Applications of 3-(4-Hydroxyphenyl)-1,1,3-trimethylindan-5-ol in Organic Synthesis
The field of organic synthesis is constantly seeking novel building blocks and intermediates that can enable the creation of complex molecules with tailored properties. 3-(4-Hydroxyphenyl)-1,1,3-trimethylindan-5-ol, identified by its CAS number 10527-11-4, stands out as a valuable compound with potential applications across various chemical disciplines. As a sophisticated organic intermediate, its unique structure offers chemists a platform for further functionalization and molecular design. This article explores the applications of this compound in organic synthesis and guides procurement specialists on how to effectively buy it from reputable sources.
Understanding the Chemical Structure and Reactivity
3-(4-Hydroxyphenyl)-1,1,3-trimethylindan-5-ol is a complex molecule featuring an indan skeleton substituted with hydroxyl and phenyl groups, along with several methyl groups. The presence of the phenolic hydroxyl group makes it susceptible to reactions like etherification, esterification, and electrophilic aromatic substitution on the phenyl ring. The indan system itself can undergo various transformations, depending on reaction conditions. This inherent reactivity makes it a versatile intermediate for synthesizing a wide array of more complex organic compounds. Researchers often look for this specific molecule when developing new materials, pharmaceuticals, or fine chemicals.
Applications in Research and Development
While its primary commercial application is noted in electronic chemicals, the structural attributes of 3-(4-Hydroxyphenyl)-1,1,3-trimethylindan-5-ol suggest broader utility in academic and industrial R&D settings:
- Pharmaceutical Intermediates: The phenolic hydroxyl group and the aromatic system could be leveraged in the synthesis of potential drug candidates or their precursors. Chemists might explore its incorporation into molecules targeting specific biological pathways.
- Material Science: Its rigid indan structure and functional groups could be of interest for developing new polymers, resins, or functional materials with unique optical or thermal properties.
- Specialty Organic Synthesis: As a complex building block, it can be employed in multi-step syntheses to construct intricate molecular architectures that are otherwise challenging to create.
For those looking to purchase CAS 10527-11-4 for R&D purposes, securing a reliable supplier is crucial. The ability to buy in smaller, research-oriented quantities without compromising on purity is a key requirement.
Sourcing from Trusted Manufacturers
When your research demands the use of 3-(4-Hydroxyphenyl)-1,1,3-trimethylindan-5-ol, partnering with a reputable manufacturer like Ningbo Inno Pharmchem Co., Ltd. ensures access to high-quality material. We understand the meticulous requirements of organic synthesis and provide CAS 10527-11-4 with the purity and specifications necessary for successful outcomes. Our commitment as a leading supplier means we can cater to both research quantities and larger production needs, offering competitive pricing and dedicated technical support. Contact us to discuss your specific project requirements and how we can facilitate your synthesis endeavors.
Perspectives & Insights
Molecule Vision 7
“3-(4-Hydroxyphenyl)-1,1,3-trimethylindan-5-ol, identified by its CAS number 10527-11-4, stands out as a valuable compound with potential applications across various chemical disciplines.”
Alpha Origin 24
“As a sophisticated organic intermediate, its unique structure offers chemists a platform for further functionalization and molecular design.”
Future Analyst X
“This article explores the applications of this compound in organic synthesis and guides procurement specialists on how to effectively buy it from reputable sources.”