Cas no 112-60-7 (Tetraethylene glycol)
Tetraethylene glycol Chemical and Physical Properties
Names and Identifiers
-
- 2,2'-((Oxybis(ethane-2,1-diyl))bis(oxy))diethanol
- tetragol
- tetraglycolTetraethylene glycol
- Tetraethyleneglycol
- Tetra Ethylene Glycol (TTEG)
- Bis[2-(2-hydroxyethoxy)ethyl] ether
- 2-[2-[2-(2-hydroxyethoxy)ethoxy]ethoxy]ethanol
- Ethyl acetate
- 3,6,9-Trioxaundecane-1,11-diol
- Hi-Dry
- OH-PEG4-OH
- TETRAGLYCOL
- LIPOXOL 200
- TetraHthylenglykol
- Tetraethylene glyco
- Tetracthyleneglycol
- tetraethylenegylcol
- 25322-68-33,6,9-
- TETRAETHYLENE GLYCOL
- Carbitol, diethyl
- Ethanol, 2,2'-[oxybis(2,1-ethanediyloxy)]bis-
- Tetra(ethylene glycol)
- 2,2'-[oxybis(ethane-2,1-diyloxy)]diethanol
- Ethanol, 2,2'-(oxybis(ethyleneoxy))di-
- PEG-4
- 2,2'-[oxybis(2,1-ethanediyloxy)]diethanol
- UWHCK
- UWHCKJMYHZGTIT-UHFFFAOYSA-N
- 2-[2-[2-(2-hydroxye
- UNII-R95B8J264J
- BIS-[2-(2-HYDROXYETHOXY) ETHYL ETHER
- HiDry
- NSC-1262
- 2-(2-(2-(2-hydroxyethoxy)ethoxy)ethoxy)ethan-1-ol
- Ethanol, 2,2'(oxybis(2,1ethanediyloxy))bis
- 127821-00-5
- T0099
- EC 203-989-9
- NCGC00164038-01
- DS-17878
- SCHEMBL15101
- WLN: Q2O2O2O2Q
- DA-69618
- Q12430182
- 2,2'-(oxybis(ethane-2,1-diyloxy))diethanol
- NCGC00259178-01
- HO-PEG4-OH
- Bis[2-(2-hydroxyethoxy)ethyl] Ether(Tetraethylene Glycol)
- bis[2-(2-hydroxyethoxy)ethyl]ether
- NCGC00257035-01
- 112-60-7
- PG4
- 9004-76-6
- Tetraethylene glycol, 99%
- 2-(2-(2-(2-Hydroxyethoxy)ethoxy)ethoxy)ethanol
- BIS-(2-(2-HYDROXYETHOXY) ETHYL ETHER
- 2-(2-[2-(2-Hydroxyethoxy)ethoxy]ethoxy)ethanol
- EN300-19499
- 2-(2-(2-(2-hydroxy-ethoxy)ethoxy)ethoxy)ethanol
- 125481-05-2
- tetra-ethylene glycol
- NS00009833
- W18472
- PEG-4 [INCI]
- 2-{2-[2-(2-hydroxy-ethoxy)-ethoxy]-ethoxy}-ethanol
- Ethanol, 2,2'(oxybis(ethyleneoxy))di
- HSDB 843
- CAS-112-60-7
- HY-W018745
- J-519899
- 3,9-Trioxaundecane-1,11-diol
- BRN 1634320
- BP-20324
- STL268854
- 157299-02-0
- MFCD00002879
- AKOS000119933
- R95B8J264J
- DTXSID9026922
- Ethanol, 2,2'-(oxybis(2,1-ethanediyloxy))bis-
- tetraethylenglycol
- 3,6,9-Trioxaundecan-1,11-diol
- 3,6,9-TRIOXAUNDECAN-1, 11-DIOL
- PROTAC Linker 18
- EINECS 203-989-9
- 2,2'-(Oxybis(ethyleneoxy))diethanol
- CHEMBL1235254
- DTXCID806922
- 2,2'-[oxybis(2,1-ethanediyloxy)]bisethanol
- Tox21_303245
- Ethanol,2'-[oxybis(ethyleneoxy)]di-
- 2,2'-(2,2'-oxybis(ethane-2,1-diyl)bis(oxy))diethanol
- SY010865
- 1,11-Dihydroxy-3,6,9-trioxaundecane
- Ethanol,2'-[oxybis(2,1-ethanediyloxy)]bis-
- Tox21_201629
- CHEBI:44920
- 3,6,9Trioxaundecane1,11diol
- F8889-3081
- 2,2'-((Oxybis(ethane-2,1-diyl))bis(oxy))diethanol; Ethanol, 2,2'-[oxybis(2,1-ethanediyloxy)]bis-
- AI3-01838
- CS-W019531
- 2,2'-(Oxybis(2,1-ethanediyloxy))diethanol
- C8H18O5
- 2-{2-[2-(2-hydroxyethoxy)ethoxy]ethoxy}ethan-1-ol
- NSC1262
- 2,2'-((oxybis(ethane-2,1-diyl))bis(oxy))bis(ethan-1-ol)
- NCGC00164038-02
- NSC 1262
- Tetraethylene glycol
-
- MDL: MFCD00002879
- Inchi: 1S/C8H18O5/c9-1-3-11-5-7-13-8-6-12-4-2-10/h9-10H,1-8H2
- InChI Key: UWHCKJMYHZGTIT-UHFFFAOYSA-N
- SMILES: OCCOCCOCCOCCO
- BRN: 1634320
Computed Properties
- Exact Mass: 194.11500
- Monoisotopic Mass: 194.115
- Isotope Atom Count: 0
- Hydrogen Bond Donor Count: 2
- Hydrogen Bond Acceptor Count: 5
- Heavy Atom Count: 13
- Rotatable Bond Count: 10
- Complexity: 78.6
- Covalently-Bonded Unit Count: 1
- Defined Atom Stereocenter Count: 0
- Undefined Atom Stereocenter Count : 0
- Defined Bond Stereocenter Count: 0
- Undefined Bond Stereocenter Count: 0
- Surface Charge: 0
- Tautomer Count: nothing
- XLogP3: -1.6
- Topological Polar Surface Area: 68.2
Experimental Properties
- Color/Form: Colorless to light straw colored viscous liquid, easy to absorb moisture.
- Density: 1.125?g/mL?at 25?°C(lit.)
- Melting Point: ?5.6?°C (lit.)
- Boiling Point: 328°C(lit.)
- Flash Point: Fahrenheit: 359.6 ° f < br / > Celsius: 182 ° C < br / >
- Refractive Index: n20/D 1.459(lit.)
- PH: 8.5-9.0 (500g/l, H2O, 20℃)
- Solubility: 1000g/l
- Water Partition Coefficient: dissolution
- Stability/Shelf Life: Stable. Incompatible with strong oxidizing agents, strong bases.
- PSA: 68.15000
- LogP: -0.97920
- Vapor Pressure: <0.01 mmHg
- Solubility: It is miscible with water and alcohol. Insoluble in benzene, toluene and aliphatic hydrocarbons.
Tetraethylene glycol Security Information
- Prompt:warning
- Hazard Statement: H316-H320
- Warning Statement: P264-P305+P351+P338+P337+P313-P332+P313
- Hazardous Material transportation number:NONH for all modes of transport
- WGK Germany:2
- Hazard Category Code: R36/37/38: irritating to eyes, respiratory tract and skin
- Safety Instruction: S24/25
- RTECS:XC2100000
- TSCA:Yes
- Explosive Limit:0.5-3.4%(V)
- Storage Condition:Inert atmosphere,Room Temperature
- Risk Phrases:R36/37/38
- Safety Term:S24/25
Tetraethylene glycol Customs Data
- HS CODE:2942000000
- Customs Data:
China Customs Code:
2909499000Overview:
2909499000 Other ether alcohols and their halogenation\sulfonation\Nitrosative or nitrosative derivatives. VAT:17.0% Tax refund rate:9.0% Regulatory conditions:nothing MFN tariff:5.5% general tariff:30.0%
Declaration elements:
Product Name, component content, use to
Summary:
2909499000. ether-alcohols and their halogenated, sulphonated, nitrated or nitrosated derivatives. VAT:17.0%. Tax rebate rate:9.0%. . MFN tariff:5.5%. General tariff:30.0%
Tetraethylene glycol Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| XI GE MA AO DE LI QI ( SHANG HAI ) MAO YI Co., Ltd. | 110175-100G |
Tetraethylene glycol |
112-60-7 | 100g |
¥649.49 | 2023-12-10 | ||
| XI GE MA AO DE LI QI ( SHANG HAI ) MAO YI Co., Ltd. | 110175-1KG |
Tetraethylene glycol |
112-60-7 | 1kg |
¥894.62 | 2023-12-10 | ||
| XI GE MA AO DE LI QI ( SHANG HAI ) MAO YI Co., Ltd. | 110175-3KG |
Tetraethylene glycol |
112-60-7 | 3kg |
¥1565.48 | 2023-12-10 | ||
| XI GE MA AO DE LI QI ( SHANG HAI ) MAO YI Co., Ltd. | 110175-20KG |
Tetraethylene glycol |
112-60-7 | 20kg |
¥8130.86 | 2023-12-10 | ||
| TI XI AI ( SHANG HAI ) HUA CHENG GONG YE FA ZHAN Co., Ltd. | T0099-500G |
Tetraethylene Glycol |
112-60-7 | >95.0%(GC) | 500g |
¥180.00 | 2024-04-18 | |
| S e l l e c k ZHONG GUO | S1951-100mg |
Tetraethylene glycol |
112-60-7 | 100mg |
¥970.65 | 2022-04-26 | ||
| TRC | B443820-10g |
Bis[2-(2-hydroxyethoxy)ethyl] Ether(Tetraethylene Glycol) |
112-60-7 | 10g |
$ 58.00 | 2023-09-08 | ||
| TRC | B443820-50 g |
Bis[2-(2-hydroxyethoxy)ethyl] Ether(Tetraethylene Glycol) |
112-60-7 | 50g |
55.00 | 2021-08-17 | ||
| TRC | B443820-100 g |
Bis[2-(2-hydroxyethoxy)ethyl] Ether(Tetraethylene Glycol) |
112-60-7 | 100g |
90.00 | 2021-08-17 | ||
| TRC | B443820-250 g |
Bis[2-(2-hydroxyethoxy)ethyl] Ether(Tetraethylene Glycol) |
112-60-7 | 250g |
130.00 | 2021-08-17 |
Tetraethylene glycol Suppliers
Tetraethylene glycol Related Literature
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Sunil Kr. Jha,Ninoslav Marina,Chuanjun Liu,Kenshi Hayashi Anal. Methods 2015 7 9549
-
Adam M. Wawro,Takahiro Muraoka,Maho Kato,Kazushi Kinbara Org. Chem. Front. 2016 3 1524
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Jiawei Yu,Kun Li,Lishan Li,Lei Liu,Yechun zhou,Zhengbiao Zhang,Mingyu Guo,Nianchen Zhou,Xiulin Zhu Polym. Chem. 2019 10 2872
-
Ke Zheng,Hongyan Liu,Xinxin Liu,Libin Jiang,Linlin Li,Xianggen Wu,Nannan Guo,Caifeng Ding,Mingdong Huang J. Mater. Chem. B 2020 8 8022
-
Robert Ho?yst,Marek Litniewski,Daniel Jakubczyk Soft Matter 2017 13 5858
Related Categories
- Solvents and Organic Chemicals Organic Compounds Organic oxygen compounds Organooxygen compounds Dialkyl ethers
- Solvents and Organic Chemicals Organic Compounds Organic oxygen compounds Organooxygen compounds Ethers Dialkyl ethers
- Material Chemicals High Polymer Materials Polymeric Materials with Heteroatoms
- Solvents and Organic Chemicals Organic Compounds Alcohol/Ether
Additional information on Tetraethylene glycol
Research Brief on Tetraethylene Glycol (CAS 112-60-7) in Chemical Biology and Pharmaceutical Applications
Tetraethylene glycol (TEG, CAS 112-60-7) is a polyethylene glycol derivative that has garnered significant attention in chemical biology and pharmaceutical research due to its versatile applications. Recent studies have explored its role in drug delivery systems, bioconjugation, and as a solvent or linker in various biochemical processes. This research brief synthesizes the latest findings on TEG, highlighting its potential in advancing therapeutic and diagnostic technologies.
A 2023 study published in the Journal of Medicinal Chemistry investigated TEG's utility as a linker in antibody-drug conjugates (ADCs). The researchers demonstrated that TEG-based linkers exhibit superior stability in physiological conditions compared to traditional PEG linkers, thereby enhancing the pharmacokinetic profiles of ADCs. The study utilized mass spectrometry and NMR spectroscopy to validate the structural integrity of TEG-linked conjugates, underscoring its reliability for targeted cancer therapies.
In another breakthrough, TEG was employed as a key component in the development of hydrogels for controlled drug release. A team from MIT reported in Advanced Materials (2024) that TEG-crosslinked hydrogels displayed tunable degradation rates, enabling sustained release of small-molecule therapeutics over extended periods. This property is particularly advantageous for treating chronic conditions such as diabetes and inflammatory diseases, where consistent drug levels are critical.
Beyond therapeutics, TEG has also been explored in diagnostic applications. A recent Analytical Chemistry paper (2024) described its use as a stabilizing agent in fluorescent probes for real-time imaging of cellular processes. The study found that TEG-modified probes exhibited reduced nonspecific binding and improved signal-to-noise ratios, making them ideal for high-resolution microscopy and in vivo imaging.
Despite these advancements, challenges remain in optimizing TEG's biocompatibility and scalability for industrial production. Ongoing research aims to address these limitations through chemical modifications and novel synthesis protocols. For instance, a preprint on bioRxiv (2024) proposed a green chemistry approach to synthesize TEG derivatives with reduced cytotoxicity, paving the way for safer biomedical applications.
In conclusion, Tetraethylene glycol (112-60-7) continues to emerge as a multifunctional tool in chemical biology and pharmaceuticals. Its applications span drug delivery, diagnostics, and material science, driven by its unique physicochemical properties. Future research should focus on refining its performance metrics and expanding its utility in precision medicine and personalized therapies.
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