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| Name of Product | 1,3 Dibromo propane |
| CAS No | 109-64-8 |
| Formula | C3H6Br2 |
| IUPAC Name | 1,3-dibromopropane |
| InChI | InChI=1S/C3H6Br2/c4-2-1-3-5/h1-3H2 |
| InChI Key | VEFLKXRACNJHOV-UHFFFAOYSA-N |
| Canonical SMILES | C(CBr)CBr |
| EC Number | 203-690-3 |
| UNII | YQR3048IX9 |
| Description : | Clear, colorless to pale yellow liquid. |
| Water : | Not more than 0.1 % |
| Acidity : | Not more than 0.1% |
| Purity by GC : | Not less than 98.50 % |
| Other name / synonyms | 1,3-DIBROMOPROPANE |
| Trimethylene bromide |
| Trimethylene dibromide |
| 109-64-8 |
| Propane, 1,3-dibromo- |
| 1,3-dibrompropan |
| .alpha.,.gamma.-Dibromopropane |
| 1,3-dibromo propane |
| 1,3-dibromo-propane |
| alpha,gamma-Dibromopropane |
| CCRIS 6711 |
| HSDB 7408 |
| .omega.,.omega.'-Dibromopropane |
| VEFLKXRACNJHOV-UHFFFAOYSA-N |
| EINECS 203-690-3 |
| NSC 62663 |
| AI3-28592 |
| Trimethylenebromide |
| 1,3dibromopropane |
| 1,3-dibromopropan |
| 1,3 dibromopropane |
| 1.3-dibromopropane |
| 1, 3-dibromopropane |
| 1,3- dibromopropane |
| Dibromopropane |
| Dibromo-1,3 propane |
| CH2BrCH2CH2Br |
| ACMC-1BSTB |
| DSSTox_CID_1902 |
| 1,3-bis(bromanyl)propane |
| AC1L1Q1C |
| AC1Q27TS |
| SCHEMBL2175 |
| WLN: E3E |
| DSSTox_RID_76394 |
| UNII-YQR3048IX9 |
| DSSTox_GSID_21902 |
| KSC176O8L |
| YQR3048IX9 |
| CTK0H6785 |
| MolPort-000-153-905 |
| BB_SC-6684 |
| KST-1B6720 |
| 125903_SIAL |
| NSC62663 |
| Tox21_202716 |
| ANW-16075 |
| AR-1B6825 |
| BBL011375 |
| NSC-62663 |
| SBB060203 |
| STL146473 |
| AKOS000118758 |
| MCULE-6500110480 |
| RP25897 |
| RTC-030976 |
| TRA0027650 |
| NCGC00260264-01 |
| AN-22565 |
| CAS-109-64-8 |
| SC-79111 |
| DB-003852 |
| KB-150183 |
| LS-119947 |
| TC-030976 |
| TL8000305 |
| D0202 |
| FT-0606630 |
| ST51046433 |
| 51052-EP2272843A1 |
| 51052-EP2272848A1 |
| 51052-EP2280006A1 |
| 51052-EP2280012A2 |
| 51052-EP2281817A1 |
| 51052-EP2292621A1 |
| 51052-EP2305254A1 |
| 51052-EP2311824A1 |
| 51052-EP2371808A1 |
| InChI=1/C3H6Br2/c4-2-1-3-5/h1-3H |
| A802067 |
| I14-0240 |
| 3B3-020131 |
Key Properties and ApplicationsDibromopropane features high purity (min. 98%), a boiling point of 196C, and a density of 2.066 g/cm. Its main applications are in organic synthesis, as a pharmaceutical and agrochemical intermediate, and as a laboratory reagent. Its clear, colorless to pale yellow appearance and solubility in organic solvents make it suitable for a range of industrial purposes.
Safe Handling and Storage TipsTo maintain stability and product quality, Dibromopropane should be stored below 30C in tightly sealed containers. It is classified as a flammable liquid and irritant; keep it away from heat, open flames, and ignition sources. Proper ventilation and the use of protective equipment are advised during handling to prevent inhalation or absorption.
Benefits and Versatile UsesWith its broad applicability in pharmaceuticals, chemical synthesis, and agrochemicals, Dibromopropane serves as a valuable intermediate in manufacturing. Its reliable shelf life (up to two years if stored correctly) and industrial grade specification make it a preferred choice for manufacturers, exporters, and suppliers in India.
FAQs of Dibromopropane:
Q: How should Dibromopropane be safely stored to preserve its stability and shelf life?
A: Dibromopropane should be stored below 30C in a tightly closed container, away from sources of ignition and direct sunlight, to maintain its stability and achieve its maximum shelf life of two years.
Q: What precautions are necessary when handling Dibromopropane in industrial or laboratory settings?
A: Appropriate personal protective equipment, such as gloves and eye protection, should be worn. Use the chemical in well-ventilated areas and avoid inhalation or absorption, as Dibromopropane acts as an irritant and can be harmful if exposed.
Q: When is Dibromopropane typically used during the chemical synthesis process?
A: Dibromopropane is often employed as an intermediate during organic synthesis, particularly in the preparation of pharmaceuticals and agrochemicals, where its brominated structure is essential for introducing specific functionalities into target molecules.
Q: What are the main benefits of using Dibromopropane as an intermediate in manufacturing?
A: Dibromopropane offers high purity, chemical stability under recommended storage conditions, and versatility in organic synthesis, making it useful for producing various pharmaceuticals, agrochemicals, and specialty chemicals.
Q: Where is Dibromopropane most commonly utilized?
A: It is predominantly used in chemical manufacturing facilities, pharmaceutical laboratories, and agrochemical synthesis plants, mainly across industrial sectors in India and for export markets.
Q: How is Dibromopropane typically transported to ensure safety and compliance?
A: Dibromopropane is transported according to UN Number 1993 under Packing Group III as a Class 3 flammable liquid. It must be contained securely and labeled appropriately to meet transport safety regulations.