Cas no 16940-17-3 (Borate(1-),hydrotrimethoxy-, sodium (1:1), (T-4)-)

Borate(1-),hydrotrimethoxy-, sodium (1:1), (T-4)- structure
16940-17-3 structure
Product Name:Borate(1-),hydrotrimethoxy-, sodium (1:1), (T-4)-
CAS No:16940-17-3
MF:
MW:
CID:216189
PubChem ID:3084262
Update Time:2025-07-18

Borate(1-),hydrotrimethoxy-, sodium (1:1), (T-4)- Chemical and Physical Properties

Names and Identifiers

    • Borate(1-),hydrotrimethoxy-, sodium (1:1), (T-4)-
    • SODIUM TRIMETHOXYBOROHYDRIDE
    • TRIMETHOXY SODIUM BOROHYDRIDE TECH. GRADE
    • sodium hydrotrimethoxyborate(1-)
    • Sodium trimethoxyhydroborate
    • TRIMETHOXY SODIUM BOROHYDRIDE
    • SODIUM TRIMETHOXYBOROHYDRIDE, TECH.
    • SODIUM TRIMETHOXYBOROHYDRIDE TECHNICAL
    • Sodium trimethoxyborohydride technical grade
    • Trimethoxysodium borohydride Tech. Grade
    • sodium;trimethoxyboranuide
    • EINECS 241-003-9
    • NTDOFGWTIAZCKE-UHFFFAOYSA-N
    • Borate (1-), hydrotrimethoxy-, sodium
    • DTXSID10937631
    • Sodium hydrido[tris(methanolato)]borate(1-)
    • 16940-17-3
    • AI3-61016
    • Inchi: 1S/C3H10BO3.Na/c1-5-4(6-2)7-3;/h4H,1-3H3;/q-1;+1
    • InChI Key: NTDOFGWTIAZCKE-UHFFFAOYSA-N
    • SMILES: [B+3]([H-])([O-]C)([O-]C)[O-]C.[Na+]

Computed Properties

  • Exact Mass: 127.05400
  • Monoisotopic Mass: 128.0620686g/mol
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 0
  • Hydrogen Bond Acceptor Count: 4
  • Heavy Atom Count: 8
  • Rotatable Bond Count: 0
  • Complexity: 36
  • Covalently-Bonded Unit Count: 2
  • Defined Atom Stereocenter Count: 0
  • Undefined Atom Stereocenter Count : 0
  • Defined Bond Stereocenter Count: 0
  • Undefined Bond Stereocenter Count: 0
  • Surface Charge: 0
  • Tautomer Count: nothing
  • XLogP3: nothing
  • Topological Polar Surface Area: 27.7?2

Experimental Properties

  • Color/Form: White powder
  • PSA: 27.69000
  • LogP: -0.08950
  • Solubility: Soluble in CH2Cl2 and most organic solvents, often used in CH2Cl2 and THF solvents

Borate(1-),hydrotrimethoxy-, sodium (1:1), (T-4)- Security Information

  • Hazardous Material transportation number:UN 3396 4
  • WGK Germany:3
  • Hazard Category Code: 11-15-36/37/38
  • Safety Instruction: S16; S26; S33; S36/37/39; S43
  • Hazardous Material Identification: Xi F
  • HazardClass:4.3
  • PackingGroup:II
  • Safety Term:4.3
  • Packing Group:II
  • Risk Phrases:R11
  • Packing Group:II
  • Hazard Level:4.3

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Borate(1-),hydrotrimethoxy-, sodium (1:1), (T-4)- Related Literature

Additional information on Borate(1-),hydrotrimethoxy-, sodium (1:1), (T-4)-

Borate(1-), Hydrotrimethoxy-, Sodium (1:1), (T-4)- (CAS No. 16940-17-3): An Overview of Its Properties, Applications, and Recent Research

Borate(1-), hydrotrimethoxy-, sodium (1:1), (T-4)- (CAS No. 16940-17-3) is a versatile inorganic compound with a wide range of applications in various fields, including materials science, pharmaceuticals, and environmental chemistry. This compound, commonly referred to as sodium trimethoxyborate, is a white crystalline solid that is highly soluble in water and exhibits excellent stability under a variety of conditions. Its unique chemical structure and properties make it an essential component in numerous industrial and research applications.

The chemical formula of sodium trimethoxyborate is NaB(OCH3)3. It consists of a borate ion coordinated with three methoxy groups and a sodium ion. The methoxy groups contribute to the compound's solubility and reactivity, making it suitable for use in various chemical reactions and processes. The compound's high solubility in water and polar organic solvents facilitates its use in aqueous solutions and organic synthesis.

One of the key applications of sodium trimethoxyborate is in the synthesis of boron-containing materials. Boron compounds are widely used in the production of ceramics, glass, and advanced materials due to their unique physical and chemical properties. Sodium trimethoxyborate serves as an excellent precursor for the preparation of boron-containing materials through sol-gel processes and other synthetic methods. Its reactivity with various functional groups allows for the creation of complex boron-containing structures with tailored properties.

In the pharmaceutical industry, sodium trimethoxyborate has gained attention for its potential use in drug delivery systems. Recent research has explored the use of boron compounds as carriers for targeted drug delivery, particularly in cancer therapy. The ability to form stable complexes with drug molecules and release them under specific conditions makes sodium trimethoxyborate a promising candidate for developing novel drug delivery systems. Studies have shown that boron-containing compounds can enhance the efficacy and reduce the toxicity of certain drugs, making them valuable components in pharmaceutical formulations.

Environmental chemistry is another area where sodium trimethoxyborate has found significant application. Boron compounds play a crucial role in environmental remediation processes, particularly in the treatment of contaminated soils and water. Sodium trimethoxyborate can be used to immobilize heavy metals and other contaminants by forming stable complexes that prevent their migration into the environment. This property makes it an effective agent for environmental remediation and pollution control.

Recent advancements in materials science have also highlighted the potential of sodium trimethoxyborate in the development of functional materials. Researchers have explored its use in the synthesis of boron-doped graphene and other two-dimensional materials with enhanced electrical and mechanical properties. These materials have shown promise in applications such as energy storage, electronics, and catalysis. The ability to control the boron content and distribution within these materials through the use of sodium trimethoxyborate opens up new possibilities for designing advanced functional materials with tailored properties.

In addition to its practical applications, sodium trimethoxyborate has been the subject of extensive research to understand its fundamental chemical properties and reactivity. Studies have investigated its behavior under different reaction conditions, including temperature, pressure, and solvent effects. These investigations have provided valuable insights into the mechanisms of boron-containing compound formation and transformation, contributing to the development of new synthetic strategies and methodologies.

The safety profile of sodium trimethoxyborate is an important consideration for its widespread use. While it is generally considered safe when handled properly, precautions should be taken to avoid exposure to high concentrations or prolonged contact with skin or eyes. Proper storage and handling procedures are essential to ensure its safe use in both industrial and laboratory settings.

In conclusion, Borate(1-), hydrotrimethoxy-, sodium (1:1), (T-4)- (CAS No. 16940-17-3) is a multifaceted compound with a broad range of applications across various fields. Its unique chemical structure and properties make it an essential component in materials science, pharmaceuticals, environmental chemistry, and other areas. Ongoing research continues to uncover new possibilities for its use, further expanding its potential impact on science and technology.

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