1,3-Bis(4-aminophenoxy)benzene (TPE-R) 2479-46-1 C18H16N2O2
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#1 #3 #bis #4 #aminophenoxy #benzene
CAS No.: 2479-46-1
Product name: 1,3-Bis(4-aminophenoxy)benzene
Abbreviation: TPE-R
Appearance: Off-white powder
Purity(HPLC): ≥99%
Molecular formula: C18H16N2O2
Molecular weight: 117.15
Package: In Aluminum foil bag, cartons outside.
Storage: Preserve in a well-closed container and keep in ... more1,3-Bis(4-aminophenoxy)benzene (TPE-R) 2479-46-1 C18H16N2O2
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#1 #3 #bis #4 #aminophenoxy #benzene
CAS No.: 2479-46-1
Product name: 1,3-Bis(4-aminophenoxy)benzene
Abbreviation: TPE-R
Appearance: Off-white powder
Purity(HPLC): ≥99%
Molecular formula: C18H16N2O2
Molecular weight: 117.15
Package: In Aluminum foil bag, cartons outside.
Storage: Preserve in a well-closed container and keep in cool, dry place, avoid light.
Where to buy 2479-46-1 COA Download MSDS Download
1,3-Bis(4-aminophenoxy)benzene (TPE-R) 2479-46-1 C18H16N2O2
Introduction of 1,3-Bis(4-aminophenoxy)benzene (TPE-R) 2479-46-1 C18H16N2O2
The structure of 1,3-Bis(4-aminophenoxy)benzene contains two ether bond units and two reactive amino units, which have high chemical reactivity.The amino unit in the structure of TPE-R is strongly nucleophilic, and it can be condensed with common electrophilic reagents, for example, there is a report that it can be condensed with ethyl isothiocyanato-carboxylate to obtain the corresponding thiourea derivative. It can condense with common electrophilic reagents.
Application of 1,3-Bis(4-aminophenoxy)benzene (TPE-R) 2479-46-1 C18H16N2O2
1,3-Bis(4-aminophenoxy)benzene is a diamine monomer containing two ether bonds and three benzene rings, and the interstitial substitution of the ether bond and the chain structure make the molecular chain less rigid and more flexible. This monomer is not only an important raw material for the preparation of homopolymerization or copolymerization type PI, but also can be used for the toughening modification of bismaleimide (BMI).
Its aminophenoxy group can participate in redox reactions, form complexes with metal ions, or undergo coupling reactions with other compounds. These properties make it potentially useful in electronic and optoelectronic devices, fluorescent displays, dye-sensitized solar cells, and so on.
In addition, TPE-R is an important intermediate with a wide range of applications in the fields of dyes, fluorescent dyes, polymers and photosensitive materials.
1,3-Bis(3-aminophenoxy)benzene (APB) 10526-07-5 C18H16N2O2
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#1 #3 #bis #3 #aminophenoxy #benzene
CAS No.: 10526-07-5
Product name: 1,3-Bis(3-aminophenoxy)benzene
Abbreviation: APB
Appearance: Off-white powder
Purity(HPLC): ≥99%
Molecular formula: C18H16N2O2
Molecular weight: 292.33
Package: In Aluminum foil bag, cartons outside.
Storage: Preserve in a well-closed container and keep in coo... more1,3-Bis(3-aminophenoxy)benzene (APB) 10526-07-5 C18H16N2O2
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#1 #3 #bis #3 #aminophenoxy #benzene
CAS No.: 10526-07-5
Product name: 1,3-Bis(3-aminophenoxy)benzene
Abbreviation: APB
Appearance: Off-white powder
Purity(HPLC): ≥99%
Molecular formula: C18H16N2O2
Molecular weight: 292.33
Package: In Aluminum foil bag, cartons outside.
Storage: Preserve in a well-closed container and keep in cool, dry place, avoid light.
Where to buy 10526-07-5 COA Download MSDS Download
1,3-Bis(3-aminophenoxy)benzene (APB) 10526-07-5 C18H16N2O2
Introduction of 1,3-Bis(3-aminophenoxy)benzene (APB) 10526-07-5 C18H16N2O2
1,3-Bis(3-aminophenoxy)benzene, also known as APB, is an organic compound. It has good solubility and is soluble in most organic solvents. In addition it has strong UV absorption.
Application of 1,3-Bis(3-aminophenoxy)benzene (APB) 10526-07-5 C18H16N2O2
1,3-Bis(3-aminophenoxy)benzene is commonly used in dye synthesis as well as in organic electronics. It can be used as a photoluminescent curing agent, light-sensitive dyes, precursors for liquid crystal materials, etc.
1,2,4,5-Cyclohexanetetracarboxylic Dianhydride (HPMDA) 2754-41-8 C10H8O6
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#hpmda
CAS No.: 2754-41-8
Product name: 1,2,4,5-Cyclohexanetetracarboxylic Dianhydride
Abbreviation: HPMDA
Appearance: White powder
Purity(HPLC): ≥99%
Molecular formula: C10H8O6
Molecular weight: 224.17
Package: In Aluminum foil bag, cartons outside.
Storage: Preserve in a well-closed container and ke... more1,2,4,5-Cyclohexanetetracarboxylic Dianhydride (HPMDA) 2754-41-8 C10H8O6
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#hpmda
CAS No.: 2754-41-8
Product name: 1,2,4,5-Cyclohexanetetracarboxylic Dianhydride
Abbreviation: HPMDA
Appearance: White powder
Purity(HPLC): ≥99%
Molecular formula: C10H8O6
Molecular weight: 224.17
Package: In Aluminum foil bag, cartons outside.
Storage: Preserve in a well-closed container and keep in cool, dry place, avoid light.
Where to buy 2754-41-8 COA Download MSDS Download
1,2,4,5-Cyclohexanetetracarboxylic Dianhydride (HPMDA) 2754-41-8 C10H8O6
Application of 1,2,4,5-Cyclohexanetetracarboxylic Dianhydride (HPMDA) 2754-41-8 C10H8O6
1,2,4,5-Cyclohexanetetracarboxylic dianhydride, also known as hydrogenated PMDA, is a solid substance with a white or white-like color. 1,2,4,5-Cyclohexanetetracarboxylic dianhydride is a commonly used organic compound that is widely used in the synthesis of polyimides and other high-performance polymers. It can be used as an intermediate in polyimide resins for the preparation of high-temperature, high-strength, and chemically resistant polyimide fibers, films, and coatings.
1,2,4,5-Cyclohexanetetracarboxylic dianhydride can also be used in areas such as the synthesis of organic photoelectric materials and dyes.
1,2,3,4-Cyclobutanetetracarboxylic 1,2,3,4-dianhydride (CBDA) 4415-87-6 C8H4O6
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#4534 #73 #0
CAS No.: 4415-87-6
Product name: Cyclobutane-1,2,3,4-tetracarboxylic dianhydride
Abbreviation: CBDA
Appearance: White powder
Purity(HPLC): ≥99.5%
Metal ion content: The total metal≤ 500 ppb
Molecular formula: C8H4O6
Molecular weight: 196.11
Package: In Aluminum foil bag, carton... more1,2,3,4-Cyclobutanetetracarboxylic 1,2,3,4-dianhydride (CBDA) 4415-87-6 C8H4O6
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#4534 #73 #0
CAS No.: 4415-87-6
Product name: Cyclobutane-1,2,3,4-tetracarboxylic dianhydride
Abbreviation: CBDA
Appearance: White powder
Purity(HPLC): ≥99.5%
Metal ion content: The total metal≤ 500 ppb
Molecular formula: C8H4O6
Molecular weight: 196.11
Package: In Aluminum foil bag, cartons outside.
Storage: Preserve in a well-closed container and keep in cool, dry place, avoid light.
Where to buy 4415-87-6 COA Download MSDS Download
1,2,3,4-Cyclobutanetetracarboxylic 1,2,3,4-dianhydride (CBDA) 4415-87-6 C8H4O6
Introduction of 1,2,3,4-Cyclobutanetetracarboxylic1,2,3,4-dianhydride (CBDA) 4415-87-6 C8H4O6
Cyclobutane-1,2,3,4-tetracarboxylic dianhydride is a solid compound with high stability and low volatility.
Application of 1,2,3,4-Cyclobutanetetracarboxylic1,2,3,4-dianhydride (CBDA) 4415-87-6 C8H4O6
In the field of material chemistry, cyclobutane-1,2,3,4-tetracarboxylic dianhydride is mainly used as an important reagent and catalyst in organic synthesis. For example: preparation of photosensitive polyimide materials for high-performance organic thin-film transistors; selective cross-linking of polyimide photonic devices.
In addition, cyclobutane-1,2,3,4-tetracarboxylic dianhydride can also be used as a reagent for the preparation of active molecules in biology and pharmacology.
1,2,3,4-Butanetetracarboxylicdianhydride (BDA) 4534-73-0 C8H6O6
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#monomers #and #polymers #list
CAS No.: 4534-73-0
Product name: 1,2,3,4-Butanetetracarboxylicdianhydride
Abbreviation: BDA
Appearance: White powder
Purity(HPLC): ≥99%
Molecular formula: C8H6O6
Molecular weight: 198.13
Package: In Aluminum foil bag, cartons outside.
Storage: Preserve in a well-closed container and keep ... more1,2,3,4-Butanetetracarboxylicdianhydride (BDA) 4534-73-0 C8H6O6
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#monomers #and #polymers #list
CAS No.: 4534-73-0
Product name: 1,2,3,4-Butanetetracarboxylicdianhydride
Abbreviation: BDA
Appearance: White powder
Purity(HPLC): ≥99%
Molecular formula: C8H6O6
Molecular weight: 198.13
Package: In Aluminum foil bag, cartons outside.
Storage: Preserve in a well-closed container and keep in cool, dry place, avoid light.
Where to buy 4534-73-0 COA Download MSDS Download
1,2,3,4-Butanetetracarboxylicdianhydride (BDA) 4534-73-0 C8H6O6
Application of 1,2,3,4-Butanetetracarboxylicdianhydride (BDA) 4534-73-0 C8H6O6
1,2,3,4-Butanetetracarboxylicdianhydride is a white crystalline solid. It is stable at room temperature. It is less soluble in some solvents such as dimethyl sulfoxide and acetic acid.1,2,3,4-butanetetracarboxylicdianhydride is mainly used in the preparation of catalysts and intermediates in organic synthesis. It can be used to generate a number of functional compounds, including playing an important role in the preparation of polymers, pigments and fluorescent dyes.
Premium Electronic Chemical Polymer Monomer for Advanced Industries
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#polymer #monomer #list
Heynova is a leading manufacturer of electronic chemicals in China. Our products are not only in high purity, but also promise batch consistency and process stability. We provide zero-defect chemical solutions from lab to fab.
Electronic Chemicals and Speciality Polymer Materials List
Polyimide Materials
Polyimide Monomer
Polyimide Resin
Polyimide Engineering... morePremium Electronic Chemical Polymer Monomer for Advanced Industries
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#polymer #monomer #list
Heynova is a leading manufacturer of electronic chemicals in China. Our products are not only in high purity, but also promise batch consistency and process stability. We provide zero-defect chemical solutions from lab to fab.
Electronic Chemicals and Speciality Polymer Materials List
Polyimide Materials
Polyimide Monomer
Polyimide Resin
Polyimide Engineering Plastic Products
Polyimide (PI) is a kind of high-performance polymers with excellent high-temperature resistance, mechanical strength, dielectric properties and chemical stability, and is widely used in flexible displays, semiconductor packaging, aerospace, and 5G communications.
Photoresist Materials
Photoresist Monomer
Photoacid Generator (PAG)
Photosensitizer (PAC)
Photoinitiator
Photoresist Resin
Photoresist BARC
Photoresist Additive
Photoresist Solvent
Photoresist is a key material in the semiconductor manufacturing, display panel and PCB industries, and its performance directly affects the process accuracy and yield of chips. Photoresist monomer is the key raw material for the synthesis of photoresist resin.
OLED Materials
OLED Monomer
OLED Display Material is the core of the new generation of display technology, with the advantages of self-illumination, high contrast, flexible and bendable, widely used in high-end smart phones, TVs, wearable devices and other fields.
Lithium Battery Materials
Electrolyte Additives
Lithium Battery Materials is the core link of new energy industry chain, and its performance directly determines the energy density, cycle life and safety of the battery. Lithium battery additives are the key 'gene material' to improve battery performance.
3D Printing Materials
3D Printing Organic Resin
High-End Metal Powders
3D Printing Materials are the core of additive manufacturing technology, and their performance directly determines the strength, precision and functionality of printed parts. As the core material for light-curing (SLA/DLP/LCD) 3D printing, organic resins are being upgraded from rapid prototyping to end products.
Custom Sythesis
Our company has more than ten sets of advanced testing equipment, including Agilent brand ICPMS/MS (ICPMS8900), HPLC, GC, GC-MS, GPC, etc., which provide strong support for the company's product development.
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Why Choose Heynova Electronic Chemical Polymer Monomer?
Through the triple advantages of technological limit breakthrough + localized rapid response + in-depth collaborative development, we are able to build up the competitiveness of the whole chain from lab to mass production.
1. Ultra-high purity & low metal impurities
Single metal impurities<1ppb (ICP-MS detection), meet semiconductor grade requirements.
Organic impurities<10ppm (HPLC/GC-MS analysis), avoiding exposure side reactions.
Particle control ≤0.1μm (Liquid Particle Counter), reducing lithography defects.
2. Customized molecular structure design
Photoresist monomer: Fluorine/Silicon modification to improve etch resistance.
PI monomer: Introduction of alicyclic structure to achieve high transparency (CPI film transmittance >90%).
Patent coverage: Owns a number of core patents for monomer synthesis and purification.
3. Functionalization modification ability
Photosensitive group introduction: E.g. Diazinonaphthoquinone (DNQ), Photoacid generator (PAG) bonding monomers.
Cross-linking modulation: Adjust the photoresist development and dissolution rate by monomer ratio.
Out-gassing design: Reduce contamination during EUV exposure.
4. Supply chain security
Localized production: Shorten lead time to 4-6 weeks.
Technical non-disclosure agreement: Support customized structures to protect intellectual property.
Customer value: Ensure batch consistency and improve chip yield.
Quality Control and Testing Methods for
Electronic Chemical Polymer Monomer
Quality Control and Testing Methods for </br>Electronic Chemical Polymer Monomer
Through QC and technical inspection ensure high reliability and consistency of products, ultimately helping customers to improve performance and reduce costs.
Production and supply chain control
Clean production environment: Production workshop needs to meet Class 100~Class 10 clean room standards to prevent particle contamination.
Full traceability: Tracking from raw material to finished product batch number, recording all testing data (e.g. COA).
Packaging and Transportation: Use high purity inert materials (e.g. PTFE bottles, double sealed bags), anti-vibration and anti-static during transportation.
Key detection technology
Impurity analysis
ICP-MS/OES, GC-MS/LC-MS, HPLC, TOC analysis
Particle control
Laser particle sizer, Liquid Particle Counter (LPC)
Physicochemical property testing
Karl Fischer titration
Functionality testing
Accelerated aging test, Electrical property tests
Quality Control and Testing Methods for </br>Electronic Chemical Polymer Monomer
Premium Electronic Chemical Polymer Monomer for Advanced Industries
83558-87-6
2,2-Bis(3-amino-4-hydroxyphenyl)-hexafluoropropane (6FAP) 83558-87-6 C15H12F6N2O2
36978-41-3
2,3,3',4'-BiphenyLtetracarboxylic Dianhydride (α-BPDA) 36978-41-3 C16H6O6
54628-89-6
1-(4-Aminophenyl)-2,3-dihydro-1,3,3-trimethyl-1H-inden-5-amin (PIDA) 54628-89-6 C18H22N2
95418-58-9
4-Tert-Butoxystyrene (PTBS) 95418-58-9 C12H16O
2628-16-2
4-Acetoxystyrene (ACS) 2628-16-2 C10H10O2
FAQs of Electronic Chemical Polymer Monomer
FAQs of Electronic Chemical Polymer Monomer
What level of quality can the products achieve?
The specific grades include:
Industrial grade (Purity ≥98%, suitable for general industrial use).
Reagent grade (e.g. AR grade, CP grade, suitable for laboratory and analytical use).
Electronic grade (High purity ≥99.90%, suitable for Semiconductor, Photovoltaic and other high-end fields).
Pharmaceutical grade (GMP compliant, suitable for pharmaceutical industry).
What are the packaging specifications for the products?
We provide flexible packaging options, common specifications are as follows:
Small packaging: 1kg, 5kg, 25kg (bottles/bags).
Medium packaging: 200kg drums, IBC tonne drums.
Customized packaging: Sub-assembling or OEM service according to customers' requirements.
Note: Hazardous chemicals need to meet UN standard packaging, please consult customer service for details.
How many days is the delivery time for bulk?
Spot products: Usually 3-7 working days to send out.
Customized products: 6-8 weeks according to the order quantity, the exact time will be confirmed in the contract.
Note: Delivery time may be affected by logistics, customs or extreme weather, we will update the progress in real time and inform you.
What is the minimum order quantity (MOQ) for the products?
Conventional products: MOQ is 1kg/1 bag (samples are available for some reagents).
Custom synthesis products: MOQ is subject to negotiation based on process requirements (usually ≥100g).
Note: Small sample orders may be subject to additional dispensing charges.
What are the payment methods and conditions?
We support the following payment methods:
T/T in advance (provide company bank account information).
Letter of credit (L/C).
Payment on account (subject to qualification review, usually 30 days forward).
New customers need to pay full or partial deposit in advance for the first time cooperation.
How do we ensure product quality?
Source control: By strict screening of suppliers, all raw materials are tested in the factory.
Production process: Follow ISO 9001 quality management system, multiple quality inspection in key links.
Ex-factory inspection: Provide COA or third party inspection report (such as SGS) for each batch.
After-sale guarantee: If quality problems occur, support returns and provide technical traceability reports.
Electronic Chemicals Custom Synthesis Process
https://www.heynovachem.com/custom-synthesis/
#define #sythesis
Heynova offers customized services tailored to customer needs. The entire R&D process is subject to cleanliness management throughout the synthesis, purification and packaging processes, with the cycle from request to delivery compressed to 8-10 weeks. Strict quality control ensures that samples precisely meet the stringent requirements for specialized chemicals.
Demand Analysis and... moreElectronic Chemicals Custom Synthesis Process
https://www.heynovachem.com/custom-synthesis/
#define #sythesis
Heynova offers customized services tailored to customer needs. The entire R&D process is subject to cleanliness management throughout the synthesis, purification and packaging processes, with the cycle from request to delivery compressed to 8-10 weeks. Strict quality control ensures that samples precisely meet the stringent requirements for specialized chemicals.
Demand Analysis and Technical Assessment
1. Customer communication
Clarify the use of the product, performance indicators, compliance requirements and delivery time, and confirm the need to provide MSDS.
2. Technical feasibility analysis
Evaluate the supply channels and costs of raw materials;
Screen synthetic routes, and analyze the impact of reaction conditions on the product;
Predict the process difficulties.
Experimental Development Stage
1. Small trial optimization
Design several sets of experimental parameters, and determine the optimal conditions through orthogonal experiments; use HPLC, GC-MS and other instruments to detect the purity of the product and the content of impurities.
2. Pilot scale-up
Verify the stability of the laboratory process under industrial conditions, adjust the stirring rate, heat transfer efficiency and other parameters;
Optimize the continuous production process to reduce energy consumption and waste generation.
Sample Preparation and Validation
1. Sample production
Batch production of samples according to customer requirements, with detailed experimental records.
2. Performance test
Toxicology test and environmental stability test conducted by third-party organizations;
Customer on-site trial to collect feedback.
Mass Production Preparation and Delivery
1. Process standardization
Prepare SOPs, specifying raw material acceptance criteria, key control points and emergency treatment plans.
2. Compliance Documentation
Complete REACH, RoHS and other certifications;
Formulate production safety plans to ensure compliance with OSHA.
3. Mass Production and Delivery
Select packaging specifications according to customer needs;
Provide transportation solutions and after-sales service support.
Continuous Improvement and Iteration
Regularly collect feedback from customers to optimize the formula or process;
Track the industry's technology dynamics to enhance product competitiveness.
Unmatched Advantages in Electronic Chemicals Custom Synthesis
Advanced Synthesis Technology and Equipment
Enabling us to efficiently and precisely synthesize various complex electronic chemicals. Through strict quality control and regular maintenance, we ensure the stable operation of the production process, thereby significantly enhancing the reliability and consistency of our products.
Extensive Experience and Professional Expertise
Providing customized electronic chemical solutions tailored to our customers' specific needs. Whether addressing common electronic chemical needs or meeting customized requirements for special application scenarios, we leverage our deep professional expertise and extensive experience to deliver satisfactory products and services to our customers.
Strong Emphasis on QC and R&D Innovation
Continuously optimizing product performance to ensure customers receive high-quality, reliable electronic chemicals. From raw material procurement, production process control to finished product testing, every step strictly adheres to international standards and industry regulations, ensuring each batch of products meets exceptional quality standards.