Description
ACMO Monomer / 4-acryloylmorpholine cas 5117-12-4
| Item | Specification |
| Appearance | Colorless or light yellow clear liquid |
| Assay | ≥98.0% |
| Color | ≤50APHA |
| Viscosity | ≤12cps(25℃) |
| Moisture | ≤0.3% |
ACMO Monomer / 4-Acryloylmorpholine Application
1. ACMO, as a heat-resistant functional monomer of great importance in the field of materials science, exhibits a number of remarkable qualities. In terms of skin irritation, its P.I.I. value is as low as 0.5, which means that its potential irritation to human skin is minimal, greatly guaranteeing its safety in relevant application scenarios. It is also worth mentioning that ACMO has a very low vapor pressure, which makes it virtually odorless during use, effectively avoiding the impact of bad odors from volatiles on the environment and the user, thus broadening its application scope, for example, in the field of interior decoration materials or personal care products that are sensitive to odors.
2. In practical applications, ACMO’s low viscosity combined with its fast curing advantage makes it an indispensable active diluent in UV-curable resins. Take the coating of electronic products as an example, ACMO can be quickly and uniformly dispersed in the resin system, curing rapidly under UV irradiation to form a tough and stable protective film, effectively improving the wear and corrosion resistance of the product, and meeting the demand for thin, light and durable coatings for electronic products.
3. In-depth exploration of the homopolymer of ACMO, its good dilution and solubility make it can be perfectly adapted with a variety of solvents. This property plays a key role in the coatings and inks industries. For example, in the development of waterborne coatings, ACMO homopolymers help to disperse pigments and ensure good leveling and spreading properties, which improves the quality of the coatings and the efficiency of their application.
4. ACMO shows excellent compatibility with oligomers, functional propionates and tree cells. In the preparation of composite materials, this good compatibility enables ACMO to be closely combined with other components to synergize their respective advantages and significantly improve the comprehensive performance of the materials. For example, in high-performance fiber-reinforced composites, the addition of ACMO can optimize the interfacial bonding between resin matrix and fibers, and enhance the mechanical properties and durability of the materials.
5. In the process of polymerization reaction, compared with most of the propionic acid monomers, the curing speed of ACMO has obvious advantages. From the point of view of chemical reaction kinetics, the molecular structure and reactive groups of ACMO enable it to react more efficiently with other monomers during the polymerization process to form a stable polymer network. This property is of great value in rapid prototyping processes. For example, in the field of 3D printing, resin materials using ACMO as one of the monomers can achieve rapid layer-by-layer curing, improving printing efficiency and model accuracy.
6. ACMO-modified UV and EB curing resins exhibit excellent resistance to moisture absorption, acids and alkalis, and solvents. In the coating of chemical storage containers, these resins are effective in resisting acid and alkali solutions and organic solvents, preventing rust and corrosion, extending the life of the container, and reducing maintenance costs and safety risks for organizations.
The nitrogen radical in the ACMO molecule contains a unique chemical activity that effectively inhibits oxygen-induced polymerization reactions. This property is critical in scenarios where the precision of the polymerization reaction is critical, such as in the preparation of optical materials, where the presence of ACMO ensures that the polymerization reaction proceeds as expected, avoiding defects due to oxygen interference, thus ensuring high transparency and stability of the optical properties of the optical material.
ACMO Monomer / 4-Acryloylmorpholine Features
1.water soluble monomer
2. quick curing
3. low viscosity
4. low volatility
5. less irritation to the skin.
ACMO Monomer / 4-Acryloylmorpholine Packaging and Shipping
Packing: 25L or 200L/drum.
Delivery:within 5-7 working days.
ACMO Monomer / 4-Acryloylmorpholine storage
Stored in a cool dry place out of direct sunlight.
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| CHLUMICRYL® Bis-GMA Monomer | CAS 1565-94-2 | Bisphenol A Glycidyl Methacrylate |
| CHLUMICRYL® BZA Monomer | CAS 2495-35-4 | benzyl prop-2-enoate |
| CHLUMICRYL® BZMA Monomer | CAS 2495-37-6 | Benzyl methacrylate |
| CHLUMICRYL® CHA Monomer | CAS 3066-71-5 | cyclohexyl prop-2-enoate |
| CHLUMICRYL® CHMA | CAS 101-43-9 | Cyclohexyl methacrylate |
| CHLUMICRYL® DCPA Monomer | CAS 12542-30-2 | Dihydrodicyclopentadienyl Acrylate |
| CHLUMICRYL® DCPEMA Monomer | CAS 68586-19-6 | Dicyclopentenyloxyethyl Methacrylate |
| CHLUMICRYL® DCPMA Monomer | CAS 30798-39-1 | Dihydrodicyclopentadienyl methacrylate |
| CHLUMICRYL® DEAEA Monomer | CAS 2426-54-2 | 2-(diethylamino)ethyl prop-2-enoate |
| CHLUMICRYL® DEAM Monomer | CAS 105-16-8 | Diethylaminoethyl methacrylate |
| CHLUMICRYL® DMAEA Monomer | CAS 2439-35-2 | Dimethylaminoethyl acrylate |
| CHLUMICRYL® DMAEMA | CAS 2867-47-2 | N,M-Dimethylaminoethyl methacrylate |
| CHLUMICRYL® DMES | CAS 3570-55-6 | 2,2′-Thiodiethanethiol/Bis(2-mercaptoethyl) sulfide/Dimercapto diethyl sulfide/THIOCURE DMDS/Polythiol DMDS/Mercaptan DMDS |
| CHLUMICRYL® DMPT | CAS 131538-00-6 | THIOCURE DMPT |
| CHLUMICRYL® ECPMA Monomer | CAS 266308-58-1 | 1-Ethylcyclopentyl Methacrylate |
| CHLUMICRYL® EEMA | CAS 2370-63-0 | 2-ethoxyethyl 2-methylprop-2-enoate |
| CHLUMICRYL® EGDMA Monomer | CAS 97-90-5 | Ethylene glycol dimethacrylate |
| CHLUMICRYL® EGDMP Monomer | CAS 22504-50-3 | Ethylene glycol Bis(3-mercaptopropionate) |
| CHLUMICRYL® EHMA | CAS 688-84-6 | 2-Ethylhexyl methacrylate |
| CHLUMICRYL® EMA Monomer | CAS 97-63-2 | Ethyl methacrylate |
| CHLUMICRYL® EO10-BPADA Monomer | CAS 64401-02-1 | ethoxylated bisphenol A diacrylate |
| CHLUMICRYL® EO4-BPADA Monomer | CAS 64401-02-1 | ethoxylated bisphenol A diacrylate |
| CHLUMICRYL® HDCPA Monomer | CAS 79637-74-4 | Dicyclopentenyl acrylate (hydrogenation) |
| CHLUMICRYL® IBA Monomer | CAS 106-63-8 | Isobutyl acrylate |
| CHLUMICRYL® i-BMA | CAS 97-86-9 | Isobutyl methacrylate |
| CHLUMICRYL® MCPMA Monomer | CAS 178889-45-7 | 1-Methylcyclopentyl Methacrylate |
| CHLUMICRYL® MEMA | CAS 6976-93-8 | 2-Methoxyethyl Methacrylate |
| CHLUMICRYL® MPEG Monomer | CAS 26915-72-0 | MPEG Monomer |
| CHLUMICRYL® Muscomer Tricyclodecanedimethanol | CAS 26896-48-0 | Muscomer Tricyclodecanedimethanol |
| CHLUMICRYL® N,N-Dimethyl Acrylamide | CAS 2680-03-7 | N,N-Dimethyl Acrylamide |
| CHLUMICRYL® n-BMA | CAS 97-88-1 | n-Butyl methacrylate |
| CHLUMICRYL® PETMP Monomer | CAS 7575-23-7 | PETMP Monomer |
| CHLUMICRYL® Polythiol PM839 | CAS 72244-98-5 | Polythiol PM839 |
| CHLUMICRYL® TBAEMA | CAS 3775-90-4 | 2-(Tert-butylamino)ethyl methacrylate |
| CHLUMICRYL® THFMA Monomer | CAS 2455-24-5 | Tetrahydrofurfuryl methacrylate |
| CHLUMICRYL® ACMO Monomer | CAS 5117-12-4 | 4-acryloylmorpholine |
| CHLUMICRYL® DCPEOA Monomer | CAS 65983-31-5 | Dicyclopentenyloxyethyl Acrylate |
| CHLUMICRYL® DI-TMPTA Monomer | CAS 94108-97-1 | DI(TRIMETHYLOLPROPANE) TETRAACRYLATE |
| CHLUMICRYL® DPGDA Monomer | CAS 57472-68-1 | Dipropylene Glycol Dienoate |
| CHLUMICRYL® DPHA Monomer | CAS 29570-58-9 | Dipentaerythritol hexaacrylate |
| CHLUMICRYL® EO3-TMPTA Monomer | CAS 28961-43-5 | Ethoxylated trimethylolpropane triacrylate |
| CHLUMICRYL® EOEOEA Monomer | CAS 7328-17-8 | 2-(2-Ethoxyethoxy)ethyl acrylate |
| CHLUMICRYL® GPTA ( G3POTA ) Monomer | CAS 52408-84-1 | GLYCERYL PROPOXY TRIACRYLATE |
| CHLUMICRYL® HDDA Monomer | CAS 13048-33-4 | Hexamethylene Diacrylate |
| CHLUMICRYL® HEMA Monomer | CAS 868-77-9 | 2-hydroxyethyl methacrylate |
| CHLUMICRYL® HPMA Monomer | CAS 27813-02-1 | 2-Hydroxypropyl methacrylate |
| CHLUMICRYL® IBOA Monomer | CAS 5888-33-5 | Isobornyl acrylate |
| CHLUMICRYL® IBOMA | CAS 7534-94-3 | Isobornyl methacrylate |
| CHLUMICRYL® IDA Monomer | CAS 1330-61-6 | Isodecyl acrylate |
| CHLUMICRYL® IPAMA Monomer | CAS 297156-50-4 | 2-isopropyl-2-adamantyl methacrylate |
| CHLUMICRYL® LMA Monomer | CAS 142-90-5 | Lauryl methacrylate |
| CHLUMICRYL® NP-4EA Monomer | CAS 50974-47-5 | (4) ethoxylated nonylphenol |
| CHLUMICRYL® NPGDA Monomer | CAS 2223-82-7 | Neopentyl glycol diacrylate |
| CHLUMICRYL® PDDA | Phthalate diethylene glycol diacrylate | |
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| CHLUMICRYL® PETA Monomer | CAS 3524-68-3 | PETA; 2-(Hydroxymethyl)-2-[[(1-oxoallyl)oxy]methyl]-1,3-propanediyl diacrylate; 3-(acryloyloxy)-2-[(acryloyloxy)methyl]-2-(hydroxymethyl)propyl acrylate |
| CHLUMICRYL® PHEA Monomer | CAS 48145-04-6 | 2-PHENOXYETHYL ACRYLATE |
| CHLUMICRYL® PO2-NPGDA | CAS 84170-74-1 | |
| CHLUMICRYL® TEGDMA Monomer | CAS 109-16-0 | Triethylene glycol dimethacrylate |
| CHLUMICRYL® THFA Monomer | CAS 2399-48-6 | Tetrahydrofurfuryl acrylate |
| CHLUMICRYL® TMPTA Monomer | CAS 15625-89-5 | Trimethylolpropane triacrylate |
| CHLUMICRYL® TMPTMA Monomer | CAS 3290-92-4 | Trimethylolpropane trimethacrylate |
| CHLUMICRYL® TPGDA Monomer | CAS 42978-66-5 | Tripropylene glycol diacrylate |
| CHLUMICRYL® UV Functional Monomers | Acrylic Monomers |





Elroy Joe –
good product, we order more samples for more tests hope to work with this supplier and get a good price for wholesale