The specialty chemicals sector is increasingly focused on compounds that offer defined molecular structures, predictable properties, and potential value in research and material development. Among these specialized substances, 2,3-dimethyl-2,3-diphenylbutane continues to attract attention because of its distinctive hydrocarbon structure and relevance to organic chemistry, polymer-related research, and chemical studies.
What Makes This Compound Significant?
This compound, identified by CAS No. 1889-67-4, has the molecular formula C18H22 and a molecular weight of approximately 238.37 g/mol. It contains a highly substituted carbon framework with two phenyl groups, giving it a distinctive molecular arrangement and physical characteristics. Commercial laboratory references describe it as a solid available in forms including crystalline powder, flakes, or chunks.
Its structural characteristics make it useful when researchers need to examine how molecular size, steric effects, and aromatic groups influence chemical behavior.
Where Can It Be Relevant?
The compound has relevance in several specialized areas, including:
Organic chemistry research
Polymer and materials studies
Reaction mechanism investigations
Molecular structure and stability research
Specialty chemical development
Laboratory-scale synthesis and characterization
Chemical databases also associate the compound with applications involving polymer-processing research. One reported example involves its role in initiating the use of diallyl orthophthalate as a reactive plasticizer for improving polyphenylene oxide processing.
Important Properties at a Glance
For researchers and industrial buyers, understanding basic specifications is an important part of material selection.
CAS Number: 1889-67-4
Molecular Formula: C18H22
Molecular Weight: 238.37 g/mol
Physical Form: Crystalline powder, flakes, or chunks
Appearance: White to light yellow
Water Solubility: Insoluble
Melting Range: Approximately 90–110°C in reported commercial data
Actual specifications should always be confirmed through the supplier's current technical documentation and Certificate of Analysis.
Why Quality and Documentation Matter
Specialty chemicals used in research and industrial development require consistent specifications. Buyers should evaluate purity, batch consistency, packaging, storage requirements, technical documentation, and intended application before procurement.
A reliable supply chain can also help laboratories and manufacturers maintain repeatable experimental or production results. Proper labeling, handling instructions, and safety documentation are equally important for responsible chemical management.
Safety Should Remain a Priority
Although the compound may be supplied for research and specialty applications, handling should follow the applicable Safety Data Sheet and workplace procedures. Available safety references identify precautionary measures involving exposure control and appropriate personal protective equipment.
Key Buyer Checklist
Before purchasing, consider:
Required purity and specification
Intended research or manufacturing application
Packaging quantity
Storage conditions
COA and SDS availability
Supplier consistency and technical support
Supporting Specialty Chemical Requirements
As research and advanced materials development continue to evolve, specialized organic compounds can contribute to a better understanding of molecular behavior and processing technologies. For laboratories, researchers, and industrial users seeking dependable sourcing and product information, zhufengchemical provides specialty chemical solutions aligned with diverse research and application requirements.