Product Introduction
Borane (BH₃) is a highly reactive chemical compound widely used in organic synthesis and industrial applications. Known for its reducing properties, Borane plays a crucial role in chemical reactions such as hydroboration, which adds boron to alkenes, aiding in the production of various organic compounds. It is a valuable tool in pharmaceutical synthesis, material science, and fine chemical manufacturing. Due to its versatility and reactivity, Borane is essential for producing high-value products in diverse industries.
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2,6-Diisopropylphenylboronic Acid丨CAS 363166-79-4Catalog No.: SS087879. CAS No.: 363166-79-4. Purity(HPLC): 98.0% min. . Product Name: 2,6-Diisopropylphenylboronic acid. Molecular Formula: C12H19BO2. Molecular Weight: 206.09.read more
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Bis(pinacolato)borylmethane丨CAS 78782-17-9Catalog No.: SS043040. CAS No.: 78782-17-9 . Purity(GC): 98%min. Product Name: Bis(pinacolato)borylmethane. Molecular Formula: C13H26B2O4 . Molecular Weight: 267.97. Synonym(s): Bis(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)methane.read more
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Borane-2-picoline Complex丨CAS 3999-38-0Catalog No.: SS024293 . CAS No.: 3999-38-0. Assay(hydrogen evolution): 98.5-101.5% . Product Name: Borane-2-picoline complex. Molecular Formula: C6H10BN. Molecular Weight: 106.96. Synonym(s): Trihydro(2-methylpyridine)-boron .read more
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Tert-Butyl 4-[4-(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2...Catalog No.: SS113456. CAS No.: 877399-74-1. Purity: 99% min . Product Name: tert-Butyl 4-[4-(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)-1H-pyrazol-1-yl]piperidine-1-carboxylate. Molecular Formula: C19H32BN3O4. Molecular Weight: 377.29 .read more
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(R)-BoroLeu-(+)-Pinanediol Trifluoroacetate丨CAS 179324-87-9Catalog No.: SS132034. CAS No.: 179324-87-9. Assay (calculated by free alkali): 66-72% . Product Name: (R)-BoroLeu-(+)-Pinanediol trifluoroacetate. Molecular Formula: C15H28BNO2.C2HF3O2. Molecular Weight: 379.23. Synonym(s):read more
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3-Methyl-4-(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)b...Catalog No.: SS018950 . CAS No.: 269409-74-7. Assay(GC): 98%min. Product Name: 3-Methyl-4-(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)benzoic acid. Molecular Formula: C14H19BO4. Molecular Weight: 262.11 .read more
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P-Carborane丨CAS 20644-12-6Catalog No.: SS120479 . CAS No.: 20644-12-6. Purity: 98.0%min.. Product Name: p-Carborane. Molecular Formula: C2H12B10. Molecular Weight: 144.23 . Synonym(s): 1,12-Dicarbadodecaborane(12).read more
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M-Carborane丨CAS 16986-24-6Catalog No.: SS119833. CAS No.: 16986-24-6. Assay: 97%min . Product Name: m-Carborane. Molecular Formula: C2H12B10. Molecular Weight: 144.22. Synonym(s): 1,7-Dicarbadodecaborane(12).read more
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O-Carborane丨CAS 16872-09-6Catalog No.: SS065100. CAS No.: 16872-09-6. Assay: 98.0%min. . Product Name: o-Carborane. Molecular Formula: C2H12B10. Molecular Weight: 144.22 . Synonym(s): 1,2-Dicarbadodecaborane(12).read more
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Borane-triethylamine Complex丨CAS 1722-26-5Catalog No.: SS114390. CAS No.: 13774-81-7. Assay: 96%~102%. Product Name: Borane ammonia complex. Molecular Formula: NH3.BH3 . Molecular Weight: 30.86. Synonym(s): Ammonia borane.read more
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Borane Ammonia Complex丨CAS 13774-81-7Catalog No.: SS114390. CAS No.: 13774-81-7. Assay: 96%~102%. Product Name: Borane ammonia complex. Molecular Formula: NH3.BH3 . Molecular Weight: 30.86. Synonym(s): Ammonia borane.read more
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Borane-tetrahydrofuran Complex丨CAS 14044-65-6Catalog No.: SS091406CAS No.: 14044-65-6Assay (BH3 THF): 9.3% to 10.3%Product Name: Borane-tetrahydrofuran complexMolecular Formula: C4H11BOMolecular Weight: 85.94Synonym(s): Tetrahydrofuran-boraneread more
Product Advantages And Features
Powerful Reducing Agent
Borane is a highly efficient reducing agent, facilitating reactions that convert functional groups, which is vital in organic chemistry and synthesis processes.
Versatility in Synthesis
Borane is used across various industries, including pharmaceuticals, agrochemicals, and material science, for its ability to introduce boron atoms into organic molecules.
Facilitates Hydroboration Reactions
One of Borane's key advantages is its role in hydroboration reactions, which help synthesize complex organic molecules more efficiently and with high precision.
Selective Reactivity
Borane's ability to selectively reduce compounds without affecting other functional groups makes it invaluable in multi-step synthesis procedures.
Scalability
Borane is useful in both small-scale laboratory research and large-scale industrial production, providing flexibility across different production needs.
Product Type
Borane (BH₃)
The simplest form of Borane, BH₃ is used as a reactive intermediate in numerous organic reactions. Its high reactivity makes it suitable for quick and efficient reductions in chemical synthesis.
Borane Complexes
Borane is often stabilized through complexation with other molecules, such as amines or phosphines, creating more stable compounds like dimethyl sulfide Borane or tetrahydrofuran Borane. These complexes are easier to handle and control during reactions, while retaining the reactivity of Borane.
Borohydrides (e.g., Sodium Borohydride, NaBH₄)
Borohydrides are commonly used derivatives of Borane, widely employed in reducing aldehydes, ketones, and other functional groups in organic synthesis. These compounds are more stable than pure Borane, making them suitable for practical applications in various industries.
Diborane (B₂H₆)
Diborane is a dimer of Borane and is used in certain types of chemical vapor deposition (CVD) processes in semiconductor manufacturing and for synthesizing boron-containing polymers and compounds.
Application Of The Product
Borane's reactivity makes it ideal for synthesizing complex organic molecules used in drugs. It facilitates reduction reactions and introduces boron atoms that can enhance the biological activity of pharmaceuticals.
In academic and industrial research, Borane is used to carry out hydroboration-oxidation reactions, converting alkenes into alcohols. This process is key to forming alcohol groups in many chemical products.
Borane compounds are used in the development of boron-containing materials that exhibit high strength, heat resistance, and chemical stability, making them suitable for advanced engineering applications.
Borane compounds are utilized in producing fine chemicals, such as specialty polymers, additives, and other high-value chemicals used in various industrial processes.
Diborane, a derivative of Borane, is used in chemical vapor deposition techniques to manufacture semiconductors and thin-film technologies, essential in the electronics industry.
Material Of The Product
Hydrocarbons
Alkenes and alkynes are commonly used as starting materials in hydroboration reactions with Borane. These compounds allow for the addition of boron, leading to the creation of complex organic molecules.
Solvents
Common solvents such as tetrahydrofuran (THF) and dimethyl sulfide (DMS) are often used to stabilize Borane in solution, providing a controlled environment for reactions to occur.
Stabilizing Agents
To enhance Borane's stability and control its reactivity, stabilizing agents like amines and ethers are employed. These help prevent premature decomposition and allow for safer handling in industrial settings.
Production Process Or Procedure
Borane production and handling require careful craftsmanship due to the compound's high reactivity. Specialized equipment is used to synthesize and store Borane under controlled conditions, ensuring that it remains stable and effective for various applications. During its production, precision in temperature, pressure, and reactant concentrations is critical to achieve optimal yield and product quality. Quality control processes are implemented to ensure purity and efficacy, particularly in industries like pharmaceuticals and electronics, where product reliability is paramount.
Components Of The Product
Active Ingredient (Borane)
Borane is the key reagent that drives chemical reactions such as hydroboration, where it adds boron to organic molecules.
Solvents (e.g., THF, DMS)
Solvents help dissolve Borane and the reactants, facilitating smoother reactions and improving overall yield.
Complexing Agents
Agents like amines or sulfides stabilize Borane, reducing its volatility and making it easier to handle during reactions.
By-products
Borane reactions often produce alcohols or organoboron compounds as by-products, which can be isolated and used in further chemical processes.
Product Maintenance And Precautions
Proper Storage
Borane and its derivatives should be stored in airtight containers, away from heat and moisture, to prevent decomposition and accidental ignition.
Safe Handling
Due to its high reactivity, Borane should be handled in a fume hood with appropriate protective gear, including gloves, goggles, and flame-resistant clothing. Using complexed forms of Borane (such as THF-Borane) reduces handling risks.
Disposal
Waste containing Borane should be neutralized according to chemical safety protocols and disposed of following local hazardous waste regulations.
Regular Equipment Checks
Equipment used for Borane reactions, such as reactors and storage vessels, should be inspected regularly to ensure they remain free of leaks and are functioning safely.
Company Advantages
Our Focus on Quality & Customer Experience
We dedicate to delivering high-quality products and exceptional customer service beyond your expectation.
Comprehensive Product Range
Extensive catalog of over 27,000 chemicals for diverse industries, offering both standard compounds and specialized solutions.
Strong Industry Expertise
Our experienced diverse team provides expert guidance, staying current with industry trends to deliver optimal chemical solutions tailored to your needs.
Competitive Pricing & Reliability
Competitive pricing and reliable deliveries ensure cost-effective, efficient supply chains without compromising quality.
How To Collaborate With Us
Partnering with LEAPChem gives you access to the expertise of a leading company with 18 years of experience in the chemical industry. We offer over 27,000 chemical substances tailored to meet diverse needs. All our products adhere to industry standards and are accompanied by the necessary certifications.
We collaborate with a wide range of partners, including:
• Research Laboratories
• Pharmaceutical Companies
• Cosmetics Manufacturers
• Electronics Manufacturers
• Chemical Manufacturers
• Universities and Colleges Worldwide
• And more.
We specialize in helping our clients find the right chemical solutions tailored to their specific requirements. Additionally, we provide custom synthesis services to meet the unique needs of our partners. Whether you need bulk quantities for industrial processes or small batches for specialized applications, we've got you covered.
If you are looking for a reliable chemical supplier, we would be delighted to hear from you. Please send your inquiry or project details to sales@leapchem.com. Our professional team is eager to collaborate with you and help achieve your goals.
FAQ
Q: What is Borane used for?
A: Borane is used primarily as a reducing agent in organic synthesis and in hydroboration reactions to form complex organic compounds.
Q: Why is Borane important in pharmaceuticals?
A: It helps synthesize pharmaceutical ingredients through reduction reactions, facilitating the production of biologically active compounds.
Q: How is Borane typically stored?
A: Borane is stored under inert conditions, often in complexed forms with solvents like THF or DMS to ensure stability.
Q: Can Borane be used in large-scale industrial applications?
A: Yes, Borane and its derivatives are used in large-scale production of pharmaceuticals, fine chemicals, and even in semiconductor manufacturing.
Q: What safety precautions are needed when working with Borane?
A: Protective gear should be worn, and Borane should be handled in a controlled environment, such as a fume hood, due to its high reactivity.
Q: How does Borane compare to other reducing agents?
A: Borane is more selective in some reactions and has a higher reactivity than many other reducing agents, making it particularly useful for specific organic transformations.
Q: Is Borane environmentally hazardous?
A: Borane must be handled carefully as it is flammable and can be toxic. However, proper disposal and neutralization processes minimize environmental risks.
Q: What are Borane complexes?
A: Borane complexes are more stable forms of Borane, typically combined with solvents like THF or DMS, which make it easier to handle during chemical reactions.
Q: How is Borane synthesized?
A: Borane is typically synthesized in the laboratory by reacting diborane with complexing agents or by other reduction methods under controlled conditions.
Q: What industries benefit from Borane?
A: Borane is widely used in the pharmaceutical, materials science, electronics, and fine chemical industries for a range of applications from synthesis to manufacturing.
Hangzhou Leap Chem Co., Ltd. is well-known as one of the leading borane manufacturers and suppliers in China. We warmly welcome you to wholesale cheap borane from our factory. Contact us for custom service.
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