High-Purity Tetrathiafulvalene-3,4,5,6-tetrakis(4-benzoic Acid) (H4TTFTB) for Advanced Material Synthesis

Discover the exceptional properties of Tetrathiafulvalene-3,4,5,6-tetrakis(4-benzoic Acid), a premier linker for Metal-Organic Frameworks (MOFs) and Covalent Organic Frameworks (COFs). As a leading manufacturer and supplier, we offer this critical building block to empower your material science innovations. Explore its applications in catalysis, gas storage, and advanced electronic devices.

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Key Advantages of Our H4TTFTB

Superior Synthesis Capability

Our Tetrathiafulvalene-3,4,5,6-tetrakis(4-benzoic Acid) is engineered to function effectively as a linker, enabling the creation of highly ordered and porous MOF and COF structures. Rely on our manufacturer expertise to buy a consistent and reliable supply.

Enhanced Material Properties

The tetrathiafulvalene core imparts unique electronic and structural properties to the resulting frameworks. This makes our H4TTFTB an ideal choice for applications demanding high charge mobility and specific adsorption capabilities, giving you a competitive edge.

Cost-Effective Sourcing

As a leading supplier in China, we offer competitive pricing on Tetrathiafulvalene-3,4,5,6-tetrakis(4-benzoic Acid). Procuring from us ensures you receive high-quality materials without compromising your budget, facilitating bulk purchases for your R&D or production needs.

Broad Application Spectrum

Gas Storage and Separation

Explore the potential of MOFs synthesized with our H4TTFTB for efficient gas storage and separation, a key area for our customers seeking advanced material solutions.

Catalysis

Our Tetrathiafulvalene-3,4,5,6-tetrakis(4-benzoic Acid) is instrumental in developing heterogeneous catalysts with enhanced activity and selectivity, crucial for optimizing chemical processes.

Organic Electronics

Investigate the use of H4TTFTB-based materials in organic electronic devices, benefiting from their excellent electron-accepting properties for improved performance.

Drug Delivery Systems

Discover the application of MOFs derived from our product in controlled drug release and biomedical imaging, leveraging their porous structure for advanced therapeutic applications.