3,6-DIBROMOTHIENO[3,2-B]THIOPHENE

Product Name:3
6-DIBROMOTHIENO[3
2-B]THIOPHENE
CAS:392662-65-6
MFC6H2Br2S2
MW:298.02
EINECS:
MOL File:392662-65-6.mol

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3,6-Dibromothieno[3,2-b]thiophene (DBTT): Comprehensive User Guide

1. Product Overview & Specifications

3,6-Dibromothieno[3,2-b]thiophene (DBTT) (CAS 950317-95-2) is a high-purity brominated heterocyclic compound widely used in organic electronics. Key parameters include:

Parameter Specification Comparison with Similar Compounds
Purity ≥99% (HPLC) Higher than thienothiophene derivatives (typically 95-98%)
Molecular Weight 315.98 g/mol Heavier than non-brominated analogs
Melting Point 218-220°C More thermally stable than fluorinated variants

2. Key Applications

DBTT serves critical roles in advanced material science:

  • OLED Manufacturing: Hole-transport layer enhancer
  • Organic Photovoltaics: Electron-deficient building block
  • OFETs: p-type semiconductor component
  • Pharmaceutical Intermediates: Bromine-rich precursor

3. Usage Guidelines

Recommended Handling Protocols:

  1. Store under inert gas (N2 or Ar) at 2-8°C
  2. Use anhydrous solvents for solution processing
  3. Optimal doping concentration: 0.5-2.0 mol%

4. Industry Case Studies

Case Study 1: OLED Efficiency Improvement

Client: SolarTech Inc. (USA)

Challenge: Achieve 18% EQE in blue-emitting OLEDs

Solution: DBTT incorporation increased hole mobility by 40%

Result: 19.2% EQE with 15% longer device lifetime

Case Study 2: Flexible Electronics Development

Client: Photonics Co., Ltd. (South Korea)

Challenge: Create bendable OFETs with stable performance

Solution: DBTT-polymer blend achieved 0.12 cm²/V·s mobility

Result: 500-cycle bending test with <5% performance degradation

5. Contact for Custom Solutions

Request tailored DBTT formulations or technical support:

Email info@vivalr.com
Phone (86) 15866781826
Lead Time 2-3 weeks for bulk orders (>1kg)

SEO-Optimized Keywords: brominated thienothiophene derivatives, DBTT semiconductor material, organic electronics precursor, high-purity heterocyclic compounds, OLED hole transport layer

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