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ester terminated,Intrinsic viscosity:3.3-4.3 dL/g(0.1% in CHCL3 at 25℃) for sensitive chromatographic and analytical workflows requiring minimal baseline interference.
Store at 2-8°C Ships Wet ice Check lot-specific COA for exact specifications.
SDS, COA, datasheet, and spec sheet available for download. Lot-specific COA accessible via lot number lookup.
Cited in 14 peer-reviewed publications across chromatography, organic synthesis, and cross-coupling reactions.
Resomer® L 210 S, Poly(L-lactide) (PLLA), a high-performance bio-based polymer, can be prepared from corn starch. Its properties include biodegradability, hydrophobicity, and excellent composting characteristics.
Application:
Biodegradable, biocompatible, and bioresorbable polymer composed of L-Lactide. This semi-crystalline material has been used in the fabrication of research medical devices and research tissue engineering solutions, such as orthopedic or soft tissue fixation devices. Degradation of this materials has been thoroughly studied and has been shown to be safely resorbed by the body after implantation. Modification of molecular weight and polymer composition allows for control of the degradation rate and mechanical stability of the polymer.
PLLA can be used as a resorbable implant material for potential usage in biomedical applications. It can also be used in the formation of composite ceramic material for biological applications.
| Sonrisas canónicas | CC1C(=O)OC(C(=O)O1)C |
|---|---|
| IUPAC Name | 3,6-dimethyl-1,4-dioxane-2,5-dione |
| InChIKey | JJTUDXZGHPGLLC-UHFFFAOYSA-N |
| INCHI | InChI=1S/C6H8O4/c1-3-5(7)10-4(2)6(8)9-3/h3-4H,1-2H3 |
| Isómeros SMILES | CC1C(=O)OC(C(=O)O1)C |
| CAS alternativo | 26161-42-2 |
| Reaxy-Rn | 82121 |
| Reaxys-RN_link_address | https://www.reaxys.com/reaxys/secured/hopinto.do?context=S&query=IDE.XRN=82121&ln= |
Comprehensive hazard, handling, storage, and regulatory compliance document.
Download SDS →Lot-specific quality data. Enter your lot number to retrieve the exact COA.
Look up COA →Full quality attributes and acceptance criteria for this grade.
View spec sheet →Taxonomy Tree
| Kingdom | Organic compounds |
|---|---|
| Superclass | Organoheterocyclic compounds |
| Clase | Dioxanes |
| Subclass | 1,4-dioxanes |
| Intermediate Tree Nodes | Not available |
| Direct Parent | 1,4-dioxanes |
| Alternative Parents | Dicarboxylic acids and derivatives Lactones Carboxylic acid esters Oxacyclic compounds Organic oxides Hydrocarbon derivatives Carbonyl compounds |
| Molecular Framework | Aliphatic heteromonocyclic compounds |
| Substituents | Dicarboxylic acid or derivatives - Para-dioxane - Lactone - Carboxylic acid ester - Oxacycle - Carboxylic acid derivative - Organic oxygen compound - Organic oxide - Hydrocarbon derivative - Organooxygen compound - Carbonyl group - Aliphatic heteromonocyclic compound |
| Descripción | This compound belongs to the class of organic compounds known as 1,4-dioxanes. These are organic compounds containing 1,4-dioxane, an aliphatic six-member ring with two oxygen atoms in ring positions 1 and 4. |
| External Descriptors | a small molecule |
Find and download the COA for your product by matching the lot number on the packaging.
| Lot Number | Certificate Type | Fecha | Articulo |
|---|---|---|---|
| Certificate of Analysis | Nov 18, 2025 | P477740 | |
| Certificate of Analysis | Nov 18, 2025 | P477740 | |
| Certificate of Analysis | May 16, 2024 | P477740 | |
| Certificate of Analysis | May 16, 2024 | P477740 |
| Punto de fusión (°C) | 180 °C |
|---|---|
| Peso molecular | 144.120 g/mol |
| XLogP3 | 0.600 |
| Hydrogen Bond Donor Count | 0 |
| Hydrogen Bond Acceptor Count | 4 |
| Rotatable Bond Count | 0 |
| Exact Mass | 144.042 Da |
| Monoisotopic Mass | 144.042 Da |
| Topological Polar Surface Area | 52.600 Ų |
| Heavy Atom Count | 10 |
| Formal Charge | 0 |
| Complexity | 155.000 |
| Isotope Atom Count | 0 |
| Defined Atom Stereocenter Count | 0 |
| Undefined Atom Stereocenter Count | 2 |
| Defined Bond Stereocenter Count | 0 |
| Undefined Bond Stereocenter Count | 0 |
| The total count of all stereochemical bonds | 0 |
| Covalently-Bonded Unit Count | 1 |
| 1. Ming Qian, Shun Li, Kun Xi, Jincheng Tang, Xiaofeng Shen, Yong Liu, Ran Guo, Nannan Zhang, Yong Gu, Yun Xu, Wenguo Cui, Liang Chen. (2023) ECM-engineered electrospun fibers with an immune cascade effect for inhibiting tissue fibrosis. Acta Biomaterialia, [PMID:37673231] [10.1016/j.actbio.2023.08.058] |
| 2. Zexin Zhao, Yuan Xu, Pengpeng Zou, Long Xu, Jun Cai. (2023) Developing a pachyman/polyvinyl alcohol-polylactic acid bilayer film as multifunctional packaging and its application in cherry tomato preservation. LWT-FOOD SCIENCE AND TECHNOLOGY, [PMID:] [10.1016/j.lwt.2023.115249] |
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| 6. Chenyang Cai, Yongqin Wang, Zechang Wei, Yu Fu. (2021) Biomimetic 3D Membranes with MXene Heterostructures for Superior Solar Steam Generation, Water Treatment, and Electricity Generation. Solar RRL, 5 (11): (2100593). [PMID:] [10.1002/solr.202100593] |
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| 8. Xiaonan Deng, Sihong Ye, Kun Liu, Changfeng Li, Fangzhi Liu, Xiaoming Yan. (2020) Permeability of N, P, K-fertilizer nutrient and water vapor through PLA, PLA/PS, and PLA/HA membranes. Polish Journal of Chemical Technology, 22 (4): (61-68). [PMID:] [10.2478/pjct-2020-0040] |
| 9. Hao Zhang, Yilin Dong, Keke Huang, Jingsheng Liu, Bo Dong, Feng Wang. (2019) Immortal Ring Opening Polymerization of ε-caprolactone and rac-lactide by magnesium precatalysts bearing sterically congested phenoxide ligands. EUROPEAN POLYMER JOURNAL, [PMID:] [10.1016/j.eurpolymj.2019.06.029] |
| 10. Zhefu Li, Binling Chen, Xianfeng Wang, Jun Nie, Guiping Ma. (2019) Electrospun bamboo-like Fe3C encapsulated Fe-Si-N co-doped nanofibers for efficient oxygen reduction. JOURNAL OF COLLOID AND INTERFACE SCIENCE, [PMID:30925431] [10.1016/j.jcis.2019.03.079] |
| 11. Tiantian Song, Weichao Shi. (2024) Polymer crystallization and optical birefringence modulated by solvent evaporation in sessile droplets. POLYMER, [PMID:] [10.1016/j.polymer.2024.127287] |
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