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CAS 191-68-4

Dibenzo[g,p]chrysene TCI D3736

Dibenzo[g,p]chrysene TCI D3736
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TCI D3736, also known as Dibenzo[g,p]chrysene, is a polycyclic aromatic hydrocarbon built on a chrysene skeleton that has been extended by two additional benzene units, forming a large conjugated system with a distinctive butterfly-like shape. In the laboratory, this compound is classified as a non-heterocyclic building block and is used primarily in organic electronic materials research. Its rigid and not perfectly planar framework makes it attractive as the core of functional molecules rather than merely an ordinary synthetic intermediate, because its three-dimensional geometry helps determine solid-state behaviour.

The properties that make this material a preferred choice are the high thermal and chemical stability characteristic of fused aromatic hydrocarbons, together with a wide energy gap and luminescent behaviour in the blue wavelength region. Because the molecular shape is not entirely flat, the intermolecular stacking tendency that normally quenches emission is suppressed, so the compound is frequently studied as a host material or an emitter material in organic light-emitting diode devices. Its aromatic framework can also be functionalised further to tune solubility and optoelectronic properties according to research requirements.

In Indonesian laboratories, this building block is typically handled in university and institutional research groups working on organic electronic and photophysical materials, where a well-defined aromatic core is needed as a starting point for further synthesis and characterisation. It is normally used at small research scale, drawn from a stock of catalogue building blocks, and combined with standard synthetic, spectroscopic, and thin-film characterisation work rather than routine analytical testing.

  • Organic light-emitting diode host materials — the wide energy gap and high thermal stability allow the compound to accommodate guest emitters while withstanding device fabrication and operating conditions.
  • Blue-region emitter research — luminescence in the blue wavelength region combined with suppressed intermolecular stacking makes it a useful candidate for emissive layer studies in organic devices.
  • Non-heterocyclic building block synthesis — the extended chrysene framework serves as a rigid aromatic core that can be functionalised further to build larger, purpose-designed molecules.
  • Solubility and optoelectronic property tuning — the aromatic skeleton accepts additional substituents, letting researchers systematically adjust processability and electronic behaviour for their own material designs.
  • Solid-state and photophysical characterisation studies — the non-planar, butterfly-shaped geometry influences packing behaviour, making it a valuable model system for relating molecular shape to solid-state properties.

Brand TCI
CAS number 191-68-4
Molecular formula
Purity
Category Chemistry > Building Blocks > Non-Heterocyclic Building Blocks
Pack sizes available in standard research-scale catalogue pack sizes; please confirm the current option when ordering
Physical form
Storage store in a tightly closed container in a cool, dry, well-ventilated place away from light
  • Chemical name: Dibenzo[g,p]chrysene

Store the container tightly closed in a cool, dry, and well-ventilated area, protected from direct sunlight and away from heat sources and strong oxidising agents. Keep the material in its original supplier container or in a clean, chemically compatible amber glass container to limit light and moisture exposure, and label any transferred portions clearly. Handle the solid inside a fume hood or with adequate local ventilation to avoid generating and inhaling dust, and wear a laboratory coat, safety glasses, and suitable chemical-resistant gloves. As with all polycyclic aromatic hydrocarbons, minimise skin contact, avoid dispersing powder, clean work surfaces after use, and collect residues and contaminated consumables as chemical waste in accordance with your institution's procedures and the supplier's safety data sheet.