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Polylactic acid Mw ~60,000. Group: Biodegradeable polymers. Alfa Chemistry Analytical Products
Polylactic acid Polylactic acid can be used as a filler. Uses: Used as a solvent and acidulant in the production of foods, drugs, and dyes; also used as a mordant in woolen goods printing, a soldering flux, a dehairing agent, and a catalyst for phenolic resins; also used in leather tanning, oil well acidizing, and as a plant growth regulator. Synonyms: Poly(2-hydroxypropionic acid). CAS No. 26100-51-6. BOC Sciences
Polylactic acid Polylactic acid. CAS No. 26023-30-3. Product ID: PE-0295. Molecular formula: (C3H4O2)n. Category: Sustained & Controlled Release Materials. Product Keywords: Pharmaceutical Excipients; Sustained & Controlled Release Materials; Polylactic acid; PE-0295; (C3H4O2)n; 26023-30-3; 26023-30-3. Purity: 0.99. Synonym(s): Poly-2-hydroxypropanoic acid;Polysarcolatic acid;PLA. Storage: -20°C. Melting Point: 262°C(lit.). Density: 1.25-1.28 g/cm3. CD Formulation
Polylactic acid Polylactic acid. Group: Polymers. Alternative Names: Poly-2-hydroxypropanoic acid; Polysarcolatic acid; Poly[oxy(1-methyl-2-oxo-1,2-ethanediyl)]; Poly(DL-lactide),viscosity >11.25 dL/g; Poly(DL-lactide),viscosity 0.30~0.75 dL/g; Poly(DL-lactide),viscosity 0.75~1.25 dL/g; Poly(DL-lactide),viscosity 1.25~1.75 dL/g; Poly(DL-lactide),viscosity 1.75~2.25 dL/g. CAS No. 26023-30-3. Molecular formula: 0. Mole weight: (C3< / sub>H4< / sub>O2< / sub>) n. Alfa Chemistry Materials 7
Polylactic acid Polylactic acid(PLA) is a biodegradable polyester synthesized from lactic acid monomer via ring opening polymerization. Owing to its excellent thermal, mechanical and barrier properties, it is widely used in the field of tissue engineering, drug delivery, and orthopedic devices. Synonyms: Poly(2-hydroxypropionic acid); PLA. CAS No. 26100-51-6. Product ID: MSMN-025. Category: Raw Materials. CD Formulation
Polylactic acid Polylactic acid. Synonyms: Poly(2-hydroxypropionic acid). CAS No. 26100-51-6. Pack Sizes: 1 g. Product ID: PE-0328. Category: Carrier Excipients. Product Keywords: Pharmaceutical Excipients; Carrier Excipients; Polylactic acid; PE-0328; 26100-51-6; 26100-51-6. Physical State: Solid. Quality Level: 100. CD Formulation
Polylactic acid Polylactic acidThat is, polylactic acid, which can be used as a filler. Uses: Scientific research. Group: Biochemical assay reagents. Alternative Names: PLA. CAS No. 26100-51-6. Pack Sizes: 100 mg; 500 mg. Product ID: HY-W250313. MedChemExpress MCE
Polylactic Acid Polylactic acid is a thermoplastic aliphatic polyester. The lactic acid or lactide required for the production of polylactic acid can be obtained by fermentation, dehydration and purification of renewable resources. The obtained polylactic acid generally has good mechanical and processing properties, and the polylactic acid product can be quickly discarded in various ways. degradation. Uses: They adopt nanometer-scale dimensions, and can be ideal candidates for drug delivery, gene transfection applications. Group: 3d printing materials biodegradable polymers. Alternative Names: Poly(2-Hydroxypropionic Acid). CAS No. 26100-51-6. Product ID: 2-hydroxypropanoic acid. Molecular formula: Mn ~30,000 Mw ~60,000. Mole weight: [C3H4O2]n. CC(C(=O)O)O. 1S/C3H6O3/c1-2(4)3(5)6/h2, 4H, 1H3, (H, 5, 6). JVTAAEKCZFNVCJ-UHFFFAOYSA-N. Alfa Chemistry Materials 6
Polylactic Acid, Mw ~60,000 Polylactic acid is a thermoplastic aliphatic polyester. The lactic acid or lactide required for the production of polylactic acid can be obtained by fermentation, dehydration and purification of renewable resources. The obtained polylactic acid generally has good mechanical and processing properties, and the polylactic acid product can be quickly discarded in various ways. degradation. Uses: They adopt nanometer-scale dimensions, and can be ideal candidates for drug delivery, gene transfection applications. Additional or Alternative Names: Poly(2-hydroxypropionic acid); Polylactide; PLA. Product Category: 3D Printing Materials for Research and Development. Appearance: Solid. CAS No. 26100-51-6. Molecular formula: (C3H4O2)n. Mole weight: ~60,000 (Mw ~30,000). IUPACName: 2-hydroxypropanoic acid. Product ID: ACM26100516-10. Alfa Chemistry — ISO 9001:2015 Certified. Alfa Chemistry.
Polyethylene glycol monomethyl ether-polylactic acid block copolymer Custom. Synonyms: Macrogol 1450. Product ID: PE-0508. Category: Carrier Excipients. Product Keywords: Pharmaceutical Excipients; Other Materials; Polyethylene glycol monomethyl ether-polylactic acid block copolymer; Carrier Excipients; Carrier Excipients. Chemical Name: Polyethylene Glycol 1450. Grade: Pharmceutical Excipients. Administration route: Oral; Topical; urethra. Dosage Form: Suppositories, gels, patches, tablets. CD Formulation
3,6-Dimethyl-1,4-dioxane-2,5-dione 3,6-Dimethyl-1,4-dioxane-2,5-dione can be used in the synthesis of biodegradable homo- and copolymers. Uses: Used to make polylactic acid and cosmetics. Synonyms: Lactide; DL-Lactide; 3,6-Diketo-2,5-dimethyl-1,4-dioxane; 3,6-Dimethyl-p-dioxane-2,5-dione. Grades: 95 %. CAS No. 95-96-5. Molecular formula: C6H8O4. Mole weight: 144.13. BOC Sciences 8
3,6-Dimethyl-1,4-dioxane-2,5-dione homopolymer It is an aliphatic polyester that is considered to be a safe material and its biodegradable properties. It is primarily used as a biocompatible and biodegradable carrier for many types of human and veterinary implant or injection delivery systems. Uses: Used to make polylactic acid and cosmetics. Synonyms: Poly(DL-lactide); Lactel DL-PLA; 1,4-Dioxane-2,5-dione, 3,6-dimethyl-, homopolymer; PDLLA; Lactide polymer; Polylactide; p-Dioxane-2,5-dione, 3,6-dimethyl-, polyesters; D,L-Lactide homopolymer; D,L-Lactide-L-lactide copolymer; D-Lactide-L-lactide copolymer; DL-Lactide-D-lactide copolymer; DL-Lactide-L-lactide copolymer; DL-3,6-Dimethyl-1,4-dioxane-2,5-dione homopolymer; DL-Dilactide homopolymer; DL-Dilactide polymer; DL-Lactide homopolymer; DL-Lactide polymer; L-Lactide-D,L-lactide copolymer; L-Lactide-D-lactide copolymer; L-Lactide-DL-lactide copolymer; L-Lactide-lactide copolymer; CPX 5-2; DL-Lactide-L-lactide copolymer; Lactide homopolymer; Lactide polymer; Lactide-D-lactide copolymer; Poly(D,L-Lactide-co-L-lactide); Poly(L-lactide-co-DL-lactide); Poly(lactide); Poly-dl-lactide; Pullulan polylactide; Purasorb DL homopolymer; Purasorb PLDL 8038; rac-Lactide homopolymer; Resomer R 203S. CAS No. 26680-10-4. Molecular formula: (C6H8O4)n. BOC Sciences 9
Diethyl Adipate Diethyl Adipate is a useful reagent to develop water-and oil-repellent surfaces and biodegradable flexible films of polylactic acid and starch. Group: Biochemicals. Grades: Highly Purified. CAS No. 141-28-6. Pack Sizes: 5g, 25g. Molecular Formula: C10H18O4, Molecular Weight: 202.25. US Biological Life Sciences. USBiological 1
Worldwide
Diethyl Adipate-d10 Isotope labelled Diethyl Adipate is a useful reagent to develop water-and oil-repellent surfaces and biodegradable flexible films of polylactic acid and starch. Group: Biochemicals. Grades: Highly Purified. Pack Sizes: 10mg, 50mg. Molecular Formula: C10H8D10O4, Molecular Weight: 212.31. US Biological Life Sciences. USBiological 5
Worldwide
D-(+)-Lactide D-(+)-Lactide is the cyclic di-ester of lactic acid (L113490), an by product that is produced by muscle cells and red blood cells when the body breaks down carbohydrates for energy during times of low oxygen levels. Lactide can be polymerized to polylactic acid using a suitable catalyst go give materials of useful properties. Group: Biochemicals. Grades: Highly Purified. CAS No. 13076-17-0. Pack Sizes: 100mg, 500mg. Molecular Formula: C6H8O4. US Biological Life Sciences. USBiological 5
Worldwide
Methoxy polyethylene glycol-poly(D, L-lactic acid) Custom. Synonyms: MPEG-PLA. Product ID: PE-0507. Molecular formula: CH3(C2H4))m(C6H10O2)n. Mole weight: PEG(2000; 3400; 5000); PLA(1000-60000). Category: Carrier Excipients. Product Keywords: Pharmaceutical Excipients; Other Materials; Methoxy polyethylene glycol-poly(D, L-lactic acid); Carrier Excipients; Carrier Excipients; CH3(C2H4))m(C6H10O2)n. Chemical Name: Methoxy polyethylene glycol-poly(D, L-lactic acid). Grade: Pharmceutical Excipients. Stability and Storage Conditions: MPEG-PLGA is sensitive to light and temperature, for best use, the material should always be kept dry at low temperature and avoid frequent thawing and freezing. MPEG-PLGA should be kept dry at a low temperature below 4°C, protected from light, and the material can be handled under an inert gas for optimal stability. Retest the material after 12 months. Applications: Methoxypolyethylene glycol-polylactic acid (mPEG-PLA) is a block copolymer, one end is a hydrophilic segment - methoxypolyethylene glycol, and the other end is an lipophilic segment - polylactic acid. By adjusting the molecular weight or the ratio of hydrophilic/lipophilic segments, methoxypolyethylene glycol-polylactic acid can be used as a carrier material for different types of drugs, and improve the water solubility, encapsulation efficiency and drug loading of drugs. Methoxypolyethylene glycol-polylactic acid can be made into drug-loaded… CD Formulation
mPEG-PLA-PPEEA Polylactic acid (PLA) is a kind of non-toxic,non irritating synthetic polymer material with excellent biodegradability,compatibility and absorbability.It can be used as drug transport material and tissue engineering scaffold material. Synonyms: methoxy polyethylene glycol-Poly(D,L-lactide)-PPEEA. Product ID: MSMN-064. Category: Raw Materials. CD Formulation
PLA-b-PPEEA Polylactic acid (PLA) is a kind of non-toxic,non irritating synthetic polymer material with excellent biodegradability,compatibility and absorbability.It can be used as drug transport material and tissue engineering scaffold material. Synonyms: polylactic acid-b-PPEEA. Product ID: MSMN-062. Category: Raw Materials. CD Formulation
Tris(2,4-di-tert-butylphenyl) phosphite Tris(2,4-di-tert-butylphenyl) phosphite is a triaryl based phosphite that can be used in catalysis and metallation. Its characteristic to undergo metallation reaction and provide a cost effective synthetic processes allows it to be useful in biaryl coupling reactions. Uses: It may be used as a chain extender and a processing stabilizer that facilitate the production of stable polymeric materials, which include polylactic acid (pla), polyolefins, etc. Group: Plastic additivespolymerization additives. Alternative Names: 2,4-Bis(1,1-dimethylethyl)phenol phosphite (3:1), Tri(2,4-di-t -butylphenyl) phosphite, Tri(2,4-di-tert -butylphenyl) phosphite. CAS No. 31570-04-4. Pack Sizes: Packaging 100, 500 g in poly bottle. Product ID: tris(2,4-ditert-butylphenyl) phosphite. Molecular formula: 646.92. Mole weight: [[(CH3)3C]2C6H3O]3P. CC (C) (C)c1ccc (OP (Oc2ccc (cc2C (C) (C)C)C (C) (C)C)Oc3ccc (cc3C (C) (C)C)C (C) (C)C)c (c1)C (C) (C)C. 1S/C42H63O3P/c1-37(2, 3)28-19-22-34(31(25-28)40(10, 11)12)43-46(44-35-23-20-29(38(4, 5)6)26-32(35)41(13, 14)15)45-36-24-21-30(39(7, 8)9)27-33(36)42(16, 17)18/h19-27H, 1-18H3. JKIJEFPNVSHHEI-UHFFFAOYSA-N. 99%. Alfa Chemistry Materials 4
meso-Lactide Impurity of poly lactic acid or lactic acid dimerization / epimerization. meso-Lactide can be polymerized using dibutyltin derivatives. meso-Lactide was also found to be formed during polylactide processing. Group: Biochemicals. Grades: Highly Purified. CAS No. 13076-19-2. Pack Sizes: 10mg, 50mg. Molecular Formula: C6H8O4, Molecular Weight: 144.13. US Biological Life Sciences. USBiological 3
Worldwide
Poly(D,L-lactide-block-acrylic acid) The PLLA-block-PAA is a biocompatible diblock copolymer which forms cylindrical micelles. The PLLA is hydrophobic and a degradable block and the PAA is hydrophilic. Uses: This diblock copolymer can be used to self-assemble into a drug delivery vehicle. this particular block ratio and molecular weight forms spherical micelles. Group: Biodegradable polymers. Alternative Names: PDLLA -b-PAA 5kDa, Polylactide-block-polyacrylic acid, PLA-PAA. Pack Sizes: 1 g in glass bottle. Molecular formula: PAA Mn 18,000 PDLLA Mn 5,000. Mole weight: C13H25S3(C3H4O2)xC6H9NO(C3H4O2)yH. Alfa Chemistry Materials 5
Polyglycolide Biodegradable and biocompatible PGA could be potentially useful for bone regeneration. High molecular weight polyglycolide (PGA) can be prepared by ring opening polymerization of diglycolide in the presence of diphenyl bismuth bromide. Uses: Polyglycolide (pga) along with polylactide may be used to prepare a biodegradable copolymer to be used as implantations. fabrication of biopolymer/carbon nanotube composite has been reported using pga fiber as one of the constituents of the composite. modified porous pga scaffolds has been fabricated. Group: Biodegradable polymers. Alternative Names: PGA, Poly(glycolic acid). CAS No. 26124-68-5. Pack Sizes: 1, 5, 10 g in glass bottle. Product ID: 2-hydroxyacetic acid. Molecular formula: 76.05g/mol. Mole weight: (C2H4O3)n. OCC(O)=O. 1S/C2H4O3/c3-1-2(4)5/h3H,1H2,(H,4,5). AEMRFAOFKBGASW-UHFFFAOYSA-N. Alfa Chemistry Materials 7
Poly(L-lactide) Poly(L-lactide) (PLLA) and its copolymers are among the most studied biodegradable polymers. PLLA is a crystalline polymer with good mechanical properties. The applications of PLLA are mainly concentrated in biomedical applications. Group: 3d printing materials biodegradable polymers. Alternative Names: PLA, PLLA, Polylactide. Product ID: (2R)-2-hydroxypropanoic acid. Molecular formula: 90.08g/mol. Mole weight: CH3(C3H4O2)nCH3. CC(C(=O)O)O. InChI=1S/C3H6O3/c1-2(4)3(5)6/h2, 4H, 1H3, (H, 5, 6)/t2-/m1/s1. JVTAAEKCZFNVCJ-UWTATZPHSA-N. Alfa Chemistry Materials 6

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