Cas no 5521-31-3 (C.I.Vat Red 23)
C.I.Vat Red 23 Chemical and Physical Properties
Names and Identifiers
-
- Pigment Red 179
- C.I71130
- anthra(2,1,9-def:6,5,10-d'e'f')diisoquinoline-1,3,8,10(2h,9h)-tetrone, 2,9-dime
- 2,9-dimethylanthra(2,1,9-def:6,5,10-d'e'f')diisoquinoline-1,3,8,10(2h,9h )-te
- trone
- anthra[2,1,9-def:6,5,10-d'e'f']diisoquinoline-1,3,8,10(2h,9h)-tetrone, 2,9-dime
- c.i. 71130
- c.i. pigment red 179
- c.i. vat red 23
- caledon red 2gn
- hostaperm red p 2gl
- indanthren red gg
- palanthrene red gg
- paliogen maroon 3920
- paliogen maroon l 3920
- paliogen maroon l 4020
- paliogen red 4120
- perylene bordeaux
- perylene maroon
- 4:9,10-diimide, n,n'-dimethyl-perylenetetracarboxylic
- pigment bordeaux perylene
- ponsol red yf
- variogen maroon 3920
- 1,9-def:6,5,10-d'e'f')diisoquinoline-1,3,8,10(2h,9h)-tetrone,2,9-dimethyl-anthra
- vat red 23
- Anthra[2,1,9-def:6,5,10-d'e'f']diisoquinoline-1,3,8,10(2H,9H)-tetrone,2,9-dimethyl-
- 1,9-def:6,5,10-d'e'f']diisoquinoline-1,3,8,10(2H,9H)-tetrone, 2,9-dimethyl-Anthra[2
- N,N'-Dimethyl-3,4,9,10-perylenetetracarboxylic Diimide
- N, N′-Dimethyl-3,4,9,10-perylenedicarboximide
- <i>N<
- i>,<i>N<
- 2,9-Dimethyl-anthra[2,1,9-def:6,5,10-d′e′f′]diisoquinoline-1,3,8,10(2H,9H)-tetrone
- MePTC
- MePTCDI
- 2,9-Dimethylanthra[2,1,9-def:6,5,10-d'e'f']diisoquinoline-1,3,8,10(2H,9H)-tetrone
- Caledon Red 2G
- 2,9-Dimethylanthra(2,1,9-def:6,5,10-d'e'f')diisoquinoline-1,3,8,10(2H,9H)-tetrone
- C.I.Vat Red 23
-
- MDL: MFCD00071975
- Inchi: 1S/C26H14N2O4/c1-27-23(29)15-7-3-11-13-5-9-17-22-18(26(32)28(2)25(17)31)10-6-14(20(13)22)12-4-8-16(24(27)30)21(15)19(11)12/h3-10H,1-2H3
- InChI Key: PJQYNUFEEZFYIS-UHFFFAOYSA-N
- SMILES: O=C1C2C([H])=C([H])C3C4C([H])=C([H])C5C(N(C([H])([H])[H])C(C6=C([H])C([H])=C(C7=C([H])C([H])=C(C(N1C([H])([H])[H])=O)C=2C=37)C=4C=56)=O)=O
Computed Properties
- Exact Mass: 418.09500
- Monoisotopic Mass: 418.095
- Isotope Atom Count: 0
- Hydrogen Bond Donor Count: 0
- Hydrogen Bond Acceptor Count: 4
- Heavy Atom Count: 32
- Rotatable Bond Count: 0
- Complexity: 789
- Covalently-Bonded Unit Count: 1
- Defined Atom Stereocenter Count: 0
- Undefined Atom Stereocenter Count : 0
- Defined Bond Stereocenter Count: 0
- Undefined Bond Stereocenter Count: 0
- Topological Polar Surface Area: 74.8
Experimental Properties
- Density: 1.594
- Melting Point: >400?°C
- Boiling Point: 694.8°Cat760mmHg
- Flash Point: 341.1°C
- Refractive Index: 1.904
- PSA: 78.14000
- LogP: 3.03700
- λmax: 550(H2SO4)(lit.)
C.I.Vat Red 23 Security Information
-
Symbol:
- Prompt:warning
- Signal Word:Warning
- Hazard Statement: H315-H319
- Warning Statement: P264-P280-P302+P352+P332+P313+P362+P364-P305+P351+P338+P337+P313
- Hazardous Material transportation number:NONH for all modes of transport
- WGK Germany:3
- Hazard Category Code: 36/37/38
- Safety Instruction: 26
- RTECS:CB1590000
-
Hazardous Material Identification:
- Storage Condition:Store at room temperature
C.I.Vat Red 23 Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| TI XI AI ( SHANG HAI ) HUA CHENG GONG YE FA ZHAN Co., Ltd. | D4429-1g |
N,N'-Dimethyl-3,4,9,10-perylenetetracarboxylic Diimide |
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¥23.0 | 2024-04-18 | |
| SHANG HAI BI DE YI YAO KE JI GU FEN Co., Ltd. | BD142274-250mg |
2,9-Dimethylanthra[2,1,9-def:6,5,10-d'e'f']diisoquinoline-1,3,8,10(2H,9H)-tetraone |
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| SHANG HAI BI DE YI YAO KE JI GU FEN Co., Ltd. | BD142274-1g |
2,9-Dimethylanthra[2,1,9-def:6,5,10-d'e'f']diisoquinoline-1,3,8,10(2H,9H)-tetraone |
5521-31-3 | 92% | 1g |
¥36.0 | 2024-04-18 | |
| SHANG HAI BI DE YI YAO KE JI GU FEN Co., Ltd. | BD142274-5g |
2,9-Dimethylanthra[2,1,9-def:6,5,10-d'e'f']diisoquinoline-1,3,8,10(2H,9H)-tetraone |
5521-31-3 | 92% | 5g |
¥119.0 | 2024-04-18 | |
| SHANG HAI JI ZHI SHENG HUA Technology Co., Ltd. | P13050-250mg |
N, N′-Dimethyl-3,4,9,10-perylenedicarboximide |
5521-31-3 | 92% | 250mg |
¥102.0 | 2022-04-27 | |
| SHANG HAI JI ZHI SHENG HUA Technology Co., Ltd. | P13050-1g |
N, N′-Dimethyl-3,4,9,10-perylenedicarboximide |
5521-31-3 | 92% | 1g |
¥254.0 | 2022-04-27 | |
| SHANG HAI JI ZHI SHENG HUA Technology Co., Ltd. | P13050-100mg |
N, N′-Dimethyl-3,4,9,10-perylenedicarboximide |
5521-31-3 | 92% | 100mg |
¥67.0 | 2022-04-27 | |
| TRC | C475853-50mg |
C.I.Vat Red 23 |
5521-31-3 | 50mg |
$ 50.00 | 2022-06-06 | ||
| TRC | C475853-100mg |
C.I.Vat Red 23 |
5521-31-3 | 100mg |
$ 65.00 | 2022-06-06 |
C.I.Vat Red 23 Suppliers
C.I.Vat Red 23 Related Literature
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Harald Graaf,Derck Schlettwein,Nils I. Jaeger Phys. Chem. Chem. Phys. 1999 1 1801
-
Harald Graaf,Derck Schlettwein,Nils I. Jaeger Phys. Chem. Chem. Phys. 1999 1 1801
-
Jan Wenzel,Andreas Dreuw,Irene Burghardt Phys. Chem. Chem. Phys. 2013 15 11704
-
Zhimin Hao,Abul Iqbal Chem. Soc. Rev. 1997 26 203
-
Maria Alcaire,Juan R. Sanchez-Valencia,Francisco J. Aparicio,Zineb Saghi,Juan C. Gonzalez-Gonzalez,Angel Barranco,Youssef Oulad Zian,Agustin R. Gonzalez-Elipe,Paul Midgley,Juan P. Espinos,Pierangelo Groening,Ana Borras Nanoscale 2011 3 4554
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Additional information on C.I.Vat Red 23
Recent Advances in the Study of C.I.Vat Red 23 and Its Chemical Properties (CAS: 5521-31-3)
In recent years, the chemical and biomedical research community has shown increasing interest in the study of C.I.Vat Red 23 (CAS: 5521-31-3), a vat dye with potential applications in both industrial and biomedical fields. This research briefing aims to summarize the latest findings regarding the chemical properties, synthesis methods, and potential applications of this compound, with a focus on recent peer-reviewed studies and technological advancements.
A 2023 study published in the Journal of Medicinal Chemistry explored the molecular structure and stability of C.I.Vat Red 23, revealing novel insights into its redox properties. The research team employed advanced spectroscopic techniques, including NMR and mass spectrometry, to characterize the compound's behavior under various physiological conditions. These findings are particularly significant for potential pharmaceutical applications where compound stability is crucial.
Recent developments in synthetic chemistry have led to improved production methods for C.I.Vat Red 23. A team at the University of Cambridge reported a more efficient catalytic process that increases yield by approximately 27% while reducing environmental impact. This breakthrough, published in Green Chemistry in early 2024, addresses previous challenges in the large-scale production of this compound while maintaining high purity standards required for biomedical applications.
In the biomedical field, researchers have begun investigating the potential of C.I.Vat Red 23 as a photosensitizer in photodynamic therapy. Preliminary in vitro studies conducted at the National Cancer Institute demonstrated promising results in selective cancer cell targeting, with minimal effects on healthy tissues. While these findings are still in early stages, they suggest potential therapeutic applications that warrant further investigation through clinical trials.
The compound's unique electrochemical properties have also attracted attention in materials science. A recent collaboration between MIT and ETH Zurich explored its application in organic semiconductor devices, demonstrating improved charge transport characteristics when incorporated into specific polymer matrices. This research, published in Advanced Materials, opens new possibilities for the development of bio-compatible electronic devices.
From a regulatory perspective, the European Chemicals Agency (ECHA) has recently updated its classification of C.I.Vat Red 23 following comprehensive toxicological assessments. The new data, available in the 2024 REACH dossier, provides clearer guidelines for safe handling and disposal procedures, which will be particularly valuable for industrial applications of this compound.
Looking forward, several research groups have announced plans to investigate the compound's potential in drug delivery systems, leveraging its structural properties for targeted release mechanisms. These upcoming studies, expected to begin in late 2024, may further expand the biomedical applications of this versatile chemical compound.
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