PEG methacrylate - Average M.W. 2000
CAS: 25736-86-1
Rif. 3D-FP176145
10ml | 172,00 € | ||
25ml | 248,00 € | ||
50ml | 363,00 € | ||
100ml | 518,00 € | ||
250ml | 800,00 € |
Informazioni sul prodotto
- Bisomer 550
- Bisomer PEM 3
- Bisomer PEM 6
- Bisomer PEM 6E
- Bisomer PEM 6LD
- Blemmer PE
- Blemmer PE 200
- Blemmer PE 30
- Blemmer PE 350
- Blemmer PE 400
- Vedi altri sinonimi
- Blemmer PE 90
- Blemmer PEG 300
- Cd 570
- Cd 571
- Ethoxylated 2-hydroxyethyl methacrylate
- Glycols, polyethylene, monomethacrylate
- Hem 10
- Hem 5
- Hema 10
- Hema 5
- MA 100 (polyoxyalkylene)
- MA 150 (polyglycol)
- MA 50 (polyoxyalkylene)
- Ma 100
- Ma 100A
- Ma 150
- Ma 150Mf
- Ma 50
- Ma 5000
- Ma 50A
- Ma 80
- Ma 80A
- Methacrylate 100
- Methacrylate 50
- Methacrylic acid, esters with polyethylene glycols
- Methacrylic acid, monoester with polyethylene glycol
- NK Ester M 230T
- NK Ester TM 90G
- Newfrontier NF Bisomer PEM 6E
- Oeoma 300
- Oeoma 500
- Oeoma 950
- PEG monomethacrylate
- Pe 200
- Pe 350
- Pe 90
- Pem 6Ld
- Pm 350G
- Pm 90G
- Poly(Ethylene Glycol) (N) Monomethacrylate
- Poly(OEGMA)
- Poly(ethylene oxide) monomethacrylate
- Poly(oxy-1,2-ethanediyl), α-(2-methyl-1-oxo-2-propen-1-yl)-ω-hydroxy-
- Poly(oxy-1,2-ethanediyl), α-(2-methyl-1-oxo-2-propenyl)-ω-hydroxy-
- Polyethylene glycol 3000 monomethacrylate
- Polyethylene glycol methacrylate
- Polyethylene glycol methacrylate ester
- Polyethylene glycol monomethacrylate
- Pp 1000
- Sartomer CD 570
- Sartomer CD 572
- Sipomer HEM 20
Polyethylene glycol methacrylate (PEGMA) is a polymer that consists of methacrylic acid and polyethylene glycol. PEGMA is used in the synthesis of water-soluble polymers with a broad range of properties, such as biodegradability, hydrophilicity, and solubility. PEGMA can be prepared by reacting methacrylic acid with polyethylene glycol to form a copolymer. The average molecular weight of PEGMA can be controlled by varying the reaction conditions, such as temperature, pressure, or solvent composition. PEGMA has been shown to form nanometric capsules when it is dissolved in chloroform at high temperatures. These capsules are stable for hours and are able to encapsulate small model systems such as erythrocytes and latex beads. This technique has been applied successfully to microfabrication techniques using photolithography that use an x-ray photoelectron spectroscopy (
Proprietà chimiche
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