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2-Butoxynaphthalene

2-Butoxynaphthalene structure

2-Butoxynaphthalene 

structure
  • CAS No:

    10484-56-7

  • Formula:

    C14H16O

  • Chemical Name:

    2-Butoxynaphthalene

  • Synonyms:

    Naphthalene,2-butoxy-;2-Butoxynaphthalene;Fragarol;β-Naphthol butyl ether;Butyl β-naphthyl ether

Description

This compound consists of a naphthalene ring substituted with a butoxy group (-OC₄H₉) at the 2-position. It is a pale yellow to amber oily liquid with a faint aromatic odor. It has a high boiling point (~300°C), is insoluble in water, but dissolves in alcohols and ethers.


This compound consists of a naphthalene ring substituted with a butoxy group (-OC₄H₉) at the 2-position. It is a pale yellow to amber oily liquid with a faint aromatic odor. It has a high boiling point (~300°C), is insoluble in water, but dissolves in alcohols and ethers.

2-Butoxynaphthalene Basic Attributes

200.28

200.28

233-998-3

I8O56IV62A

DTXSID7065093

Characteristics

9.2

4.96

White crystalline powder; sweet fruity floral berry aroma

1.0±0.1 g/cm3

31-33 °C

147-150 °C @ Press: 4 Torr

123.5±8.5 °C

1.570

Insoluble in water; Soluble in non-polar organic solvents and fats

0.000817mmHg at 25°C

2-Butoxynaphthalene Use and Manufacturing

Uses

In practical applications, 2-butoxonaphthalene shines in the fragrance industry. Its unique and attractive aroma is widely used in perfumes, colognes, scented candles and air fresheners to create a pleasant sensory experience and enhance the overall appeal of the product. Whether it is a romantic date or a warm home environment, 2-butanaphthalene can add a special atmosphere with its unique aroma. However, the potential of 2-butanaphthalene goes far beyond that. At the forefront of materials science, it has attracted much attention from researchers. Due to its unique electronic properties and structural characteristics, 2-butanaphthalene is seen as a cornerstone for building more complex organic structures and may play an important role in the fields of organic electronics, optoelectronics and advanced materials. Scientists are exploring how to use 2-butanaphthalene to design and manufacture new functional materials to meet the needs of future scientific and technological development. In addition, 2-butanaphthalene also shows great potential in the fields of medicine and agriculture. Its structure is similar to many bioactive compounds, combined with its unique physicochemical properties, making it a potential lead compound in drug discovery, or a candidate as a bioactive agent in agricultural chemistry. The development of new 2-butanaphthalene derivatives and analogues through innovative chemical synthesis techniques will open up new research directions and application possibilities for medicine and agriculture. Moreover, 2-butanaphthalene May also play a key role in the field of environmental protection. Due to its stability to light, heat and chemical environments, scientists are investigating the use of 2-butanaphthalene for the design of new environmentally friendly materials, such as degradable plastics and efficient solar energy absorbing materials. These materials are expected to contribute to reducing plastic pollution and improving the utilization of renewable energy, thus promoting the process of sustainable development. In the cosmetics industry, the properties of 2-butoxonaphthalene have also attracted attention. Its skin affinity and low irritation make it an ideal ingredient for developing efficient and safe skin and hair care products. By fine-tuning the structure of 2-butanaphthalene, scientists can create new cosmetic ingredients with multiple functions such as antioxidant, anti-aging, and sunscreen, providing consumers with a better product experience. In the future, the versatility and wide application prospects of 2-butanaphthalene will stimulate more interdisciplinary research collaborations. Chemists, materials scientists, biologists and engineers will work together to unlock the potential of 2-butanaphthalene to solve real-world challenges and drive innovation and development in technology and industry. 2-butanaphthalene, this seemingly ordinary compound, is quietly affecting and changing our lives in its unique way. 2-butanaphthalene has become an important focus of scientific research and industrial innovation due to its unique chemical structure, attractive aroma and wide application prospects. As our understanding of this compound deepens, we can foresee that 2-butanaphthalene will play a more important role in future technology and life.


In practical applications, 2-butoxonaphthalene shines in the fragrance industry. Its unique and attractive aroma is widely used in perfumes, colognes, scented candles and air fresheners to create a pleasant sensory experience and enhance the overall appeal of the product. Whether it is a romantic date or a warm home environment, 2-butanaphthalene can add a special atmosphere with its unique aroma. However, the potential of 2-butanaphthalene goes far beyond that. At the forefront of materials science, it has attracted much attention from researchers. Due to its unique electronic properties and structural characteristics, 2-butanaphthalene is seen as a cornerstone for building more complex organic structures and may play an important role in the fields of organic electronics, optoelectronics and advanced materials. Scientists are exploring how to use 2-butanaphthalene to design and manufacture new functional materials to meet the needs of future scientific and technological development. In addition, 2-butanaphthalene also shows great potential in the fields of medicine and agriculture. Its structure is similar to many bioactive compounds, combined with its unique physicochemical properties, making it a potential lead compound in drug discovery, or a candidate as a bioactive agent in agricultural chemistry. The development of new 2-butanaphthalene derivatives and analogues through innovative chemical synthesis techniques will open up new research directions and application possibilities for medicine and agriculture. Moreover, 2-butanaphthalene May also play a key role in the field of environmental protection. Due to its stability to light, heat and chemical environments, scientists are investigating the use of 2-butanaphthalene for the design of new environmentally friendly materials, such as degradable plastics and efficient solar energy absorbing materials. These materials are expected to contribute to reducing plastic pollution and improving the utilization of renewable energy, thus promoting the process of sustainable development. In the cosmetics industry, the properties of 2-butoxonaphthalene have also attracted attention. Its skin affinity and low irritation make it an ideal ingredient for developing efficient and safe skin and hair care products. By fine-tuning the structure of 2-butanaphthalene, scientists can create new cosmetic ingredients with multiple functions such as antioxidant, anti-aging, and sunscreen, providing consumers with a better product experience. In the future, the versatility and wide application prospects of 2-butanaphthalene will stimulate more interdisciplinary research collaborations. Chemists, materials scientists, biologists and engineers will work together to unlock the potential of 2-butanaphthalene to solve real-world challenges and drive innovation and development in technology and industry. 2-butanaphthalene, this seemingly ordinary compound, is quietly affecting and changing our lives in its unique way. 2-butanaphthalene has become an important focus of scientific research and industrial innovation due to its unique chemical structure, attractive aroma and wide application prospects. As our understanding of this compound deepens, we can foresee that 2-butanaphthalene will play a more important role in future technology and life.

Naphthalene, 2-butoxy-: INACTIVE

Flavoring Agents -> JECFA Flavorings Index

Flavoring Agents

Computed Properties

Molecular Weight:200.28
XLogP3:4.7
Hydrogen Bond Acceptor Count:1
Rotatable Bond Count:4
Exact Mass:200.120115130
Monoisotopic Mass:200.120115130
Topological Polar Surface Area:9.2
Heavy Atom Count:15
Complexity:178
Covalently-Bonded Unit Count:1
Compound Is Canonicalized:Yes

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