In the realm of advanced organic chemistry and pharmaceutical research, the availability of highly pure and specialized building blocks is indispensable. Indazole derivatives, characterized by their unique fused ring structure, play a pivotal role in the synthesis of a wide array of bioactive molecules. Among these, (E)-3-[2-(Pyridin-2-yl)ethenyl]-1-(tetrahydro-2H-pyran-2-yl)-1H-indazol-6-amine (CAS 886230-76-8) has emerged as a valuable compound for custom synthesis projects and the development of novel chemical entities.
For R&D scientists and custom synthesis providers, sourcing high-purity indazole derivatives is often a bottleneck in their research pipelines. The compound, with its molecular formula C19H20N4O and molecular weight of 320.39, offers a complex heterocyclic scaffold that can be further functionalized to create diverse chemical libraries. Its utility extends beyond specific drug synthesis, making it a sought-after reagent for exploring new chemical space.
When seeking to purchase this specific indazole derivative, buyers often look for manufacturers in China that can consistently deliver materials with high purity, typically 99% or greater. The competitive landscape of chemical suppliers in China means that obtaining a quote for this intermediate is relatively straightforward. However, selecting the right supplier involves more than just comparing prices. It requires an understanding of their synthetic capabilities, quality control processes, and their ability to scale up production if needed for larger custom synthesis projects.
The search for 'high purity indazole derivative supplier' or 'CAS 886230-76-8 for custom synthesis' will highlight several manufacturers. It is prudent for buyers to engage with these suppliers to discuss their specific requirements. This includes clarifying the exact purity specifications, potential impurities, and the available quantities. Building a rapport with a reliable manufacturer can streamline the procurement process, ensuring timely delivery of materials essential for research and development.
Moreover, the increasing demand for specialized chemical intermediates fuels innovation in synthetic methodologies. Manufacturers who invest in advanced synthesis techniques and robust analytical methods are better positioned to meet the exacting standards of the research community. For any organization undertaking custom synthesis projects that require intricate heterocyclic structures, sourcing from dependable suppliers of indazole derivatives like (E)-3-[2-(Pyridin-2-yl)ethenyl]-1-(tetrahydro-2H-pyran-2-yl)-1H-indazol-6-amine is a strategic imperative for successful project completion.
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