445886 is Poly(ethylene glycol) dimethyl ether. Unfortunately, the viscosity is not tested as per its COA: https://www.sigmaaldrich.com/certificates/sapfs/PROD/sap/certificate_pdfs/COFA/Q14/445886-BULKBCCL5083.pdf.
The viscosity has been reported by some research papers. For example, Here is the research paper that reported the dynamic viscosity is 5.8 mPa·s at 298 K.
Li, Yifu; Chemical Engineering and Processing, (2017), 121, 149-161.
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| Do Państwa/SKU | Dostępność | Cena netto |
|---|---|---|
50 mL | Skontaktuj się z Obsługą Klienta, aby uzyskać informacje na temat dostępności | 338,00 zł |
250 mL | Skontaktuj się z Obsługą Klienta, aby uzyskać informacje na temat dostępności | 1170,00 zł |
Informacje o tej pozycji
338,00 zł
Nazwa produktu
Poly(ethylene glycol) dimethyl ether, average Mn ~500, contains 100 ppm BHT as stabilizer
form
liquid
Quality Segment
mol wt
average Mn ~500
contains
100 ppm BHT as stabilizer
reaction suitability
reagent type: cross-linking reagent
reaction type: click chemistry
bp
>250 °C
density
1.05 g/mL at 25 °C
polymer architecture
shape: linear
functionality: homobifunctional
SMILES string
CO.OCCO
InChI
1S/C4H10O2/c1-5-3-4-6-2/h3-4H2,1-2H3
InChI key
XTHFKEDIFFGKHM-UHFFFAOYSA-N
Application
- Mechanically and Thermally Robust Gel Electrolytes Built from A Charged Double Helical Polymer.: This research describes the development of gel electrolytes incorporating Poly(ethylene glycol) dimethyl ether (PEGDME), highlighting their enhanced mechanical and thermal stability, which are crucial for high-performance energy storage applications (Yu et al., 2024).
- An environmentally benign protocol for the synthesis of sugar 1,2-orthoesters in poly(ethylene glycol) dimethyl ether (DMPE).: This study presents a green synthesis approach using PEGDME as a reaction medium for producing sugar orthoesters, demonstrating its role in sustainable chemical processes within the pharmaceutical industry (Yang et al., 2023).
- Room-Temperature Solid-State Polymer Electrolyte in Li-LiFePO(4) , Li-S and Li-O(2) Batteries.: This article details the use of PEGDME-based polymer electrolytes in various lithium battery configurations, emphasizing its effectiveness in enhancing battery safety and performance (Marangon et al., 2023).
- Safety, high-performing and effects of the N/P ratio of a solid lithium ion battery using PEGDME based polymer electrolytes.: Discusses the implementation of PEGDME in solid lithium-ion batteries, focusing on its role in achieving high performance and safety, critical for the advancement of energy storage technologies (Jeon et al., 2023).
Analysis Note
1 of 1
Ta pozycja | |||
|---|---|---|---|
| description average Mn ~500, contains 100 ppm BHT as stabilizer | description average Mn ~250 | description average Mn ~2,000 | description average Mn ~1,000 |
| form liquid | form liquid | form solid | form solid |
| polymer architecture shape: linear | polymer architecture shape: linear | polymer architecture shape: linear | polymer architecture shape: linear |
| Quality Level 200 | Quality Level - | Quality Level 200 | Quality Level 100 |
| mol wt average Mn ~500 | mol wt average Mn ~250 | mol wt average Mn ~2,000 | mol wt average Mn ~1,000 |
| reaction suitability reagent type: cross-linking reagent | reaction suitability reagent type: cross-linking reagent | reaction suitability reagent type: cross-linking reagent | reaction suitability reagent type: cross-linking reagent |
| density 1.05 g/mL at 25 °C | density 1.03 g/mL at 25 °C | density 1.08 g/mL at 25 °C | density 1.08 g/mL at 25 °C |
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Klasa składowania
10 - Combustible liquids
flash_point_f
312.8 °F - closed cup
flash_point_c
156.00 °C - closed cup
ppe
Eyeshields, Gloves
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