Description
4-Pentylbiphenyl (CAS No. 7116-96-3) is a high-purity organic compound with the molecular formula C17H20 and IUPAC name 1-pentyl-4-phenylbenzene. This biphenyl derivative features a pentyl chain attached to the para position of one phenyl ring, making it a valuable intermediate in organic synthesis and material science. Our product is rigorously tested to ensure exceptional purity, suitable for research, pharmaceutical development, and advanced material applications. It is supplied in sealed containers under inert conditions to maintain stability and integrity. Ideal for researchers seeking reliable and well-characterized compounds for liquid crystal studies, organic electronics, or chemical synthesis.
Properties
- CAS Number: 7116-96-3
- Complexity: 182
- IUPAC Name: 1-pentyl-4-phenyl-benzene
- InChI: InChI=1S/C17H20/c1-2-3-5-8-15-11-13-17(14-12-15)16-9-6-4-7-10-16/h4,6-7,9-14H,2-3,5,8H2,1H3
- InChI Key: IFUOTAQBVGAZPR-UHFFFAOYSA-N
- Exact Mass: 224.156500638
- Molecular Formula: C17H20
- Molecular Weight: 224.34
- SMILES: CCCCCC1=CC=C(C=C1)C2=CC=CC=C2
- Monoisotopic Mass: 224.156500638
- Synonyms: 4-Pentylbiphenyl, 7116-96-3, 4-Pentyl-1,1′-biphenyl, 1-pentyl-4-phenylbenzene, Pentylbiphenyl, 1,1′-Biphenyl, 4-pentyl-, p-Pentylbiphenyl, Pentyl-1,1′-biphenyl, 1,1′-Biphenyl, pentyl-, ZTS9KSZ5HQ, 69856-10-6, P-AMYLBIPHENYL, EINECS 230-421-7, DTXSID3064566, NSC 4838, EINECS 274-163-3, DTXCID6046923, DTXSID201059400, 230-421-7, 274-163-3, 4-n-pentylbiphenyl, 4-Pentyl-1,1-Biphenyl, MFCD00009503, 4Pentylbiphenyl, 4-n-Amyldiphenyl, C17H20, 4-n-Amylbiphenyl, 4-Pentyl biphenyl, 4-Pentyl-biphenyl, UNII-ZTS9KSZ5HQ, 4-pentyl-1-phenylbenzene, 4-Pentylbiphenyl, 99%, 1-pentyl-4-phenyl-benzene, SCHEMBL981933, 4-Pentyl-1,1′-biphenyl #, SCHEMBL1203500, SCHEMBL5541710, SCHEMBL8081767, AKOS015839650, CS-W013061, AS-57836, SY048425, NS00037161, P1133, ST50827588, D92076
Application
4-Pentylbiphenyl is commonly used as a precursor in the synthesis of liquid crystalline materials due to its rigid biphenyl core and flexible alkyl chain. It serves as a key intermediate in organic electronics, particularly in the development of OLEDs and other optoelectronic devices. Researchers also utilize this compound in studying phase transitions and molecular self-assembly in soft matter systems.
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