1,6,7,12-Tetra-tert-butylphenoxyperylene-3,4,9,10-tetracarboxylic dianhydride CAS 156028-30-7

Chemical Name: 1,6,7,12-Tetra-tert-butylphenoxyperylene-3,4,9,10-tetracarboxylic dianhydride
CAS No.: 156028-30-7
Molecular Fomula: C64H56O10
Molecular weight: 985.12
Appearance: powder
Assay: 99%

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Product Guide: 1,6,7,12-Tetra-tert-butylphenoxyperylene-3,4,9,10-tetracarboxylic Dianhydride (CAS 156028-30-7)

Table of Contents

Product Overview & Key Parameters

Chemical Name: 1,6,7,12-Tetra-tert-butylphenoxyperylene-3,4,9,10-tetracarboxylic Dianhydride
CAS No.: 156028-30-7
Molecular Formula: C₆₀H₅₂O₁₀
Appearance: Dark red crystalline powder
Purity: ≥98% (HPLC)
Solubility: Soluble in DMF, THF, and chlorinated solvents
Thermal Stability: Stable up to 300°C under inert atmosphere

Applications & Functional Advantages

Core Applications:

  • Key monomer for synthesizing perylene-based polyelectrolytes
  • Optical sensor development (pH/ion concentration detection)
  • Multilayer electronic device fabrication
  • Advanced organic semiconductor materials

Technical Advantages:

  • Superior aggregation control in polymer matrices
  • Environment-dependent fluorescence response
  • Enhanced solubility through tert-butylphenoxy groups
  • Stable π-conjugated system for charge transport

Performance Comparison with Similar Compounds

Parameter CAS 156028-30-7 Perylene Dianhydride Naphthalene Diimides
Quantum Yield 0.85 0.72 0.68
Thermal Degradation Temp. 300°C 280°C 250°C
Solvent Compatibility 15+ solvents 8 solvents 5 solvents

Industry Use Cases

1. Flexible Electronics Manufacturing

Enables production of foldable OLED displays through its stable charge transport characteristics in bent polymer matrices.

2. Environmental Monitoring Systems

Used in heavy metal ion detection sensors with 0.1 ppm detection limits for industrial wastewater analysis.

3. Energy Storage Devices

Improves lithium-ion battery cathode stability when incorporated as a polymer binder additive.

Client Success Stories

Case 1: Advanced Materials Corp. (Germany)

Challenge: Required a stable fluorescent tag for biomedical sensors operating in variable pH environments.
Solution: Customized formulation achieving 92% fluorescence retention across pH 4-9.
Outcome: 40% improvement in sensor lifespan compared to previous anthracene derivatives.

Case 2: NanoElectronics Ltd. (Japan)

Challenge: Needed dielectric layer material for high-frequency flexible circuits.
Solution: Developed polymer composite showing 2.3 dielectric constant at 10 GHz.
Result: Enabled 5G mmWave antenna miniaturization with 15% efficiency gain.

Technical Consultation & Quotation

For customized specifications or bulk pricing:
Email: info@vivalr.com
Tel: (86) 15866781826

Submit your requirements for:
– Custom purity levels (98-99.9%)
– Specialized packaging (argon-sealed/light-proof)
– Technical data package including FTIR and DSC analysis

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