High-Quality 2-Chlorotrityl Chloride Resin for Efficient Solid-Phase Peptide Synthesis | Supplier

Discover the advantages of 2-Chlorotrityl Chloride Resin, a critical component for advanced solid-phase peptide synthesis and organic chemistry. Experience unparalleled efficiency and mild cleavage for your complex molecular constructions.

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Advantages Offered

Mild Acid Cleavage

The key advantage of our 2-Chlorotrityl Chloride Resin lies in its ability to cleave synthesized compounds under extremely mild acidic conditions. This is vital for maintaining the integrity of acid-sensitive protecting groups and complex molecular structures, a critical factor when preparing protected peptide fragments.

Reduced Side Reactions

The steric bulk of this resin effectively inhibits diketopiperazine (DKP) formation, a common side reaction in peptide synthesis, especially with C-terminal proline. This characteristic contributes significantly to cleaner reactions and higher yields, supporting efficient solid-phase peptide synthesis.

Broad Applicability

While exceptionally useful for Solid-Phase Peptide Synthesis (SPPS), the 2-Chlorotrityl Chloride Resin is also a versatile tool for oligonucleotide synthesis and the preparation of various small organic molecules, showcasing its broad utility in chemical research and development.

Key Applications

Solid-Phase Peptide Synthesis (SPPS)

Used for the preparation of protected peptide fragments via the Fmoc/tBu strategy, benefiting from mild cleavage and reduced side reactions in solid-phase peptide synthesis.

Organic Synthesis

Serves as a valuable solid support and protecting group reagent for carboxylic acids, facilitating the synthesis of diverse small organic molecules.

Drug Discovery

Enables the synthesis of small-molecule libraries, making it a critical component in early-stage drug discovery and development processes.

Chemical Research

A versatile reagent for academic and industrial research, supporting various synthetic methodologies requiring acid-labile solid supports.