C7C(O)=CC=CC=7O)=C7C=CC(C(C8C(O)=CC=CC=8O)=C1C=CC2=C(C1C(O)=CC=CC=1O)C1=N3C(=C(C2C(O)=CC=CC=2O)C5=CC=6)C=C1)=N74 | ||
|inchi=1S/C44H28N4O8.ClH.Fe/c49-29-5-1-6-30(50)41(29)37-21-13-15-23(45-21)38(42-31(51)7-2-8-32(42)52)25-17-19-27(47-25)40(44-35(55)11-4-12-36(44)56)28-20-18-26(48-28)39(24-16-14-22(37)46-24)43-33(53)9-3-10-34(43)54;;/h1-20H,(H8-2,45,46,47,48,49,50,51,52,53,54,55,56);1H;/q-2;;+3/p-1/b37-21+,37-22+,38-23+,38-25+,39-24+,39-26+,40-27+,40-28+;; | |inchi=1S/C44H28N4O8.ClH.Fe/c49-29-5-1-6-30(50)41(29)37-21-13-15-23(45-21)38(42-31(51)7-2-8-32(42)52)25-17-19-27(47-25)40(44-35(55)11-4-12-36(44)56)28-20-18-26(48-28)39(24-16-14-22(37)46-24)43-33(53)9-3-10-34(43)54;;/h1-20H,(H8-2,45,46,47,48,49,50,51,52,53,54,55,56);1H;/q-2;;+3/p-1/b37-21+,37-22+,38-23+,38-25+,39-24+,39-26+,40-27+,40-28+;; | ||
|inchikey=JQYRTQVHCKLBTL-YQGGSDPOSA-M | |inchikey=JQYRTQVHCKLBTL-YQGGSDPOSA-M | ||
Line 147: | Line 147: | ||
|height=200px | |height=200px | ||
|float=none | |float=none | ||
|molecularMass= | |molecularMass=834.117979132 | ||
|molecularFormula=C<sub>44</sub>H<sub> | |molecularFormula=C<sub>44</sub>H<sub>31</sub>ClFeN<sub>4</sub>O<sub>8</sub> | ||
|trivialname= | |trivialname= | ||
|synonyms= | |synonyms= |
Latest revision as of 10:00, 22 May 2024
Properties | |
---|---|
CID | n/a |
CAS | n/a |
IUPAC-Name | n/a |
Abbreviation | Fe(DHPP)Cl |
Trivialname | n/a |
Exact mass | 834.117979132 |
Molecular formula | C44H31ClFeN4O8 |
LogP | n/a |
Has vendors | n/a |
Molecular role | n/a |
Synonyms | n/a |
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Molecule is used on following pages
topic
- Photocatalytic CO2 conversion to CO
- Homogeneous photocatalytic CO2 conversion
- Photocatalytic CO2 conversion to CH4
publication
- Promoting photocatalytic CO2 reduction with a molecular copper purpurin chromophore
- Photocatalytic CO2 reduction with aminoanthraquinone organic dyes
- Selective and Efficient Photocatalytic CO2 Reduction to CO Using Visible Light and an Iron-Based Homogeneous Catalyst
- Visible-light-driven methane formation from CO2 with a molecular iron catalyst
investigation
- Visible-light-driven methane formation from CO2 with a molecular iron catalyst/Table 1
- Promoting photocatalytic CO2 reduction with a molecular copper purpurin chromophore/Photocatalytic CO2 reduction: best results
- Photocatalytic CO2 reduction with aminoanthraquinone organic dyes/Photocatalytic reduction of CO2 with different photosensitizers
- Photocatalytic CO2 reduction with aminoanthraquinone organic dyes/Photocatalytic CO2 reduction with varying concentrations of cat and PS
- Selective and Efficient Photocatalytic CO2 Reduction to CO Using Visible Light and an Iron-Based Homogeneous Catalyst/photocatalytic conversion of CO2 to CO
other