Poly(ethylene glycol) methacrylate - average Mw ~360,contains 500-800 PPM MEHQ stabilizers, high purity , CAS No.25736-86-1

5 Citations
  • average Mw ~360,contains 500-800 PPM MEHQ stabilizers
Item Number
P109710
Grouped product items
SKUSizeAvailabilityPrice Qty
P109710-25ml
25ml
In stock
$103.90
P109710-100ml
100ml
In stock
$226.90
P109710-500ml
500ml
Available within 4-8 weeks(?)
Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience!
$686.90

Basic Description

Synonyms25736-86-1 | PEG methacrylate | Methacrylate-PEG-Hydroxy | SCHEMBL839842 | FT-0745744 | 29-hydroxy-3,6,9,12,15,18,21,24,27-nonaoxanonacosyl methacrylate | 2-[2-[2-[2-[2-[2-[2-[2-[2-(2-hydroxyethoxy)ethoxy]ethoxy]ethoxy]ethoxy]ethoxy]ethoxy]ethoxy]ethoxy]ethyl 2-methy
Specifications & Purityaverage Mw ~360,contains 500-800 PPM MEHQ stabilizers
Shipped InNormal
Product Description

product description:

Polyethylene glycol (PEG) is a suitable material for biological applications since it does not trigger an immune response. It can by synthesized by anionic ring opening polymerization of ethylene oxide with a range of end groups (such as methacrylate: PEGMA) attached. PEG is a hydrophilic polymer that can form hydrogels when cross linked into networks. Acrylate and methacrylate chain ends undergo chain polymerization to from PEGMA hydrogels.

Names and Identifiers

Pubchem Sid488198409
Pubchem Sid Urlhttps://pubchem.ncbi.nlm.nih.gov/substance/488198409
IUPAC Name 2-[2-[2-[2-[2-[2-[2-[2-[2-(2-hydroxyethoxy)ethoxy]ethoxy]ethoxy]ethoxy]ethoxy]ethoxy]ethoxy]ethoxy]ethyl 2-methylprop-2-enoate
INCHI InChI=1S/C24H46O12/c1-23(2)24(26)36-22-21-35-20-19-34-18-17-33-16-15-32-14-13-31-12-11-30-10-9-29-8-7-28-6-5-27-4-3-25/h25H,1,3-22H2,2H3
InChi Key ANVPMFOXHJVWBT-UHFFFAOYSA-N
Canonical SMILES CC(=C)C(=O)OCCOCCOCCOCCOCCOCCOCCOCCOCCOCCO
Isomeric SMILES CC(=C)C(=O)OCCOCCOCCOCCOCCOCCOCCOCCOCCOCCO
WGK Germany 3
PubChem CID 13337739

Certificates

Certificate of Analysis(COA)

Enter Lot Number to search for COA:

Find and download the COA for your product by matching the lot number on the packaging.

10 results found

Lot NumberCertificate TypeDateItem
B2225805Certificate of AnalysisSep 18, 2023 P109710
B2225823Certificate of AnalysisSep 18, 2023 P109710
B2225902Certificate of AnalysisSep 18, 2023 P109710
K2123599Certificate of AnalysisJun 12, 2023 P109710
H2203023Certificate of AnalysisMay 10, 2023 P109710
B2309187Certificate of AnalysisFeb 18, 2023 P109710
B2309159Certificate of AnalysisFeb 17, 2023 P109710
K2317031Certificate of AnalysisDec 12, 2022 P109710
B2225836Certificate of AnalysisFeb 12, 2022 P109710
J2210293Certificate of AnalysisFeb 12, 2022 P109710

Chemical and Physical Properties

Refractive Index1.467
Flash Point(°C)113°C

Safety and Hazards(GHS)

Pictogram(s) GHS07
Signal Warning
Hazard Statements

H315:Causes skin irritation

Precautionary Statements

P280:Wear protective gloves/protective clothing/eye protection/face protection.

P302+P352:IF ON SKIN: wash with plenty of water.

P321:Specific treatment (see ... on this label).

P264:Wash hands [and …] thoroughly after handling.

P362+P364:Take off contaminated clothing and wash it before reuse.

P332+P317:If skin irritation occurs: Get medical help.

WGK Germany 3

Related Documents

Citations of This Product

1. Fuyue Tian, Jing Hu, Yanyan Song, Nanying Ning, Bing Yu, Ming Tian.  (2024)  A stable amphiphilic hybrid nanoparticle compatibilizer constructed from polyhedral oligomeric silsesquioxane (POSS) for immiscible thermoplastic polyurethane/methyl vinyl silicone elastomer (TPU/MVQ) blends.  Polymer Chemistry,  15  (6): (544-552).  [PMID:]
2. Wei Fan, Shaoxiong Zhu, Jingjing Nie, Binyang Du.  (2023)  Thermo-Sensitive Microgel/Poly(ether sulfone) Composited Ultrafiltration Membranes.  Materials,  16  (14): (5149).  [PMID:37512423]
3. Xiaohong Hu, Weiwei Jin, Haitao Zhang, Qinyu Qing, Juan Pang.  (2023)  Development of visible-light driven photo-switching copolymers with pH indicating performance.  INTERNATIONAL JOURNAL OF POLYMER ANALYSIS AND CHARACTERIZATION,      [PMID:]
4. Zhiwei Zha, Qiumeng Chen, Decheng Xiao, Chengjie Pan, Wei Xu, Liangliang Shen, Jianliang Shen, Wei Chen.  (2022)  Mussel-Inspired Microgel Encapsulated NLRP3 Inhibitor as a Synergistic Strategy Against Dry Eye.  Frontiers in Bioengineering and Biotechnology,  10  (913648).  [PMID:35721850]
5. Xiaohui Yu, Haopeng Zhang, Yufei Wang, Xiaoshan Fan, Zibiao Li, Xu Zhang, Tianxi Liu.  (2022)  Highly Stretchable, Ultra-Soft, and Fast Self-Healable Conductive Hydrogels Based on Polyaniline Nanoparticles for Sensitive Flexible Sensors.  ADVANCED FUNCTIONAL MATERIALS,  32  (33): (2204366).  [PMID:]
6. Li Lin, Liangen Shen, Junfeng Zhang, Yiyan Xu, Zheng Fang, Peter Müller-Buschbaum, Qi Zhong.  (2021)  Ionic Hydrogels Based Wearable Sensors to Monitor the Solar Radiation Dose for Vitamin D Production and Sunburn Prevention.  ACS Applied Materials & Interfaces,  13  (38): (45995–46002).  [PMID:34524812]
7. Hao Guo, Longli Ma, Chaojing Yan, Xiaohua Ma.  (2021)  A study on the preparation of polycation gel polymer electrolyte for supercapacitors.  RSC Advances,  11  (40): (24995-25003).  [PMID:35481056]
8. Liping Yu, Yong Zhang, Jirong Wang, Huihui Gan, Shaoqiao Li, Xiaolin Xie, Zhigang Xue.  (2021)  Lithium Salt-Induced In Situ Living Radical Polymerizations Enable Polymer Electrolytes for Lithium-Ion Batteries.  MACROMOLECULES,  54  (2): (874–887).  [PMID:]
9. Kuan Dai, Cheng Ma, Yiming Feng, Liangjun Zhou, Guichao Kuang, Yun Zhang, Yanqing Lai, Xinwei Cui, Weifeng Wei.  (2019)  A borate-rich, cross-linked gel polymer electrolyte with near-single ion conduction for lithium metal batteries.  Journal of Materials Chemistry A,  (31): (18547-18557).  [PMID:]
10. Liya Chen, Jifang Fu, Qi Lu, Liyi Shi, Mengmeng Li, Linna Dong, Yufeng Xu, Rongrong Jia.  (2019)  Cross-linked polymeric ionic liquids ion gel electrolytes by in situ radical polymerization.  CHEMICAL ENGINEERING JOURNAL,  378  (122245).  [PMID:]
11. Jianwen Tian, Zhongxu Chen, Ruming Jiang, Liucheng Mao, Meiying Liu, Fengjie Deng, Hongye Huang, Liangji Liu, Xiaoyong Zhang, Yen Wei.  (2019)  The combination of controlled living polymerization and multicomponent reactions to prepare tetraphenylethylene-containing fluorescent block copolymers.  DYES AND PIGMENTS,  171  (107673).  [PMID:]

References

1. Fuyue Tian, Jing Hu, Yanyan Song, Nanying Ning, Bing Yu, Ming Tian.  (2024)  A stable amphiphilic hybrid nanoparticle compatibilizer constructed from polyhedral oligomeric silsesquioxane (POSS) for immiscible thermoplastic polyurethane/methyl vinyl silicone elastomer (TPU/MVQ) blends.  Polymer Chemistry,  15  (6): (544-552).  [PMID:]
2. Wei Fan, Shaoxiong Zhu, Jingjing Nie, Binyang Du.  (2023)  Thermo-Sensitive Microgel/Poly(ether sulfone) Composited Ultrafiltration Membranes.  Materials,  16  (14): (5149).  [PMID:37512423]
3. Xiaohong Hu, Weiwei Jin, Haitao Zhang, Qinyu Qing, Juan Pang.  (2023)  Development of visible-light driven photo-switching copolymers with pH indicating performance.  INTERNATIONAL JOURNAL OF POLYMER ANALYSIS AND CHARACTERIZATION,      [PMID:]
4. Zhiwei Zha, Qiumeng Chen, Decheng Xiao, Chengjie Pan, Wei Xu, Liangliang Shen, Jianliang Shen, Wei Chen.  (2022)  Mussel-Inspired Microgel Encapsulated NLRP3 Inhibitor as a Synergistic Strategy Against Dry Eye.  Frontiers in Bioengineering and Biotechnology,  10  (913648).  [PMID:35721850]
5. Xiaohui Yu, Haopeng Zhang, Yufei Wang, Xiaoshan Fan, Zibiao Li, Xu Zhang, Tianxi Liu.  (2022)  Highly Stretchable, Ultra-Soft, and Fast Self-Healable Conductive Hydrogels Based on Polyaniline Nanoparticles for Sensitive Flexible Sensors.  ADVANCED FUNCTIONAL MATERIALS,  32  (33): (2204366).  [PMID:]
6. Li Lin, Liangen Shen, Junfeng Zhang, Yiyan Xu, Zheng Fang, Peter Müller-Buschbaum, Qi Zhong.  (2021)  Ionic Hydrogels Based Wearable Sensors to Monitor the Solar Radiation Dose for Vitamin D Production and Sunburn Prevention.  ACS Applied Materials & Interfaces,  13  (38): (45995–46002).  [PMID:34524812]
7. Hao Guo, Longli Ma, Chaojing Yan, Xiaohua Ma.  (2021)  A study on the preparation of polycation gel polymer electrolyte for supercapacitors.  RSC Advances,  11  (40): (24995-25003).  [PMID:35481056]
8. Liping Yu, Yong Zhang, Jirong Wang, Huihui Gan, Shaoqiao Li, Xiaolin Xie, Zhigang Xue.  (2021)  Lithium Salt-Induced In Situ Living Radical Polymerizations Enable Polymer Electrolytes for Lithium-Ion Batteries.  MACROMOLECULES,  54  (2): (874–887).  [PMID:]
9. Kuan Dai, Cheng Ma, Yiming Feng, Liangjun Zhou, Guichao Kuang, Yun Zhang, Yanqing Lai, Xinwei Cui, Weifeng Wei.  (2019)  A borate-rich, cross-linked gel polymer electrolyte with near-single ion conduction for lithium metal batteries.  Journal of Materials Chemistry A,  (31): (18547-18557).  [PMID:]
10. Liya Chen, Jifang Fu, Qi Lu, Liyi Shi, Mengmeng Li, Linna Dong, Yufeng Xu, Rongrong Jia.  (2019)  Cross-linked polymeric ionic liquids ion gel electrolytes by in situ radical polymerization.  CHEMICAL ENGINEERING JOURNAL,  378  (122245).  [PMID:]
11. Jianwen Tian, Zhongxu Chen, Ruming Jiang, Liucheng Mao, Meiying Liu, Fengjie Deng, Hongye Huang, Liangji Liu, Xiaoyong Zhang, Yen Wei.  (2019)  The combination of controlled living polymerization and multicomponent reactions to prepare tetraphenylethylene-containing fluorescent block copolymers.  DYES AND PIGMENTS,  171  (107673).  [PMID:]

Solution Calculators