Cas no 2528-38-3 (Triamyl Phosphate)
Triamyl Phosphate Chemical and Physical Properties
Names and Identifiers
-
- Phosphoric acid,tripentyl ester
- Triamyl Phosphate
- tripentyl phosphate
- Tripentyl phosphate (TPeP) Standard
- EINECS 219-773-2
- Phosphoric Acid Triamyl Ester
- PHOSPHORIC ACID TRI-N-AMYL ESTER
- phosphoric acid tripenetyl ester
- Phosphorsaeure-tripentylester
- tri-n-Amylphosphate
- tripenthyl phosphate
- Tripentylphosphat
- CQ87Q628UH
- QJAVUVZBMMXBRO-UHFFFAOYSA-N
- tri-n-amyl phosphate
- P0265
- DTXSID3052698
- NS00027852
- Pentyl phosphate ((C5H11O)3PO)
- J-015908
- MFCD00015348
- D91937
- QJAVUVZBMMXBRO-UHFFFAOYSA-
- triamylphosphate
- SCHEMBL56777
- InChI=1/C15H33O4P/c1-4-7-10-13-17-20(16,18-14-11-8-5-2)19-15-12-9-6-3/h4-15H2,1-3H3
- NSC-202805
- Phosphoric acid tripentyl ester
- Phosphoric acid, tripentyl ester
- CS-0435528
- NSC202805
- Tripentyl phosphate #
- Triamylphosphat
- NSC 202805
- tri-n-pentyl phosphate
- A937716
- AKOS015856750
- FT-0730119
- 2528-38-3
-
- MDL: MFCD00015348
- Inchi: 1S/C15H33O4P/c1-4-7-10-13-17-20(16,18-14-11-8-5-2)19-15-12-9-6-3/h4-15H2,1-3H3
- InChI Key: QJAVUVZBMMXBRO-UHFFFAOYSA-N
- SMILES: P(=O)(OCCCCC)(OCCCCC)OCCCCC
Computed Properties
- Exact Mass: 308.21200
- Monoisotopic Mass: 308.212
- Isotope Atom Count: 0
- Hydrogen Bond Donor Count: 0
- Hydrogen Bond Acceptor Count: 4
- Heavy Atom Count: 20
- Rotatable Bond Count: 15
- Complexity: 208
- 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
- Surface Charge: 0
- Tautomer Count: nothing
- XLogP3: nothing
- Topological Polar Surface Area: 44.8A^2
Experimental Properties
- Color/Form: Not determined
- Density: 0.96
- Boiling Point: 158°C/5mmHg(lit.)
- Flash Point: 162.3°C
- Refractive Index: 1.4290 to 1.4320
- PSA: 54.57000
- LogP: 5.71490
- Solubility: Not determined
Triamyl Phosphate Security Information
- Hazard Category Code: 20/21/22-36/37/38
- Safety Instruction: S26; S36/37/39
- RTECS:TC8312500
- Risk Phrases:R20/21/22; R36/37/38
Triamyl Phosphate Customs Data
- HS CODE:2919900090
- Customs Data:
China Customs Code:
2919900090Overview:
HS:2919900090 Other phosphates and their salts(Including milk phosphate)(Including their halogenation,sulfonation,Nitration and nitrosation derivatives) VAT:17.0% Tax refund rate:9.0% Regulatory conditions:AB(Customs clearance form for Inbound Goods,Customs clearance form for outbound goods) MFN tariff:6.5% general tariff:30.0%
Declaration elements:
Product Name, component content, use to
Regulatory conditions:
A.Customs clearance form for Inbound Goods
B.Customs clearance form for outbound goodsInspection and quarantine category:
R.Sanitary supervision and inspection of imported food
S.Sanitary supervision and inspection of exported food
M.Import commodity inspection
N.Export commodity inspectionSummary:
2919900090 other phosphoric esters and their salts, including lactophosphates; their halogenated, sulphonated, nitrated or nitrosated derivatives.supervision conditions:AB(certificate of inspection for goods inward,certificate of inspection for goods outward).VAT:17.0%.tax rebate rate:9.0%.MFN tariff:6.5%.general tariff:30.0%
Triamyl Phosphate 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. | P0265-25ML |
Triamyl Phosphate |
2528-38-3 | >98.0%(GC) | 25ml |
¥790.00 | 2024-04-16 | |
| SHANG HAI JI ZHI SHENG HUA Technology Co., Ltd. | X66105-1ml |
Tripentyl phosphate |
2528-38-3 | ≥98% | 1ml |
¥58.0 | 2023-09-05 | |
| SHANG HAI MAI KE LIN SHENG HUA Technology Co., Ltd. | T864897-25ml |
Triamyl Phosphate |
2528-38-3 | ≥98% | 25ml |
¥1,001.00 | 2022-08-31 | |
| SHANG HAI MAI KE LIN SHENG HUA Technology Co., Ltd. | T864897-1ml |
Triamyl Phosphate |
2528-38-3 | ≥98% | 1ml |
¥69.00 | 2022-08-31 | |
| SHANG HAI MAI KE LIN SHENG HUA Technology Co., Ltd. | T864897-5ml |
Triamyl Phosphate |
2528-38-3 | ≥98% | 5ml |
¥279.00 | 2022-08-31 | |
| TRC | T767328-50mg |
Triamyl Phosphate |
2528-38-3 | 50mg |
$ 64.00 | 2023-09-05 | ||
| TRC | T767328-100mg |
Triamyl Phosphate |
2528-38-3 | 100mg |
$ 87.00 | 2023-09-05 | ||
| TRC | T767328-500mg |
Triamyl Phosphate |
2528-38-3 | 500mg |
$ 109.00 | 2023-09-05 | ||
| TI XI AI ( SHANG HAI ) HUA CHENG GONG YE FA ZHAN Co., Ltd. | P0265-5ML |
Triamyl Phosphate |
2528-38-3 | >98.0%(GC) | 5ml |
¥240.00 | 2024-04-16 | |
| SHANG HAI XIAN DING Biotechnology Co., Ltd. | P0265-25ml |
Triamyl Phosphate |
2528-38-3 | 98.0%(GC) | 25ml |
¥1095.0 | 2022-06-10 |
Triamyl Phosphate Suppliers
Triamyl Phosphate Related Literature
-
Caroline Bergh,K. Magnus ?berg,Magnus Svartengren,Gunnel Emenius,Conny ?stman J. Environ. Monit. 2011 13 2001
-
Sadjedah A. H. Khalil,Gwilym J. Moody,J. D. R. Thomas Analyst 1985 110 353
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Anneli Marklund,Barbro Andersson,Peter Haglund J. Environ. Monit. 2005 7 814
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G. J. Moody,Jonathan M. Slater,J. D. R. Thomas Analyst 1988 113 699
-
O. Glyn Davies,G. J. Moody,J. D. R. Thomas Analyst 1988 113 497
Additional information on Triamyl Phosphate
Triamyl Phosphate: A Comprehensive Overview
Triamyl Phosphate, also known by its CAS No. 2528-38-3, is a versatile organic compound with significant applications across various industries. This compound, often abbreviated as TAP, is a triester of phosphoric acid and three molecules of isopropyl alcohol. Its chemical structure consists of a central phosphorus atom bonded to three isopropoxy groups and one hydroxyl group, making it a key player in the field of organophosphorus chemistry.
The synthesis of Triamyl Phosphate involves the reaction of phosphoric acid with isopropyl alcohol under specific conditions to form the desired product. This process is optimized to ensure high purity and stability, which are critical for its various applications. Recent advancements in catalytic systems have further enhanced the efficiency of this synthesis, reducing production costs and minimizing environmental impact.
One of the most notable applications of Triamyl Phosphate is in the field of nuclear energy. It serves as a crucial component in the extraction and purification processes of uranium, playing a pivotal role in the production of nuclear fuel. The ability of TAP to act as an effective solvent in liquid-liquid extraction has been extensively studied and utilized in modern nuclear reactors.
In addition to its role in nuclear technology, Triamyl Phosphate finds application in organic synthesis. Its ability to act as a catalyst or a reagent in various chemical reactions has made it indispensable in the production of fine chemicals and pharmaceutical intermediates. Recent research has highlighted its potential in asymmetric catalysis, where it facilitates the formation of chiral compounds with high enantioselectivity.
The physical properties of Triamyl Phosphate are equally important for its practical uses. It exists as a colorless liquid with a characteristic odor, and it is miscible with many organic solvents but poorly soluble in water. Its boiling point and viscosity are within ranges that make it suitable for large-scale industrial processes without requiring extreme conditions.
From an environmental perspective, understanding the fate and behavior of Triamyl Phosphate is essential for ensuring safe handling and disposal. Studies have shown that TAP undergoes biodegradation under specific conditions, although its persistence in certain environments remains a topic of ongoing research. Regulatory bodies continue to monitor its use to minimize any potential ecological impact.
Recent advancements in analytical techniques have provided deeper insights into the structural properties and reactivity of Triamyl Phosphate. Techniques such as nuclear magnetic resonance (NMR) spectroscopy and mass spectrometry have enabled researchers to study its molecular interactions at a detailed level, leading to improved synthetic methods and better understanding of its behavior in complex systems.
In conclusion, Triamyl Phosphate (CAS No. 2528-38-3) stands out as a multifaceted compound with applications spanning nuclear energy, organic synthesis, and beyond. Its chemical properties, coupled with recent research advancements, underscore its importance in both industrial and academic realms. As technology continues to evolve, so too will the potential uses and understanding of this remarkable compound.
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