Online Database of Chemicals from Around the World

2-Phenyl-1-propene
[CAS# 98-83-9]

List of Suppliers
Simagchem Corporation China Inquire  
+86 13806087780
sale@simagchem.com
Chemical manufacturer since 2002
chemBlink standard supplier since 2008
Tianjin Zhongxin Chem-tech Co., Ltd. China Inquire  
+86 (22) 6688-0623
sales@tjzxchem.com
Chemical manufacturer since 2007
chemBlink standard supplier since 2009
Hefei TNJ Chemical Industry Co., Ltd. China Inquire  
+86 (551) 6541-8684
sales@tnjchem.com
Chemical manufacturer since 2001
chemBlink standard supplier since 2010
Jiangsu Evergreen New Material Technology Incorporated China Inquire  
+86 (025) 8491-1160
flora.wang@cqsgfz.cn
Skype Chat
QQ chat
WeChat: 13605178468
WhatsApp: +8613605178468
Chemical manufacturer since 2010
chemBlink standard supplier since 2024
Scientific Polymer Products, Inc. USA Inquire  
+1 (585) 265-0413
custserv@scipoly.com
Chemical manufacturer
Anvia Chemicals, LLC USA Inquire  
+1 (414) 534-7845
sales@anviachem.com
Chemical manufacturer
Changsha Chromar Pharmaceutical Techno. Co., Ltd. China Inquire  
+86 (731) 8469-7086
1249217438@qq.com
QQ chat
Chemical manufacturer since 2002
Crescent Chemical Co. Inc. USA Inquire  
+1 (631) 348-0333
crescent@creschem.com
Chemical distributor
Complete supplier list of 2-Phenyl-1-propene
Identification
Classification Organic raw materials >> Hydrocarbon compounds and their derivatives >> Aromatic hydrocarbon
Name 2-Phenyl-1-propene
Synonyms alpha-Methylstyrene; Isopropenylbenzene
Molecular Structure CAS # 98-83-9, 2-Phenyl-1-propene, alpha-Methylstyrene, Isopropenylbenzene
Molecular Formula C9H10
Molecular Weight 118.18
CAS Registry Number 98-83-9
EC Number 202-705-0
SMILES CC(=C)C1=CC=CC=C1
Properties
Density 0.909
Melting point -23 ºC
Boiling point 165-169 ºC
Refractive index 1.537-1.539
Flash point 45 ºC
Water solubility insoluble
Safety Data
Hazard Symbols symbol symbol symbol   GHS02;GHS07;GHS09 Warning    Details
Hazard Statements H226-H335-H319-H411    Details
Precautionary Statements P261-P264+P265-P271-P273-P280-P304+P340-P305+P351+P338-P319-P337+P317-P391-P403+P233-P405-P501    Details
Hazard Classification
up    Details
HazardClassCategory CodeHazard Statement
Flammable liquidsFlam. Liq.3H226
Chronic hazardous to the aquatic environmentAquatic Chronic2H411
Specific target organ toxicity - single exposureSTOT SE3H335
Eye irritationEye Irrit.2H319
Skin irritationSkin Irrit.2H315
Serious eye damageEye Dam.1H318
Aspiration hazardAsp. Tox.1H304
Skin sensitizationSkin Sens.1BH317
Reproductive toxicityRepr.2H361
Reproductive toxicityRepr.2H361fd
Acute toxicityAcute Tox.4H332
Skin sensitizationSkin Sens.1H317
Specific target organ toxicity - single exposureSTOT SE3H370
Specific target organ toxicity - single exposureSTOT SE2H371
CarcinogenicityCarc.2H351
Specific target organ toxicity - repeated exposureSTOT RE2H373
Flammable liquidsFlam. Liq.2H225
Reproductive toxicityRepr.1BH360FD
Specific target organ toxicity - single exposureSTOT SE3H336
Eye irritationEye Irrit.2AH319
Reproductive toxicityRepr.2H361d
Transport Information UN 2303
SDS Available
up Discovory and Applicatios
2-Phenyl-1-propene, also known as allylbenzene, is an organic compound characterized by its phenyl group attached to a propene chain. The compound's structure consists of a three-carbon propene backbone with a phenyl substituent at the second carbon, giving it distinct chemical properties. The discovery of 2-phenyl-1-propene can be traced back to the early explorations of alkenes and aromatic compounds in organic chemistry during the 19th century, as chemists began to understand the significance of substitution patterns in hydrocarbon structures.

2-Phenyl-1-propene is predominantly synthesized through the dehydrogenation of phenylpropane or by the elimination of hydrogen chloride from phenyl-2-propyl chloride. This synthetic approach allows for the selective formation of the desired alkene while minimizing byproducts, making it an efficient method for producing this compound in laboratory and industrial settings.

The applications of 2-phenyl-1-propene are diverse, particularly in the field of organic synthesis and as a chemical intermediate. It serves as a precursor in the synthesis of various important chemicals, including pharmaceuticals and fragrances. Its structure makes it suitable for a range of reactions, such as electrophilic addition, Diels-Alder reactions, and polymerization, facilitating the creation of more complex molecular architectures.

In the fragrance industry, 2-phenyl-1-propene is valued for its pleasant floral scent, often described as reminiscent of jasmine or other floral notes. It is incorporated into perfumes and scented products to enhance their aromatic profile. The compound's volatility and compatibility with other fragrance ingredients make it a popular choice for formulators looking to create sophisticated and appealing scents.

Additionally, 2-phenyl-1-propene finds applications in the production of polymers and resins. It can be used as a monomer in polymerization reactions to produce various copolymers with desirable properties. These polymers are utilized in applications ranging from coatings and adhesives to specialty plastics, highlighting the compound's versatility in materials science.

While 2-phenyl-1-propene has significant industrial applications, safety considerations are paramount. As with many organic compounds, it is essential to handle this substance with care, adhering to safety guidelines to minimize risks associated with exposure. The compound is generally considered safe when used appropriately, but regulatory assessments ensure that manufacturers follow established standards to protect consumer health and safety.

Recent research continues to explore the potential of 2-phenyl-1-propene in novel applications, including its role in the development of new materials and as a building block for innovative chemical syntheses. As scientists investigate its properties further, 2-phenyl-1-propene may find additional uses that enhance its significance in both existing and emerging fields.

In summary, 2-phenyl-1-propene is an important organic compound with diverse applications in organic synthesis, fragrances, and materials science. Its unique structure and chemical properties enable it to serve as a valuable intermediate and additive in various formulations. Continued research may reveal even more applications for this versatile compound.

References

2024. A Comprehensive Exploration of the Synergistic Relationship between DMSO and Peroxide in Organic Synthesis. Topics in Current Chemistry (Cham), 72(11).
DOI: 10.1007/s41061-024-00482-9

2024. Efficient and selective oxidation of alcohols and hydrocarbons catalyzed by oxovanadium(IV) unsymmetrical salophen complex supported on silica-coated CoFe2O4 magnetic nanoparticles. Journal of the Iranian Chemical Society, 46(11).
DOI: 10.1007/s13738-024-03128-1

2024. Schiff Base-Based Molybdenum Complexes as Green Catalyst in the Epoxidation Reaction: A Minireview. Topics in Current Chemistry (Cham), 72(10).
DOI: 10.1007/s41061-024-00480-x
Market Analysis Reports
List of Reports Available for 2-Phenyl-1-propene
Related Products
1-Phenyl-1-propanol  (S)-1-Phenyl-2-propanol  2-Phenyl-1-propanol  3-Phenyl-1-propanol  Phenylpropanol  (-)-1-Phenylpropanol  (2R)-1-Phenylpropan-2-ol  1-Phenyl-2-propanol  Phenyl propargyl sulfide  (Z)-3-Phenyl-2-propenal  3-Phenyl-2-propenimidamide  (E)-3-Phenyl-2-propenimidamide  Phenyl propenoate  3-Phenyl-2-propenoic acid (2R,3R)-2-[(dichloroacetyl)amino]-3-hydroxy-3-(4-nitrophenyl)propyl ester  3-Phenyl-2-propenoic acid 1-ethenyl-1,5-dimethyl-4-hexen-1-yl ester  (2E,2'E)-3-Phenyl-2-propenoic acid (1-methylethylidene)di-4,1-phenylene ester  3-Phenyl-2-propenoic acid 1-methylheptyl ester  3-Phenyl-2-propenoic acid (tetrahydro-2-furanyl)methyl ester  1-Phenyl-2-propen-1-one  3-Phenyl-2-propenyl beta-D-glucopyranoside