Product Information
General Information
Description
Product Introduction
6,7-Dimethoxy-1,1,4,4-tetramethyl-1,2,3,4-tetrahydronaphthalene (CAS No. 22825-00-9) is a methoxy-functionalized tetrahydronaphthalene derivative featuring a highly substituted aromatic framework and sterically protected molecular structure. This compound is an important organic synthesis intermediate and functional molecular building block used in the preparation of advanced organic materials, specialty chemicals, and molecular design studies.
With its dimethoxy aromatic moiety and tetramethyl-substituted tetrahydronaphthalene backbone, this compound provides valuable structural features including enhanced molecular rigidity, hydrophobicity, and tunable electronic properties. It can serve as an intermediate for developing functional molecules in organic electronics, materials chemistry, pharmaceutical chemistry, and synthetic organic research.
Chemical Characteristics
This compound features:
- Rigid polycyclic aromatic framework
- Two methoxy functional groups
- Sterically hindered molecular structure
- High organic solubility potential
- Suitable platform for molecular modification
- Useful intermediate for functional molecule synthesis
The combination of aromatic and aliphatic structural elements provides opportunities for designing molecules with tailored physical and electronic properties.
Key Research Applications
1. Organic Electronic Materials
The compound can serve as a molecular building block for the synthesis of functional organic materials.
Typical applications include:
- Organic semiconductor molecule design
- Functional aromatic material synthesis
- Molecular framework modification
- Organic electronic material development
The rigid tetrahydronaphthalene structure can contribute to molecular stability and controlled packing behavior in advanced organic materials.
2. Advanced Organic Synthesis
This compound is used as a versatile intermediate in synthetic chemistry.
Applications include:
- Preparation of substituted aromatic compounds
- Functional group transformation studies
- Multi-step organic synthesis
- Structure–property relationship research
3. Functional Materials Research
Due to its sterically protected aromatic structure, it is useful in developing specialty functional molecules.
Applications include:
- Molecular architecture design
- Hydrophobic functional materials
- Organic framework modification
- Specialty chemical development
4. Pharmaceutical & Medicinal Chemistry Research
The compound may serve as an intermediate for the synthesis of structurally diverse organic molecules.
Applications include:
- Drug discovery chemistry
- Lead compound modification
- Aromatic scaffold development
- Bioactive molecule synthesis studies
5. Organic Semiconductor & Molecular Engineering
Its rigid molecular skeleton makes it valuable for studying structure-property relationships in functional organic molecules.
Applications include:
- Molecular stability optimization
- Organic electronic material screening
- π-conjugated system design
- Functional molecule engineering
Advantages
- Rigid molecular framework
- Easy functionalization through methoxy groups
- Suitable organic synthesis building block
- Useful for advanced material design
- Supports molecular engineering studies
- Applicable to interdisciplinary research
Storage & Handling
- Store in a tightly sealed container.
- Keep in a dry and cool environment.
- Avoid prolonged exposure to moisture.
- Handle according to standard laboratory safety procedures.
Research Areas
- Organic synthesis
- Functional organic materials
- Organic electronics
- Molecular engineering
- Pharmaceutical chemistry
- Materials chemistry
- Advanced chemical intermediates
FAQ
What is 6,7-Dimethoxy-1,1,4,4-tetramethyl-1,2,3,4-tetrahydronaphthalene?
It is a methoxy-substituted tetrahydronaphthalene derivative used as an organic synthesis intermediate and functional molecular building block.
What is CAS 22825-00-9 used for?
CAS 22825-00-9 is mainly used in:
- Organic synthesis research
- Functional material development
- Molecular design studies
- Specialty chemical synthesis
Can this compound be used in organic electronic materials?
Yes. Its rigid aromatic framework makes it a useful structural component for designing functional organic molecules and advanced materials.
What are the key structural features of this compound?
The molecule contains:
- A tetrahydronaphthalene core
- Two methoxy groups
- Four methyl substituents
These structural elements provide steric stability and tunable molecular properties.
Is this product suitable for industrial production?
This compound is primarily supplied for research, development, and synthetic chemistry applications.
