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Acquire Phenylboronic Acid from Factory Supply – CAS Number 864759-63-7, CAS Number 98-80-6

Introduction

Phenylboronic Acid, also known as boronic acid, is an important organic compound widely used in chemistry, pharmaceuticals, and materials science. Factory supply searches are common among chemists and industrial buyers seeking high-purity reagents for synthesis, research, or manufacturing.

This article explores its chemical properties, applications, safety, and legal ways to obtain it from reputable suppliers, while addressing the commercial and transactional aspects legally.

Phenylboronic Acid / Boronic Acid: Uses, Benefits, and Legal Factory Supply


Informational: What is Phenylboronic Acid?

Phenylboronic Acid is an aromatic boronic acid with the formula C6H5B(OH)2. It is commonly used in organic synthesis due to its ability to form reversible covalent bonds with diols and other functional groups.

Key Facts:

  • Appearance: White crystalline powder
  • Solubility: Soluble in organic solvents like ethanol and DMSO; partially soluble in water
  • Reactivity: Forms boronate esters with alcohols, useful in Suzuki-Miyaura cross-coupling reactions
  • Purity: High-purity (≥99%) is essential for chemical synthesis

Applications:

  1. Pharmaceuticals: Intermediate for drug synthesis, including antibiotics and anticancer agents
  2. Materials Science: Used in polymers, sensors, and functional materials
  3. Chemical Research: Essential reagent in Suzuki coupling and other organic transformations

Navigational: Legal and Safe Access

Phenylboronic Acid is legal to purchase and handle in most countries for laboratory, industrial, or educational purposes. However, safety and proper sourcing are important.

Legal Pathways:

  1. Licensed Chemical Suppliers
    • Purchase through GMP-certified chemical manufacturers or distributors.
    • Ensure proper documentation and compliance with local chemical regulations.
  2. Factory Supply Channels
    • Bulk supply directly from chemical factories for industrial or laboratory use.
    • Verify certificates of analysis (COA) to guarantee purity and authenticity.
  3. Educational and Research Institutions
    • Universities and research labs can procure it for experiments under standard chemical safety guidelines.

Tip: Always confirm the supplier’s license and COA before purchase to ensure compliance and quality.


Commercial: Advantages and Disadvantages

Advantages of Phenylboronic Acid

  • High Reactivity: Ideal for organic synthesis and pharmaceutical intermediates
  • Versatile Applications: Useful in research, materials science, and drug development
  • Stable Compound: Easy to store under recommended conditions
  • Bulk Availability: Factory supply allows cost-effective procurement for industrial use

Disadvantages / Risks

  • Handling Precautions: Irritant to skin, eyes, and respiratory tract if not handled properly
  • Storage Requirements: Sensitive to moisture and heat; requires sealed containers
  • Regulatory Compliance: Must follow chemical handling and transport regulations
  • Quality Variation: Impure products can affect reaction yields and reproducibility

Key Insight: When sourced responsibly from reputable factories, Phenylboronic Acid is safe, effective, and highly versatile.


Transactional: How to Purchase Safely and Legally

Step 1: Verify Supplier Credentials

  • Ensure suppliers are GMP-certified or ISO-certified.
  • Request COA and Material Safety Data Sheets (MSDS) for verification.

Step 2: Determine Quantity and Purity Needs

  • Laboratory research may require grams or kilograms; industrial applications may need bulk tons.
  • Specify purity ≥99% for sensitive reactions.

Step 3: Follow Safety Guidelines

  • Use gloves, lab coat, and eye protection while handling
  • Store in dry, cool, and ventilated environments
  • Follow local chemical regulations for transport and disposal

Step 4: Legal Purchase Channels

  • Purchase from factory-direct suppliers or verified distributors
  • Avoid unverified online vendors to ensure legal compliance and product quality

Safe CTA Examples:

  • “Contact certified chemical suppliers for bulk Phenylboronic Acid.”
  • “Request COA from factory suppliers for guaranteed purity.”
  • “Learn how to legally procure boronic acids for research and industrial applications.”

Comparison Table: Bulk Factory Supply vs. Small-Scale Suppliers

Feature Bulk Factory Supply Small-Scale Suppliers / Online Vendors
Quantity Available Kilograms to tons Grams to kilograms
Purity Control COA and GMP-certified May vary, verify before purchase
Cost Economical for bulk Higher per gram
Compliance Full regulatory compliance Risk of counterfeit or unverified
Applications Industrial, research, pharma Lab-scale research, educational use

FAQs About Phenylboronic Acid

Q1: Is Phenylboronic Acid safe to handle?
Yes, with proper PPE and chemical handling procedures. Avoid inhalation, ingestion, or skin contact.

Q2: Can I buy it online?
Yes, but ensure the supplier is licensed, provides COA, and follows legal chemical regulations.

Q3: What are common uses in research?
Suzuki-Miyaura cross-coupling reactions, sensor development, polymer synthesis, and drug intermediates.

Q4: How should it be stored?
Store in sealed containers, in a dry, cool, and ventilated area away from moisture and heat.


Conclusion

Phenylboronic Acid / Boronic Acid is a versatile, high-value chemical widely used in research, pharmaceutical development, and materials science. Factory supply channels ensure high-purity, cost-effective, and legally compliant access for industrial and laboratory use.

By sourcing from verified suppliers, following safety protocols, and understanding its applications and risks, professionals can maximize its benefits safely and legally.


 Integrated:

 

Factory supply Phenylboronic/ Boronic acid CAS NO. 864759-63-7, CAS NO. 98-80-6 from Factory Supply. Phenylboronic Acid, also known as Benzeneboronic Acid, abbreviated as PhB(OH)₂ where Ph represents the phenyl group C₆H₅-, is a boronic acid with a phenyl substituent and two hydroxyl groups attached to a boron atom. This compound appears as a white powder and is extensively utilized in organic synthesis. Boronic acids are considered mild Lewis acids, known for their stability and ease of handling, which makes them crucial in organic chemistry. Purchase Phenylboronic Acid – CAS Number 864759-63-7, CAS Number 98-80-6.

Phenylboronic Acid exhibits solubility in most polar organic solvents, though it is less soluble in hexanes and carbon tetrachloride. This molecule is characterized by its planar structure with idealized C₂v molecular symmetry. The boron atom within the compound is sp²-hybridized and contains an empty p-orbital. Orthorhombic crystal formations use hydrogen bonding to create dimeric units consisting of two molecules each. These dimeric units further extend into a network through hydrogen bonding. The molecule maintains a planar conformation with slight bending around the C-B bond, measuring 6.6° and 21.4° for the two PhB(OH)₂ molecules. Purchase Phenylboronic Acid – CAS Number 864759-63-7, CAS Number 98-80-6.

Synthesis of Phenylboronic Acid

Phenylboronic Acid can be synthesized through various methods. A commonly employed technique involves the reaction of phenylmagnesium bromide with trimethyl borate to form the ester PhB(OMe)₂, which is subsequently hydrolyzed to yield the desired product. Alternative synthesis routes may involve electrophilic borates to capture phenylmethyl intermediates derived from phenyl halides or directed ortho-metalation. Additionally, phenylsilanes and phenylstannanes can transmetalate with BBr₃, followed by hydrolysis to produce phenylboronic acid. Another approach includes coupling aryl halides or triflates with diboronyl reagents using transition metal catalysts, and aromatic C-H functionalization can also be performed using transition metal catalysts. Purchase Phenylboronic Acid – CAS Number 864759-63-7, CAS Number 98-80-6.

Reactions Involving Phenylboronic Acid

The dehydration of boronic acids leads to the formation of boroxines, which are trimeric anhydrides of phenylboronic acid. This dehydration reaction is typically driven by thermal energy or occasionally by a dehydration agent. Purchase Phenylboronic Acid – CAS Number 864759-63-7, CAS Number 98-80-6.

Synthesis of Triphenyl Boroxine

Phenylboronic Acid is actively involved in various cross-coupling reactions, where it acts as a source of phenyl groups. A notable example is the Suzuki reaction, where phenylboronic acid and vinyl halides are coupled in the presence of a Pd(0) catalyst and base to produce phenyl alkenes. This method has been generalized for producing biaryls by coupling phenylboronic acid with aryl halides. Purchase Phenylboronic Acid – CAS Number 864759-63-7, CAS Number 98-80-6.

Phenylboronic Acid is frequently used in C-C bond-forming processes as a reagent. Alpha-amino acids can be synthesized through the uncatalyzed reaction involving alpha-ketoacids, amines, and phenylboronic acid. Additionally, Heck-type cross-coupling of phenylboronic acid with alkenes and alkynes has been demonstrated. Purchase Phenylboronic Acid – CAS Number 864759-63-7.

Phenylboronic Acid can also be utilized to generate aryl azides and nitroaromatics. Furthermore, phenylboronic acid can be regioselectively halodeboronated using aqueous bromine, chlorine, or iodine. Purchase Phenylboronic Acid – CAS Number 864759-63-7, CAS Number 98-80-6.

Boronic Esters

Boronic esters are formed through the condensation of boronic acids with alcohols. This reaction involves the substitution of the hydroxyl group with alkoxy or aryloxy groups. The transformation is typically driven to completion using a Dean-Stark apparatus or a dehydration agent to remove water.

As an extension of this reactivity, PhB(OH)₂ can be employed as a protecting group for diols and diamines. This reactivity underpins the use of phenylboronic acid in various applications such as carbohydrate receptors and sensors, antimicrobial agents, enzyme inhibitors, neutron capture therapy for cancer treatment, transmembrane transport, as well as bioconjugation, and protein and cell surface labeling.

Quick Details

  • Classification: Pharmaceutical Intermediates
  • CAS Number: 98-80-6
  • Name: Phenylboronic Acid
  • Molecular Formula: C₆H₇BO₂
  • Melting Point: 217-220°C
  • Boiling Point: 265.9°C at 760 mmHg
  • Refractive Index: 1.534
  • Flash Point: 114.6°C
  • Purity: 98%
  • EINECS Number: 202-701-9
  • Appearance: White powder

Quality Assurance

  • Appearance: White crystalline powder – conforms
  • Assay (HPLC): 99.0% minimum – 99.7779%

Available Sources

  • Phenylboronic Acid 95, CAS Number 98-80-6 – Sigma-Aldrich
  • Benzeneboronic Acid, 98+% – Alfa Aesar
  • Phenylboronic Acid | CAS 98-80-6 – SCBT
  • Phenylboronic Acid (contains varying amounts of Anhydride) – ECHEMI
  • Factory Supply Phenylboronic/Boronic Acid – CAS Number 864759-63-7, CAS Number 98-80-6

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CuSO₄·5H₂O, or copper(II) sulfate pentahydrate, is used in agriculture as a fungicide, algaecide, and pesticide; in water treatment to control algae and bacteria; as a veterinary feed supplement to prevent copper deficiency; as an additive in the textile and leather industries; and in mining and metallurgy for electroplating and as a flotation reagent. It also serves as a mordant in dyeing, a root killer, a component in pigments and dyes, and in educational and laboratory experiments for growing crystals and testing for alcohol.

Factory supply Phenylboronic/ Boronic acid CAS NO. 864759-63-7, CAS NO. 98-80-6

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Paraformaldehyde must be depolymerized into formaldehyde to act as a fixative. In cell culture, a 4% formaldehyde solution in phosphate-buffered saline (PBS) is typically used on ice for 10 minutes. For histology and pathology, a 10% Neutral Buffered Formalin (4% formaldehyde) solution is used for at least 24 hours. Buy factory price Paraformaldehyde/ CAS NO. 30525-89-4 wholesale. Paraformaldehyde can also replace aqueous formaldehyde in producing resinous binding materials, often combined with melamine, phenol, or other reactive agents in the production of particle board, medium-density fiberboard, and plywood. Product Specifications
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  • Molecular Formula: C₃H₆O₃
  • Appearance: White Powder
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Factory Supply of Methanol (Methyl Alcohol) – CAS Number 67-56-1 – Available for Wholesale Purchase Factory supply Methanol Methyl Alcohol/ CAS NO. 67-56-1/ wholesale our factory supply. Methanol, also recognized as methyl alcohol among other names, is an organic chemical compound and is the simplest form of alcohol. Its chemical formula is CH₃OH, representing a methyl group linked to a hydroxyl group, and it is often abbreviated as MeOH. This compound is a light, volatile, colorless, and highly flammable liquid with a distinctive alcoholic odor, somewhat similar to that of ethanol (potable alcohol). As a polar solvent, methanol was historically known as wood alcohol due to its primary production method via the destructive distillation of wood. In contemporary industrial practices, methanol is predominantly manufactured through the hydrogenation of carbon monoxide. Purchase Methanol (Methyl Alcohol) – CAS Number 67-56-1. Methanol for sale consists of a methyl group bonded to a polar hydroxyl group. With annual production exceeding 20 million tons, methanol serves as a crucial precursor for the synthesis of various commodity chemicals including formaldehyde, acetic acid, methyl tert-butyl ether, methyl benzoate, anisole, and peroxy acids, as well as numerous specialized chemicals. Purchase Methanol (Methyl Alcohol) – CAS Number 67-56-1. Occurrence of Methanol (Methyl Alcohol) – CAS Number 67-56-1 Methanol is naturally present in trace amounts in healthy human individuals. Studies have found an average concentration of 4.5 parts per million (ppm) in the exhaled breath of test subjects. The mean endogenous methanol in humans is approximately 0.45 grams per day, which may be metabolized from pectin found in fruits. For example, one kilogram of apples can produce up to 1.4 grams of pectin, which corresponds to about 0.6 grams of methanol. Methanol is also produced by anaerobic bacteria and phytoplankton. Purchase Methanol (Methyl Alcohol) – CAS Number 67-56-1. Methanol in the Interstellar Medium – CAS Number 67-56-1 Methanol is also detected in significant quantities within star-forming regions of outer space and serves as an astronomical marker for such areas. It is identified through its spectral emission lines. In 2006, astronomers using the MERLIN array of radio telescopes at Jodrell Bank Observatory discovered an expansive cloud of methanol spanning 463 terameters (approximately 288 billion miles). Furthermore, in 2016, the ALMA radio telescope observed methanol within a planet-forming disc surrounding the young star TW Hydrae. Purchase Methanol (Methyl Alcohol) – CAS Number 67-56-1. Safety Considerations for Methanol (Methyl Alcohol) – CAS Number 67-56-1 Methanol is highly flammable, and its vapors are slightly denser than air, which allows it to travel and potentially ignite. Fires involving methanol should be extinguished using dry chemical agents, carbon dioxide, water spray, or alcohol-resistant foam. Methanol, with its chemical formula CH₃OH, is a colorless liquid known for its strong odor. It is a toxic substance that can be absorbed through the eyes, skin, lungs, and digestive system. Overexposure to methanol can be fatal. Workers in various industries may be at risk of methanol exposure, including those in plastic manufacturing plants, transportation workers involved in vehicle deicing, individuals working in alternative fuel sectors, and those handling certain solvents or cleaning agents. The National Institute for Occupational Safety and Health (NIOSH) recommends employing a Hierarchy of Controls to mitigate the risk of injuries. If you work in an industry where methanol is used, it is crucial to read chemical labels and Safety Data Sheets for hazard information. Visit NIOSH’s webpage on Managing Chemical Safety in the Workplace for more information on controlling chemical exposures. Purchase Methanol (Methyl Alcohol) – CAS Number 67-56-1. Additional Information and Resources For information on occupational exposure to methanol, useful search terms include "methanol," "carbinol," "Columbian spirits," "pyroligneous spirits," "wood alcohol," "wood naphtha," and "wood spirits." Quick Details
  • Product Name: Methanol HPLC
  • CAS Number: 67-56-1
  • Molecular Formula: CH₄O
  • Appearance: Liquid
  • Application: Research Chemical
  • Delivery Time: Within 2 days
  • Packaging: Aluminium foil bag or as per customer requirements
  • Port of Shipment: Tianjin, Shanghai
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  • Purity: 98%
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  • Minimum Order Quantity: 1 Kilogram
  • Moisture Content: <0.1%
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Purchase Nitric Acid | CAS No. 7697-37-2 | Factory Prices Wholesale Buy Nitric Acid at Factory Prices Buy factory price Nitric acid / CAS NO. 7697-37-2 wholesale , with the chemical formula HNO₃, is a highly corrosive mineral acid. It is typically colorless but can appear yellow over time due to decomposition into nitrogen oxides. Most commercially available nitric acid is a 68% solution in water. Solutions with more than 86% HNO₃ are classified as fuming nitric acid, which can be further categorized into red fuming nitric acid (concentrations above 86%) and white fuming nitric acid (concentrations above 95%). Uses and Applications Nitric acid is primarily used for nitration, the process of introducing a nitro group into an organic molecule. This process results in nitro compounds, some of which are sensitive explosives, while others are stable enough for use in munitions, demolition, and as pigments in inks and dyes. Nitric acid is also a potent oxidizing agent utilized in various industrial applications.Buy factory price Nitric acid / CAS NO. 7697-37-2 wholesale Product Specifications
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  • Acid Strength: Strong Acid
  • Type: Inorganic Acid
  • Quality: Technical Grade
  • Packaging: Plastic Drum
  • Element: Monobasic Acid
  • Oxidation: Oxidizing Acid
  • Volatility: Volatile Acid
  • Stability: Labile Acid
  • Transport Package:
    • Tank, 1.4mts/IBC Drum
    • 35kg/HDPE Drum
Production and Delivery
  • Origin: China
  • HS Code: 2808000090
  • Production Capacity: 10,000 tons per month
Factory Price for Nitric Acid (68% HNO₃)
  • Purity: ≥67%
  • Appearance: Clear Liquid
  • Specification:
    • Fe (%): ≤0.005 (Result: 0.002)
    • Specific Gravity: ≥1.50 (Result: 1.51)
    • Nitrous Acid Content: ≤0.03 (Result: 0.002)
    • Ignition Residue: ≤0.02 (Result: 0.01)
Packaging Details
  • 35kg Drum: 720 drums per 20' FCL (25.2 tons per 20' FCL)
  • 250kg Drum: 80 drums per 20' FCL (20 tons per 20' FCL)
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Factory Supply of Diammonium Phosphate (DAP) / CAS NO. 7783-28-0                                   factory supply Di-ammonium Phosphate/ CAS NO. 7783-28-0/ wholesale: Diammonium Phosphate (DAP), also known as Diammonium Hydrogen Phosphate, has the chemical formula (NH4)2(HPO4)(NH_4)_2(HPO_4)(NH4​)2​(HPO4​). It is a water-soluble ammonium phosphate salt produced by the reaction of ammonia with phosphoric acid. Chemical Properties:
  • CAS Number: 7783-28-0
  • Molecular Formula: H9N2O4PH_9N_2O_4PH9​N2​O4​P
  • Appearance: White or colorless powder
  • Purity: ≥99.9%
  • Melting Point: Decomposes at approximately 70°C (158°F)
  • Dissociation Pressure: Approximately 5 mmHg at 100°C
Physical and Chemical Characteristics:
  • Solubility: Water-soluble
  • Average pH in Solution: 7.5–8
  • Decomposition Products: Ammonia, mono ammonium phosphate, phosphorus oxides, nitrogen oxides
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    • It temporarily increases soil pH but becomes more acidic over time due to nitrification.
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    • Used in preventing afterglow in matches, purifying sugar, and as a flux for soldering metals.
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Buy factory price Glacial Acetic Acid CAS NO. 64-19-7 wholesale Purchase Glacial Acetic Acid | CAS No. 64-19-7 | Wholesale Prices Buy Glacial Acetic Acid at Factory Prices Buy factory price Glacial Acetic Acid CAS NO. 64-19-7 wholesale, systematically known as ethanoic acid, is a colorless, acidic liquid with the chemical formula CH₃COOH (also written as CH₃CO₂H, C₂H₄O₂, or HC₂H₃O₂). This substance is highly concentrated and differs from vinegar, which contains at least 4% acetic acid by volume, making acetic acid the primary component of vinegar aside from water and trace elements. Characteristics and Uses Glacial acetic acid is the second simplest carboxylic acid, following formic acid, and features a methyl functional group. It plays a critical role as an industrial and chemical reagent. Its primary applications include:
  • Cellulose Acetate Production: Used in the manufacture of photographic film.
  • Polyvinyl Acetate Production: Essential for making wood glue and various synthetic fibers and fabrics.
  • Household Use: Found in descaling agents.
  • Food Industry: Regulated as a food additive (E260), it acts as an acidity regulator and condiment.
  • Biochemistry: The acetyl group, derived from acetic acid, is vital for all forms of life, particularly in carbohydrate and fat metabolism when bound to coenzyme A.
Global Production and Supply The global demand for acetic acid is approximately 6.5 million metric tons annually, with around 1.5 million tons sourced from recycling. The remainder is produced from methanol. Vinegar, primarily composed of dilute acetic acid, is typically produced via fermentation and subsequent ethanol oxidation. Terminology and Properties
  • Trivial Name: Acetic Acid
  • Systematic Name: Ethanoic Acid
  • Melting Point: 16-16.5°C
  • Boiling Point: 117-118°C
  • Refractive Index: 1.3715
  • Flash Point: 40°C
  • Purity: 99.8%
  • Appearance: Colorless Transparent Liquid
  • CAS Number: 64-19-7
  • EINECS Number: 200-580-7
The term “glacial acetic acid” refers to anhydrous acetic acid, which forms ice-like crystals slightly below room temperature (16.6°C or 61.9°F). This name derives from the ice-like appearance of the substance at this temperature. Product Listings and Availability
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