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3,3'-(2-Methyl-1,3-phenylene)bis(1,1-dibutylurea)-(tetrabutyl-[d36])

General Information
Catalog: BLP-005714
Molecular Formula: C25D36H8N4O2
Molecular Weight: 468.86
Chemical Structure
3,3'-(2-Methyl-1,3-phenylene)bis(1,1-dibutylurea)-(tetrabutyl-[d36])
Description 3,3'-(2-Methyl-1,3-phenylene)bis(1,1-dibutylurea)-(tetrabutyl-[d36]) is intended for use as an internal standard for 3,3'-(2-Methyl-1,3-phenylene)bis(1,1-dibutylurea), which might be used as a plasticizer.
IUPAC Name 3-[3-[bis(1,1,2,2,3,3,4,4,4-nonadeuteriobutyl)carbamoylamino]-2-methylphenyl]-1,1-bis(1,1,2,2,3,3,4,4,4-nonadeuteriobutyl)urea
Related CAS (unlabelled)
Canonical SMILES CCCCN(CCCC)C(=O)NC1=C(C(=CC=C1)NC(=O)N(CCCC)CCCC)C
InChI InChI=1S/C25H44N4O2/c1-6-10-17-28(18-11-7-2)24(30)26-22-15-14-16-23(21(22)5)27-25(31)29(19-12-8-3)20-13-9-4/h14-16H,6-13,17-20H2,1-5H3,(H,26,30)(H,27,31)/i1D3,2D3,3D3,4D3,6D2,7D2,8D2,9D2,10D2,11D2,12D2,13D2,17D2,18D2,19D2,20D2
InChI Key QWVZCDYPULFREY-HIQGAEDASA-N
Purity 97% by CP; 98% atom D
Appearance Solid

3,3'-(2-Methyl-1,3-phenylene)bis(1,1-dibutylurea)-(tetrabutyl-[d36]) is a specialized chemical compound with unique properties suitable for various applications. Here are some key applications of this compound:

Material Science: This compound can be utilized in the development of advanced polymer materials, where its structural properties enhance durability and flexibility. By incorporating it into polymer matrices, researchers can design materials with improved mechanical strength and resistance to environmental stresses. This makes it an ideal candidate for use in coatings, adhesives, and high-performance composites.

Analytical Chemistry: In analytical chemistry, this compound serves as a valuable agent for studying reaction mechanisms and molecular interactions. Its unique isotopic labeling ([d36]) allows for detailed spectroscopic analysis using techniques such as NMR and mass spectrometry. This enables scientists to trace molecular pathways and resolve complex reaction intermediates with greater precision.

Pharmaceutical Development: The compound's specific chemical structure and properties make it a potential candidate for pharmaceutical research, particularly in drug formulation and delivery systems. Its ability to interact selectively with certain biological molecules can be exploited to enhance drug stability and bioavailability. This contributes to the creation of more effective therapeutic agents with tailored pharmacokinetics.

Environmental Science: In environmental science, this compound can be used as a tracer for studying pollution sources and environmental fate of chemical substances. Its stable isotopic composition permits long-term monitoring of dispersion patterns and degradation processes in natural ecosystems. As a result, it assists in developing strategies for pollution control and environmental remediation.

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