4,4'-DI-PHENYL-TETRATHIAFULVALENE
4,4'-DI-PHENYL-TETRATHIAFULVALENE Basic information
- Product Name:
- 4,4'-DI-PHENYL-TETRATHIAFULVALENE
- Synonyms:
-
- 4,4'-DIPHENYL-[2,2']BIS[[1,3]DITHIOLYLIDENE]
- 4,4'-DI-PHENYL-TETRATHIAFULVALENE
- 4,4'-DIPHENYLTETRATHIAFULVALENE, TECH.
- 4,4'-Diphenyltetrathiafulvalene(mixture of cis- and trans-)
- 1,3-Dithiole, 4-phenyl-2-(4-phenyl-1,3-dithiol-2-ylidene)-
- 4,4-Diphenyltetrathiafulvalene in toluene
- 4,4′-Diphenyltetrathiafulvalene, CAS 5152-94-3
- CAS:
- 5152-94-3
- MF:
- C18H12S4
- MW:
- 356.55
- Product Categories:
-
- electronic
- Heterocyclic Compounds
- Heterocyclic Building Blocks
- Others
- S-Containing
- Mol File:
- 5152-94-3.mol
4,4'-DI-PHENYL-TETRATHIAFULVALENE Chemical Properties
- Melting point:
- 204-206 °C (lit.)
- form
- solid
- InChI
- 1S/C18H12S4/c1-3-7-13(8-4-1)15-11-19-17(21-15)18-20-12-16(22-18)14-9-5-2-6-10-14/h1-12H/b18-17-
- InChIKey
- UXYULNILNJCKTO-ZCXUNETKSA-N
- SMILES
- S1C=C(S\C1=C2\SC=C(S2)c3ccccc3)c4ccccc4
MSDS
- Language:English Provider:SigmaAldrich
4,4'-DI-PHENYL-TETRATHIAFULVALENE Usage And Synthesis
Uses
4,4′-Diphenyltetrathiafulvalene (DPTTF) is a heterocyclic building block. Formation of binary-component self-assembled monolayer (SAM) of DPTTF and n-tetradecane molecules with periodic strip-like phase separation structures on a highly oriented pyrolytic graphite surface has been reported. DPTTF capped gold nanoparticles having 3 to 5nm diameter have been prepared. FT-SERS studies of DPTTF adsorbed on chemically deposited silver films and excited with near infrared radiation have been reported.
General Description
4,4′-Diphenyltetrathiafulvalene (DPTTF) is a heterocyclic building block. Formation of binary-component self-assembled monolayer (SAM) of DPTTF and n-tetradecane molecules with periodic strip-like phase separation structures on a highly oriented pyrolytic graphite surface has been reported. DPTTF capped gold nanoparticles having 3 to 5nm diameter have been prepared. FT-SERS studies of DPTTF adsorbed on chemically deposited silver films and excited with near infrared radiation have been reported.
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