Synonym
RRN27853; RRN 27853; RRN-27853; 5,15-Bis(2,6-dioctoxyphenyl) porphyrin; 5,15-bis(2,6-bis(octyloxy)phenyl)porphyrin;
IUPAC/Chemical Name
5,15-bis(2,6-bis(octyloxy)phenyl)porphyrin
InChi Key
RUAWZJBJEUWKAN-RAYFTPLQSA-N
InChi Code
InChI=1S/C64H86N4O4/c1-5-9-13-17-21-25-43-69-57-31-29-32-58(70-44-26-22-18-14-10-6-2)63(57)61-53-39-35-49(65-53)47-51-37-41-55(67-51)62(56-42-38-52(68-56)48-50-36-40-54(61)66-50)64-59(71-45-27-23-19-15-11-7-3)33-30-34-60(64)72-46-28-24-20-16-12-8-4/h29-42,47-48,65,68H,5-28,43-46H2,1-4H3/b49-47-,50-48-,51-47-,52-48-,61-53+,61-54+,62-55+,62-56+
SMILES Code
CCCCCCCCOC1=CC=CC(OCCCCCCCC)=C1/C2=C3C=CC(/C=C4N/C(C=C\4)=C(C(C=C/5)=NC5=C/C6=CC=C2N6)/C7=C(C=CC=C7OCCCCCCCC)OCCCCCCCC)=N\3
Appearance
To be determined
Purity
>98% (or refer to the Certificate of Analysis)
Shipping Condition
Shipped under ambient temperature as non-hazardous chemical. This product is stable enough for a few weeks during ordinary shipping and time spent in Customs.
Storage Condition
Dry, dark and at 0 -4 C for short term (days to weeks) or -20 C for long term(months to years).
Solubility
To be determined
Shelf Life
>2 years if stored properly
Drug Formulation
To be determined
Stock Solution Storage
0 - 4 C for short term (days to weeks), or -20 C for long term (months).
HS Tariff Code
2934.99.9001
Preparing Stock Solutions
The following data is based on the
product
molecular weight
975.42
Batch specific molecular weights may vary
from batch to batch
due to the degree of hydration, which will
affect the solvent
volumes required to prepare stock solutions.
Concentration / Solvent Volume / Mass |
1 mg |
5 mg |
10 mg |
1 mM |
1.15 mL |
5.76 mL |
11.51 mL |
5 mM |
0.23 mL |
1.15 mL |
2.3 mL |
10 mM |
0.12 mL |
0.58 mL |
1.15 mL |
50 mM |
0.02 mL |
0.12 mL |
0.23 mL |
1.) Yuan, et al. A coupled polymeric porphyrin complex as a novel cathode for highly stable lithium organic batteries. Chem. Commun., 2020,56, 5437-5440. https://doi.org/10.1039/C9CC09846A
2.) Reddy, et al. Ambient stable, hydrophobic, electrically conductive porphyrin hole-extracting materials for printable perovskite solar cells. J. Mater. Chem. C, 2019,7, 4702-4708. https://doi.org/10.1039/C9TC00605B
3.) Song, et al. Branched and linear alkoxy chains-wrapped push-pull porphyrins for developing efficient dye-sensitized solar cells. Dyes and Pigments. Volume 137, February 2017, Pages 421-429. https://doi.org/10.1016/j.dyepig.2016.10.041
4.) Chen, et al. The effect of porphyrins suspended with different electronegative moieties on the photovoltaic performance of monolithic porphyrin-sensitized solar cells with carbon counter electrodes. New J. Chem., 2015, 39, 2889-2900. https://doi.org/10.1039/C4NJ02186J
5.) Chen, et al. The effect of different alkyl chains on the photovoltaic performance of D–π–A porphyrin-sensitized solar cells. New J. Chem., 2015, 39, 3736-3746. https://doi.org/10.1039/C4NJ02263G