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Wholesale 2, 5- Bis (aminomethyl) tetrahydrofuran (BAMTHF)

2, 5- Bis (aminomethyl) tetrahydrofuran (BAMTHF)

2, 5- Bis (aminomethyl) tetrahydrofuran (BAMTHF)

BAMTHF is a nitrogen-containing fine chemical obtained from HMF reduction amination. It can be used as raw material and intermediate of medicine, flavor, epoxy resin curing agent, etc., and can also be used to prepare bio-based polyesters and special functional polymeric materials.

+86-13616880147 ( Zoe ) / +86-13486070903 ( Lily ) [email protected] / [email protected] Contact Us
  • Physical and chemical properties of the product
  • Product Name
    2, 5- Bis(aminomethyl)tetrahydrofuran
    CAS No.
    66918-21-6 / 781607-29-2
    Molecular Formula
    C6H14N20
    Molecular Weight
    130.19
    Melting Point
    N/A
    Boiling Point
    56℃(Fress: 0.26 Torr)
    Relative Density 1.007士0.06 g/ml(Predicted)
  • Application fields
  • Chemical industry: Bio based polymer materials, Food additives

    Pharmaceutical industry: Pharmaceutical intermediates

    Agriculture: Pesticides

    Fine chemical industry: Spices

about Sugar Energy Technology

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Zhejiang Sugar Energy Technology Co., Ltd.

Founded in 2017, Zhejiang Sugar Energy Technology Co., Ltd. (Sugar Energy Technology) is a professional China 2, 5- Bis (aminomethyl) tetrahydrofuran (BAMTHF) Manufacturers and Wholesale 2, 5- Bis (aminomethyl) tetrahydrofuran (BAMTHF) Suppliers. And is a national high-tech enterprise co-founded by Ningbo Institute of Materials, Chinese Academy of Sciences. It is global in the research and development, production, and sales of bio-based furan new materials. The main body system of the furan material chain of "1 high-end raw material +5 platform molecules +N high-value products" has been formed, and it is determined to become the company of bio-based materials with the innovative vitality and feelings for the people.
The main product of Sugar Energy Technology 5- hydroxymethylfurfural(HMF)is derived from a wide range of biomass raw materials(starch, cellulose, sucrose, AGAR, etc.), with a scarce bioactive functional group and aromatic structure, which can not only help other biobased materials improve performance but also contribute a broader modification space for traditional fossil-based products.
With the mission of "shaping the beauty of biology and evolving the source of materials", Sugar Energy Technology adheres to the vision of "allowing everyone to enjoy the ultra-affordable bio-based materials", and breaks the waves to the green, sustainable, and beautiful future without limits!

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    HMF market share

  • 0years

    R&D experience

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    Invention patent

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2, 5- Bis (aminomethyl) tetrahydrofuran (BAMTHF) Industry knowledge

1.What is 2,5-Bis(aminomethyl)tetrahydrofuran (BAMTHF) and How is it Produced?


2,5-Bis(aminomethyl)tetrahydrofuran (BAMTHF) is a nitrogen-containing fine chemical that has garnered significant attention in recent years due to its versatility and broad range of applications. This compound is synthesized through the reduction amination of hydroxymethylfurfural (HMF), a process that involves the conversion of HMF—a key platform chemical derived from biomass—into BAMTHF. This transformation not only adds value to biomass-derived chemicals but also provides a pathway for producing nitrogen-containing compounds that are essential in various industrial applications.
The synthesis of BAMTHF typically involves the use of catalysts and specific reaction conditions that facilitate the reduction of HMF and subsequent amination to yield the desired product. The process is highly controlled to ensure that the BAMTHF produced is of high purity, which is critical for its use in sensitive applications such as pharmaceuticals and specialty polymers. Zhejiang Sugar Energy Technology Co., Ltd. has developed expertise in this area, employing state-of-the-art technology and rigorous quality control measures to produce BAMTHF at an industrial scale. Our commitment to innovation and excellence ensures that our BAMTHF meets the stringent demands of our customers across different sectors.

2.What are the Applications of BAMTHF in the Pharmaceutical and Polymer Industries?


BAMTHF is a highly versatile compound with a wide range of applications, particularly in the pharmaceutical and polymer industries. Its nitrogen-containing structure makes it an ideal intermediate for synthesizing various active pharmaceutical ingredients (APIs). In pharmaceutical applications, BAMTHF can be used to produce compounds that require specific functional groups to enhance their biological activity or stability. The presence of aminomethyl groups in BAMTHF allows for the formation of amide bonds, which are a common feature in many drug molecules.
In addition to its role in drug synthesis, BAMTHF is also used in the production of flavors and fragrances. The compound's ability to undergo further chemical transformations makes it a valuable precursor for creating complex molecules that contribute to the aroma and taste profiles of various products. This versatility in chemical reactivity is one of the reasons why Zhejiang Sugar Energy Technology Co., Ltd. has focused on BAMTHF as a key product in our portfolio. Our expertise in producing high-purity BAMTHF ensures that it meets the stringent requirements of the pharmaceutical and flavor industries.
Beyond pharmaceuticals and flavors, BAMTHF is also widely used as an epoxy resin curing agent. Epoxy resins are essential components in the production of high-performance coatings, adhesives, and composites. The curing process, which involves the cross-linking of polymer chains, is crucial for achieving the desired mechanical and chemical properties of the final product. BAMTHF, with its reactive aminomethyl groups, facilitates this cross-linking process, resulting in epoxy resins with enhanced durability, chemical resistance, and thermal stability. At Zhejiang Sugar Energy Technology Co., Ltd., we understand the importance of high-quality curing agents in the production of advanced materials, and we are proud to supply BAMTHF to manufacturers seeking to improve their products' performance.

3.Why is BAMTHF Considered a Sustainable Choice for Bio-Based Polyesters?


As the global chemical industry continues to seek more sustainable and environmentally friendly alternatives to traditional materials, bio-based polyesters have emerged as a promising solution. BAMTHF is a key component in the production of these polyesters, providing a sustainable and versatile building block that can be used to create high-performance polymers with reduced environmental impact.
Bio-based polyesters, unlike their petroleum-based counterparts, are derived from renewable resources, which significantly reduces their carbon footprint. BAMTHF, produced from HMF—a compound that can be sourced from biomass—aligns perfectly with this sustainable approach. The use of BAMTHF in polyester production not only contributes to the development of greener materials but also supports the broader goal of reducing dependence on fossil fuels in the chemical industry.
Zhejiang Sugar Energy Technology Co., Ltd. is deeply committed to sustainability and innovation. We recognize the importance of developing materials that not only meet the performance requirements of modern applications but also contribute to a more sustainable future. Our BAMTHF is produced with a focus on minimizing environmental impact, from the selection of raw materials to the optimization of production processes. By integrating BAMTHF into the production of bio-based polyesters, we are helping to pave the way for the next generation of sustainable materials.
The polyesters derived from BAMTHF exhibit unique properties that make them suitable for a wide range of applications, including packaging, textiles, and automotive components. These materials offer excellent mechanical strength, thermal stability, and chemical resistance, making them competitive with traditional polymers while offering the added benefit of being more environmentally friendly. Zhejiang Sugar Energy Technology Co., Ltd. continues to work closely with our partners to explore new applications for BAMTHF-based polyesters, ensuring that we remain at the cutting edge of sustainable material development.