High Purity 1,4-Dioxaspiro[4.5]decane-2-methanol CAS 4167-35-5 for Organic Synthesis

Discover the critical role of 1,4-Dioxaspiro[4.5]decane-2-methanol (CAS 4167-35-5) as a premier organic synthesis intermediate. As a leading manufacturer and supplier in China, we offer high-purity white crystals essential for constructing complex organic molecules, driving innovation in pharmaceuticals and natural product synthesis. Get a quote and sample today to elevate your research and development.

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Advantages of Sourcing Our 1,4-Dioxaspiro[4.5]decane-2-methanol

Reliable Manufacturer & Supplier in China

Leverage our extensive production capacity and expertise as a leading China supplier to ensure consistent availability and competitive pricing for your 1,4-Dioxaspiro[4.5]decane-2-methanol needs. We are committed to quality and customer satisfaction.

Stringent Quality Control

Our white crystal product (CAS 4167-35-5) undergoes rigorous quality checks, guaranteeing the high purity required for demanding organic synthesis applications, including pharmaceutical intermediates.

Flexible Packaging and Delivery

We offer customizable packaging solutions, such as 25 Kg paper bags, and flexible delivery terms (FOB, EXW, CFR, CIF, DDP, CIP, CPT, FCA) to meet your specific logistics requirements. Inquire about wholesale pricing and purchase options.

Key Applications for Organic Synthesis

Pharmaceutical Synthesis

As a critical organic synthesis intermediate, 1,4-Dioxaspiro[4.5]decane-2-methanol is instrumental in the research and manufacturing of active pharmaceutical ingredients (APIs).

Total Synthesis of Natural Products

Facilitates the precise construction of complex molecular architectures for the total synthesis of valuable natural products in academic and industrial settings.

Advanced Organic Chemistry Research

Serves as a versatile building block in academic and industrial laboratories for exploring novel chemical reactions and developing new synthetic pathways.

Specialty Chemical Manufacturing

Utilized in the production of various specialty chemicals where its unique spirocyclic structure and hydroxyl functional group are advantageous.