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Synthetic building blocks are functional molecular units with specific reactivity properties that can participate in the synthesis of various compounds as structural modules. They provide predictable reaction sites and connection modes, and enable the construction of complex molecular structures through modular combination.
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Fluorinated Building Blocks
Fluorination is a chemical process that introduces fluorine atoms into organic compounds and is a core method for the synthesis of fluorine-containing functional materials and drugs. Various transformation modes, such as fluoroalkylation and fluorosulfonation, can be achieved through transition metal catalysis and free radical mechanisms.
We also provide a variety of perfluorinated and F-labeled synthetic building blocks, as well as fluorinated organometallic substrates. In addition, we possess a wide range of general-purpose and unique fluorinating reagents.
Halogenated Heterocycles
The reaction in which halogen atoms are introduced into an organic compound molecule to form a carbon-halogen bond, resulting in a halogen-containing compound, is called halogenation. Depending on the type of halogen atom introduced, halogenation reactions can be classified into chlorination, bromination, iodination, and fluorination. Chlorination and bromination are the most commonly used, with chlorination having the widest range of applications.
Heterocyclic Building Blocks
Heterocyclic compounds are organic compounds whose molecules contain heterocyclic structures. In addition to carbon atoms, the rings contain at least one heteroatom. They are the most numerous class of organic compounds. The most common heteroatoms are nitrogen, sulfur, and oxygen. They can be divided into two main categories: alicyclic and aromatic heterocyclic compounds. Heterocyclic compounds are ubiquitous in the structures of drug molecules.
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Organic Building Blocks
Organic building blocks are organic compounds with active functional groups. They are primarily used in drug development and for the bottom-up modular construction of other organic molecular structures, metal-organic frameworks, and supramolecular complexes. Using building blocks in organic synthesis ensures strict control over the final compound.
These building blocks play a fundamental role in medicinal chemistry, organic chemistry, and materials chemistry, providing high-quality supramolecular complexes, metal-organic frameworks, organic molecular structures, and nanoparticles.
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