High Purity 4,4',4''-(Benzene-1,3,5-triyltris(ethyne-2,1-diyl))tribenzoic Acid: Key MOF Linker from China Manufacturer

Discover the critical role of 4,4',4''-(benzene-1,3,5-triyltris(ethyne-2,1-diyl))tribenzoic acid (CAS 205383-17-1) in advanced materials synthesis. As a leading manufacturer and supplier in China, we offer this high-purity organic intermediate, essential for creating Metal-Organic Frameworks (MOFs) with exceptional porosity for gas storage, separation, and catalysis. Partner with us for reliable supply and technical expertise.

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Advantages of Sourcing from NINGBO INNO PHARMCHEM CO.,LTD.

Exceptional Purity and Consistency

Our 4,4',4''-(benzene-1,3,5-triyltris(ethyne-2,1-diyl))tribenzoic acid, meeting a ≥97% purity standard, guarantees consistent performance in your MOF synthesis, ensuring reproducible results for your research and production needs.

Enabling Advanced MOF Applications

As a key MOF linker, this compound is instrumental in creating materials with ultra-high porosity, vital for applications like advanced gas storage and efficient chemical separations. Purchase this intermediate to drive innovation.

Reliable Supply Chain from China

Benefit from our robust manufacturing capabilities and efficient logistics. We are a trusted supplier in China, committed to providing a stable and timely supply of critical chemical intermediates to global clients.

Key Applications for Our Organic Intermediate

Metal-Organic Frameworks (MOFs) Synthesis

Utilize this tribenzoic acid derivative as a fundamental building block to synthesize MOFs like MOF-180 and MOF-210, renowned for their exceptional surface area and pore volume.

Gas Adsorption and Storage

The resulting MOFs are highly effective for capturing and storing gases such as hydrogen, methane, and carbon dioxide, contributing to energy and environmental solutions.

Chemical Separations

Employ MOFs synthesized with this linker in advanced separation technologies, such as selective gas adsorption and liquid phase separations, offering higher efficiency than conventional methods.

Catalysis and Sensing

The unique porous structures of MOFs can be further functionalized for catalytic applications and the development of sensitive chemical sensors.