Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing admin@sinochem-nanjing.com 3389378665@qq.com
Follow us:

Cyclohexyl Vinyl Ether

    • Product Name Cyclohexyl Vinyl Ether
    • Alias VCHE
    • Einecs 202-218-1
    • Mininmum Order 1 g
    • Factory Site Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing
    • Price Inquiry admin@sinochem-nanjing.com
    • Manufacturer Sinochem Nanjing Corporation
    • CONTACT NOW
    VTB
    Specifications

    HS Code

    208753

    Chemical Name Cyclohexyl Vinyl Ether
    Cas Number 931-01-7
    Molecular Formula C8H14O
    Molecular Weight 126.20 g/mol
    Appearance Colorless liquid
    Boiling Point 156-158 °C
    Density 0.886 g/mL at 25 °C
    Refractive Index 1.448-1.450 at 20 °C
    Flash Point 45 °C (closed cup)
    Purity Typically ≥98%
    Solubility Insoluble in water, soluble in organic solvents
    Smell Characteristic ether-like odor

    As an accredited Cyclohexyl Vinyl Ether factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Cyclohexyl Vinyl Ether is packaged in a 500 mL amber glass bottle with a secure cap, labeled with hazard and handling information.
    Shipping Cyclohexyl Vinyl Ether should be shipped in tightly sealed containers made of compatible materials, protected from light, moisture, and heat. It is typically transported as a hazardous material, requiring appropriate labeling and documentation. Ensure containers are upright and secure during transit to prevent leaks or spills. Use well-ventilated transport vehicles.
    Storage Cyclohexyl Vinyl Ether should be stored in a cool, dry, well-ventilated area away from sources of ignition and direct sunlight. Keep the container tightly closed and protected from moisture, heat, and incompatible substances, such as acids, oxidizers, and peroxides. Storage containers should be made of materials compatible with ethers and labeled appropriately. Avoid long-term storage to minimize polymerization or decomposition risks.
    Application of Cyclohexyl Vinyl Ether

    Applications of Cyclohexyl Vinyl Ether in Industrial Manufacturing

    As a direct manufacturer of Cyclohexyl Vinyl Ether, we supply this key intermediate to specialized sectors that leverage its unique ethereal structure and reactivity. Our technical expertise supports clients in advanced formulations across polymer, coatings, adhesives, electronics, and high-performance material productions where reproducible quality and regulatory compliance are essential.

    1. UV-Curable Coatings for Electronics and Optics

    Electronics and optical manufacturers utilize Cyclohexyl Vinyl Ether as a reactive diluent in UV-curable coatings designed for precise, high-gloss, and low-yellowing surfaces. Its cyclic ether structure enhances flexibility and adhesion, improving process yields in touch panels, smartphone displays, and precision optic covers. This material frequently enters formulations for photoresist hardcoats, where viscosity control and cure speed contrast directly affect throughput and defect rates.

    Industry compliance standards

    • IEC 61249-2-21 (Halogen-Free Requirements for Base Materials)
    • RoHS 2011/65/EU (Restriction of Hazardous Substances Directives)
    • UL 94 (Flammability of Plastic Materials for Parts in Devices and Appliances)
    • JEDEC J-STD-033 (Handling, Packing, Shipping and Use of Moisture/Reflow Sensitive Devices)

    Typical usage ratio

    • 10–40% by weight of total oligomer/monomer mix; adjustments made based on viscosity targets and UV lamp power available in production.

    Downstream process integration

    • Introduced during the blending of pre-polymer resin and photo-initiator stage; contributes to final viscosity and reactivity profiles prior to high-speed roll or spray coating and subsequent UV curing.

    Final product types

    • Mobile phone touchscreens, optical-grade protective films, micro-lens arrays, high-durability PCB coatings, integrated circuit encapsulants.

    2. Vinyl Ether Copolymerization for Specialty Elastomers

    Rubber and elastomer manufacturers incorporate Cyclohexyl Vinyl Ether in cationic copolymerizations to achieve specialty elastomers with tailored flexibility and solvent resistance. The cyclic ether enables precise molecular weight distribution, crucial for applications in premium automotive, aerospace, and industrial seals where abnormal shrinkage and degradation cannot be tolerated under variable chemical exposures.

    Industry compliance standards

    • SAE J200 (Classification System for Rubber Materials)
    • ASTM D2000 (Standard for Rubber Products in Automotive Applications)
    • ISO 9001:2015 (Quality Management Systems)
    • REACH EC No. 1907/2006 (Registration, Evaluation, Authorisation and Restriction of Chemicals)

    Typical usage ratio

    • 5–20% (based on monomer feed for copolymerization); precise dosage set by required elongation and modulus specifications in finished elastomer.

    Downstream process integration

    • Fed with base monomers (e.g., isobutylene or ethylene derivatives) and cationic initiators in continuous or batch polymerization reactors, prior to compounding with reinforcing fillers and plasticizers.

    Final product types

    • Automotive gaskets, aerospace sealing rings, vibration-damping pads, chemical-resistant hoses.

    3. Photopolymer Formulations for Microfabrication

    Microfabrication foundries use Cyclohexyl Vinyl Ether within high-resolution photopolymer resins. Its reactivity and molecular bulk play an essential role in reducing polymerization-induced stress while enabling fine feature replication during additive manufacturing, such as microfluidic devices or high-aspect-ratio MEMS structures. Process reliability depends on ethereal groups facilitating uniform cross-linking in challenging aspect ratios.

    Industry compliance standards

    • ISO 14644-1 (Cleanrooms and Associated Controlled Environments)
    • SEMI E49 (Standard for Wafer Processing Equipment)
    • IPC-6012 (Qualification and Performance Specification for Rigid Printed Boards)
    • RoHS 2011/65/EU

    Typical usage ratio

    • 15–35% of total photopolymer resin formulation, adjusted for layer thickness and exposure energy parameters validated by process simulation.

    Downstream process integration

    • Mixed with photoinitiators and multifunctional acrylates in a temperature-controlled vessel, then dispensed via inkjet, screen, or slot-die methods on silicon wafers or glass substrates, prior to selective UV exposure.

    Final product types

    • Microfluidic lab-on-chip cartridges, MEMS microneedle arrays, precision optical waveguides, custom biosensor substrates.

    4. Specialty Adhesives for High-Performance Assembly

    Industrial adhesive systems benefit from Cyclohexyl Vinyl Ether as a monomer and flexibilizer in both UV and dual-cure adhesives engineered for high shear retention and environmental durability. OEMs in automotive electronics, LED modules, and consumer device assembly value the compound for enhancing peel strength and moisture resistance while maintaining a stable cure profile under fast processing lines.

    Industry compliance standards

    • ISO 10993 (Biological Evaluation of Medical Devices, for electronics in medical devices)
    • IEC 60249-2-1 (Base Materials for Printed Circuits)
    • UL 746C (Polymeric Materials – Use in Electrical Equipment Evaluations)
    • ISO/TS 16949 (Automotive Quality Management Systems)

    Typical usage ratio

    • 8–25% of total adhesive weight; optimized depending on desired flexibility and environmental exposure tolerance defined in application standards.

    Downstream process integration

    • Incorporated during adhesive compounding, post-modification of base acrylate and epoxy resins, followed by addition of photoinitiators or heat-activated accelerators, then packaged in dual-barrel cartridges or syringe systems.

    Final product types

    • SMD (surface-mount device) assembly adhesives, display laminating glues, LED bonding compounds, moisture-resistant electronics encapsulants.

    5. Performance Additive in Functional Inks and Overprint Varnishes

    Printing and packaging converters blend Cyclohexyl Vinyl Ether to tailor functional inks and overprint varnishes with improved scuff, chemical, and abrasion resistance. Its monomeric form allows precise control of gloss and flexibility, critical for high-throughput offset and flexo lines serving premium consumer goods and personal care packaging where print durability and clarity are production bottlenecks.

    Industry compliance standards

    • EN 71-3 (Migration of certain elements for packaging in toys), where applicable
    • Swiss Ordinance RS 817.023.21 (Materials and Articles in Contact with Food – Printing Inks)
    • ISO 2836 (Resistance to solvents and other liquids for print products)
    • GMP Regulation (EC) No. 2023/2006 (Good Manufacturing Practice for Materials Intended to Come into Contact with Food)

    Typical usage ratio

    • 3–12% weight of ink or varnish concentrate; exact proportion set according to the chemical resistance and finish specification of the target print job.

    Downstream process integration

    • Blended into solvent- or water-based vehicles during mill base or letdown stages, prior to addition of pigments and driers; finalized as a component of both ink and topcoat varnish systems prior to gravure, flexo, or offset printing.

    Final product types

    • Cosmetic packaging sleeves, specialty label overprint inks, scratch-resistant folding cartons, luxury goods outer wraps.
    Free Quote

    Competitive Cyclohexyl Vinyl Ether prices that fit your budget—flexible terms and customized quotes for every order.

    For samples, pricing, or more information, please call us at +8615371019725 or mail to admin@sinochem-nanjing.com.

    We will respond to you as soon as possible.

    Tel: +8615371019725

    Email: admin@sinochem-nanjing.com

    Get Free Quote of Sinochem Nanjing Corporation

    Flexible payment, competitive price, premium service - Inquire now!

    Certification & Compliance
    More Introduction

    Cyclohexyl Vinyl Ether: From Production Floor to Everyday Application

    Proudly Developed, Thoroughly Tested

    Cyclohexyl Vinyl Ether (CVE) reflects our years on the development bench and the production line. Each batch comes from a process we have honed for reliability, starting with high-purity cyclohexanol and vinylation techniques that hold up under real-world pressures, not just in literature. We built our operation with a focus on reproducibility and lot-to-lot quality, giving our customers confidence whether they’re scaling up an industrial polymer formulation or testing in a lab setting. Over the years, we’ve handled requests from customers who want clean, low-color, and moisture-controlled CVE that holds up through shipping and storage, and we’ve adapted our manufacturing and packaging to help them avoid downstream waste.

    Model and Physical Details That Matter

    CVE comes as a clear, colorless liquid offered in various grades, but our most popular model is targeted at both high-reactivity and stability. Standard specs focus on purity above 99%, water content below 0.1%, and minimal peroxides by the time it leaves our facility. The molecular weight (MW 126.19) and boiling point (about 160–161°C at atmosphere) suit processes requiring easy incorporation and even volatilization during certain curing stages. The cyclohexyl ring gives a volatility and reactivity profile distinct from analogs, which we verify by GC and NMR in our quality control lab before any shipment gets a seal. Customers can request volumes ranging from liter bottles for R&D to drums and bulk loads; we also go beyond industry-average shelf-life by implementing regular peroxide checks and custom stabilization on request.

    Unique Place in Reactive Chemistry

    The vinyl functionality in CVE invites a broad spectrum of reactions, but we’ve seen it shine brightest in UV and free-radical polymerizations, particularly for specialty resins, coatings, and adhesives. The cyclohexyl backbone introduces a rigidity and hydrophobicity that ester- or alkoxy-type vinyl ethers simply can’t match. Many customers report increased resistance to hydrolysis and improved performance in end-use environments where flexibility and water ingress matter. In IPN (interpenetrating polymer network) designs, integration of CVE helps tune glass transition temperatures and enhance chemical resistance in ways that linear alkyl vinyl ethers don’t deliver. We’ve supported projects in electronics, automotive coatings, and dental materials where minute changes to monomer structure translate to better final properties.

    Supporting Sustainable Manufacturing

    Policymakers and end-users are demanding safer, more sustainable chemicals. As a manufacturer, we leverage improvements in raw material sourcing and energy-efficient distillation to drive down waste and emissions during CVE production. We recycle process solvents and continuously test alternative purification steps to minimize our use of potentially hazardous reagents. When developing our stabilization methods, we keep operator health and environmental safety at the front of our decisions. Downstream, CVE’s moderate toxicity profile and manageable MSDS handling allow our partners to formulate without major workflow overhauls. By offering technical support for correct processing and waste management, we help downstream users avoid common issues and minimize product loss.

    Tough Questions About Purity, Performance, and Alternatives

    Customers frequently approach us with direct questions—what makes CVE worth choosing over methyl vinyl ether, ethyl vinyl ether, or even aromatic derivatives? The cyclohexyl group stands out for its size and conformational flexibility, but the main talking point remains moisture stability. Methyl and ethyl analogs display higher volatility and greater susceptibility to hydrolysis, making them tricky for any formulation that faces atmospheric moisture or high heat. Aromatic vinyl ethers may trigger more regulatory scrutiny or off-gassing concerns. CVE’s middle ground—good reactivity, moderate vapor pressure, and a proven safety track record—offers peace of mind that less-robust ethers can’t provide. We routinely help customers dial in their initiator levels, UV flux, and processing windows, because the difference between a solid cure and a sticky failure often comes down to subtle decisions rooted in firsthand lab work.

    Everyday Use Cases: Directly from the Floor

    It’s common for resin manufacturers to rely on CVE for specialty polymer synthesis, achieving flexible or rigid networks depending on comonomer choice. We work with adhesive formulators who use CVE to tune open times and final strength in pressure-sensitive and hot-melt systems. Coatings teams will often come to us seeking help balancing hardness and flexibility—CVE’s structure lets them fine-tune performance by balancing crosslink density with backbone flexibility. Dental material manufacturers turn to CVE for reliable curing under visible light, leveraging its low-yellowing properties and ability to co-polymerize with methacrylates for wear-resistant prosthetics and fillings. Over the years, we’ve supported everything from small-batch research requests to full-scale industrial adoption, learning as much from customer feedback on production bottlenecks as from our own in-house development.

    Material Handling from Experience

    We’ve learned the hard way that improper storage undermines vinyl ether quality. Moisture ingress, over-exposure to light, and subpar stabilizer replenishment quickly degrade monomer activity. Each drum or bottle leaving our plant ships with careful sealing, nitrogen blanketing where needed, and guide sheets based on lessons from the field. Our experience has also shown that bulk buyers sometimes overlook the outsized impact of drum headspace—oxygen exposure encourages peroxide buildup, so we recommend periodic testing and stabilizer boosts for inventory held over six months. Even in small-scale use, clean transfer lines and thoughtfully selected packaging materials prevent contamination, helping users achieve smooth, consistent reaction results.

    Comparisons to Other Vinyl Ethers—Not Just on Paper

    Many buyers start by asking about price-per-kilo, but, in specialty polymers, material properties in the real world quickly close the gap between initial cost and total value. CVE frequently outperforms straight-chain analogs in terms of formulation stability and final product resilience. We’ve tested side-by-side runs where cyclohexyl vinyl ether-based systems surpassed butyl or vinyl ethyl ether in resistance to discoloration and cracking after environmental stress. The lower tendency toward premature crosslinking, as well as a reduced sensitivity to trace acids or peroxides, makes CVE a favorite among our long-term industrial partners. The cost of formulation failures, inconsistent throughput, and unplanned waste often far outweigh the savings from cheaper monomers, especially for demanding applications in electronics, automotive, or construction.

    Addressing Real Concerns—From Precautions to Performance Choices

    Flammability and volatility come up routinely in safety reviews. Our safety team ensures that each unit meets regulatory shipment standards with clear labeling and up-to-date hazard guidance. End-users find that CVE’s vapor pressure makes it easier to control in open-mouthed processes than lower-boiling vinyl ethers; this leads to less evaporation loss and fewer headaches with exhaust systems. On production lines, minor investments in local exhaust ventilation and good housekeeping pay off with fewer incidents and less contamination of surrounding processes. Because small impurities can cause unexpected reactivity or color shifts, we regularly communicate storage recommendations and offer technical training to customers’ line operators as value-added support. The trust built through years of troubleshooting together results in lasting customer relationships and higher productivity.

    Feedback Drives Improvement

    Direct feedback from formulators and production engineers has shaped how we approach scale-up, technical support, and packaging decisions. Customers often look for more than a straight sale—they want insight from someone who’s seen the raw material through not just its initial batch, but through dozens of production cycles, environmental testing rounds, and sometimes, full product recalls. We use this accumulated experience to refine our internal processes, shorten lead times for new specs, and spot-batch test for specialty projects. We value transparency with buyers, knowing that informed customers make better downstream products. Open communication keeps both parties agile in adapting to regulatory shifts or new application challenges.

    The Evolution of Cyclohexyl Vinyl Ether Use Cases

    Use of CVE has evolved far beyond the early days of experimental coatings. Our plant has supplied material for smart coatings in aerospace, UV-cured optical adhesives, and dental composites where exacting standards matter. The demand for lighter, tougher, and more weatherable polymers puts cyclic vinyl ethers at the center of next-generation design. We’ve seen an uptick in interest from energy storage researchers, who capitalize on CVE’s distinct polarity and reactivity for making flexible, stable electrolytes and separator films. Coupled with its manageable workup and safe handling profile, CVE continues to open doors for innovation. The key is always a two-way street: sharing production realities with development teams, and learning from the field about what works and where the pain points remain.

    Supplier as Partner—Not Just a Transaction

    Years in this business remind us that no customer query is too minor. Being the manufacturer means we control each step, from raw input to outgoing shipment, so troubleshooting issues—like batch contaminants or unexpected yellowing—falls on us. Customers benefit from the direct relationship, skipping the guesswork of unclear supply chains or relabeled goods. Our team routinely visits end-user facilities to understand pain points firsthand, feeding this practical knowledge straight back into our production tweaks. Every batch label, data sheet, and support call ties back to people who have literally put hands on the product.

    Regulatory and Environmental Footprint

    CVE falls under growing scrutiny as green chemistry principles guide industry standards. We have preemptively adapted to evolving regulatory expectations, maintaining up-to-date registration paperwork and offering customers documentation on purity, origin, and safety classification. By optimizing production routes and investing in greener, low-waste technologies, we do our part to protect both our employees and the communities that border our facility. Ongoing collaborations with research institutions focus on lifecycle analysis and alternatives for end-of-life disposal, since extended dialogue across the value chain ensures that safety and sustainability stay front and center.

    Pushing Boundaries with Research Partnerships

    Adapting cyclohexyl vinyl ether for new applications wouldn’t happen without sustained engagement with innovators outside the factory. We maintain partnerships with university teams, industrial consortia, and in-house customer R&D, offering prototype runs, joint troubleshooting, and knowledge exchange on topics like process optimization or advanced analytics. Bringing CVE into next-generation thermosets, membranes, and adhesives means less trial-and-error downtime and fewer unplanned recalls. This approach feeds back into our own analytical methods and helps us anticipate regulatory or commercial pivots before they arrive. As standards for monomer purity and traceability rise, the close links we build with R&D teams improve both product performance and the speed of innovation.

    Listening—And Responding—To the People Who Actually Use It

    Lab managers, production engineers, and formulations chemists don’t want just a drum with a label. They want access to people who understand what a sudden spike in discoloration or cure time variance really means. We encourage open lines of communication, making troubleshooting sessions part of our ongoing service—not a last resort. Product managers and quality assurance teams regularly share what they’re seeing in the field, and our job is to listen, react quickly, and deliver solutions that avoid repeating past mistakes. Over the years, these conversations have helped us solve issues like stabilizer compatibility, unexpected reactivity in composite matrices, and improved bulk storage protocols—real responses shaped by actual problems, not abstract hypotheticals.

    Summary: Experience in Every Batch

    Cyclohexyl Vinyl Ether’s value shows up in the details: purity, stability, user support, and a clear understanding of downstream needs. We have learned from every ton shipped, every unexpected challenge, and every successful scale-up in our customer base. Focusing on those who rely on materials that work consistently—from prototype to production—we keep our process adaptable and our support practical. Choosing our CVE means working directly with people who have seen challenges play out in real time and can act quickly when production realities shift.