Gordeev, Ivan et al. published their research in Plasma Processes and Polymers in 2016 |CAS: 929-37-3

The Article related to diethylene glycol monovinyl ether plasma polymerization film deposition, Coatings, Inks, and Related Products: Coating Processes and other aspects.Quality Control of 2-(2-(Vinyloxy)ethoxy)ethanol

Gordeev, Ivan; Simek, Milan; Prukner, Vaclav; Artemenko, Anna; Kousal, Jaroslav; Nikitin, Daniil; Choukourov, Andrei; Biederman, Hynek published an article in 2016, the title of the article was Deposition of poly(ethylene oxide)-like plasma polymers on inner surfaces of cavities by means of atmospheric-pressure SDBD-based jet.Quality Control of 2-(2-(Vinyloxy)ethoxy)ethanol And the article contains the following content:

The jet of reactive effluents produced by surface dielec. barrier discharge was used to deposit PEO-like plasma polymers from di(ethylene) glycol vinyl ether. The jet was confined within the hollow space of either circular cross-section with substrate placed perpendicular to the jet, or rectangular cross-section with the walls used as substrates. The best 67% retention of the ethers was obtained for the circular channel, whereas it was only 50% for the rectangular channel. In the latter case, deposition at longer distances was possible. In both cases, the deposition started with the formation of islands that grew, coalesced and eventually built up a continuous coating. The experimental process involved the reaction of 2-(2-(Vinyloxy)ethoxy)ethanol(cas: 929-37-3).Quality Control of 2-(2-(Vinyloxy)ethoxy)ethanol

The Article related to diethylene glycol monovinyl ether plasma polymerization film deposition, Coatings, Inks, and Related Products: Coating Processes and other aspects.Quality Control of 2-(2-(Vinyloxy)ethoxy)ethanol

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Zhao, Bowen et al. published their research in Macromolecules (Washington, DC, United States) in 2022 |CAS: 929-37-3

The Article related to photoinduced 3d printing cationic radical raft polymerization, Plastics Fabrication and Uses: Fabricating Techniques and other aspects.COA of Formula: C6H12O3

On August 23, 2022, Zhao, Bowen; Li, Jiajia; Li, Zhuang; Lin, Xia; Pan, Xiangqiang; Zhang, Zhengbiao; Zhu, Jian published an article.COA of Formula: C6H12O3 The title of the article was Photoinduced 3D Printing through a Combination of Cationic and Radical RAFT Polymerization. And the article contained the following:

Photopolymerization-based three-dimensional (3D) printing techniques have been widely utilized to fabricate polymeric materials with complex architectures. The application of reversible deactivation radical polymerization (RDRP) in 3D printing is emerging as a powerful tool to introduce various postprinting abilities but is still at an early stage. Here, a photoinduced free radical-promoted cationic reversible addition-fragmentation chain transfer (RAFT) polymerization method was developed, utilizing the direct photolysis of the RAFT agent as a radical source, which was further combined with photo-iniferter RAFT polymerization to prepare polymer networks. The polymerization mechanism was studied by model polymerization using monofunctional monomers. The effects of each component on the properties of the final materials and polymerization behavior of the crosslinking systems were studied in detail. This method was successfully applied in a digital light processing (DLP) technique-based com. 3D printer. Finally, polymer welding of the printed objects through both cationic and radical RAFT chain extension was realized, expanding avenues of postprinting and future applications in various fields. The experimental process involved the reaction of 2-(2-(Vinyloxy)ethoxy)ethanol(cas: 929-37-3).COA of Formula: C6H12O3

The Article related to photoinduced 3d printing cationic radical raft polymerization, Plastics Fabrication and Uses: Fabricating Techniques and other aspects.COA of Formula: C6H12O3

Referemce:
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Zhang, Zhi-Hong et al. published their research in Biotechnology Journal in 2007 |CAS: 929-37-3

The Article related to protein adsorption functionalized polymer film, General Biochemistry: Proteins and Their Constituents and other aspects.Application In Synthesis of 2-(2-(Vinyloxy)ethoxy)ethanol

On June 30, 2007, Zhang, Zhi-Hong; Feng, Chuan-Liang published an article.Application In Synthesis of 2-(2-(Vinyloxy)ethoxy)ethanol The title of the article was The investigation of protein adsorption behaviors on different functionalized polymers films. And the article contained the following:

The adsorption of BSA and fibrinogen onto plasma-polymerized di-(ethylene glycol) vinyl ether, allylamine, and maleic anhydride films were investigated in detail by surface plasmon resonance spectroscopy (SPR). The chem. properties of the plasma polymers were initially determined by the plasma deposition conditions during the generation procedure. The anal. of the chem. structure of the films and the refractive index of plasma polymers in aqueous solution was carried out using Fourier transform IR spectroscopy and waveguide mode spectroscopy, resp. Using water contact angle measurement, the surface wettability of plasma polymers was also characterized. These properties have a critical influence on the behavior of protein adsorption on the surface of the plasma polymers. Protein adsorption was found to depend not only on the types of functionalized groups, but also on the plasma polymer thickness since the protein mols. penetrate into the plasma polymer network bulk. According to the size of protein mols. in aqueous solution and the amount of adsorbed proteins observed by SPR, the conformational changes of proteins could be deduced. The experimental process involved the reaction of 2-(2-(Vinyloxy)ethoxy)ethanol(cas: 929-37-3).Application In Synthesis of 2-(2-(Vinyloxy)ethoxy)ethanol

The Article related to protein adsorption functionalized polymer film, General Biochemistry: Proteins and Their Constituents and other aspects.Application In Synthesis of 2-(2-(Vinyloxy)ethoxy)ethanol

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Ether – Wikipedia,
Ether | (C2H5)2O – PubChem

Kucuk, Asuman Celik et al. published their research in Reactive & Functional Polymers in 2019 |CAS: 929-37-3

The Article related to silsesquioxane chitosan nanocomposite nanoadsorbent wastewater, Plastics Fabrication and Uses: Plastic Product Uses and other aspects.SDS of cas: 929-37-3

On July 31, 2019, Kucuk, Asuman Celik; Urucu, Oya Aydin published an article.SDS of cas: 929-37-3 The title of the article was Silsesquioxane-modified chitosan nanocomposite as a nanoadsorbent for the wastewater treatment. And the article contained the following:

In this study, synthesized polyhedral oligomeric silsesquioxanes (POSS with eight arms of di(ethylene glycol) oxides) and chitosan based nanocomposite materials (PSCS-(1,2,3)) were prepared by varying the crosslinker ratio while keeping POSS and chitosan quantities constant Among the prepared nanocomposites, PSCS-2 was found to be the most effective nanoadsorbent for the treatment of wastewater containing cadmium (Cd (II)) because of having a balance between the availability of functional sites and the stability of the nanocomposites. The influence of pH, saturation time, initial metal concentration was determined under the optimum conditions. The adsorption property of the nanocomposite material was investigated by the Langmuir and Freundlich adsorption isotherms. The Langmuir isotherm well fitted for metal ion adsorption on PSCS-2. This result was attributed to the succeeding of the smooth surface morphol. thanks to the good solubility and dispersibility of the POSS mols. in the organic chitosan environments. Therefore, the use of POSS reinforced chitosan nanocomposite to treat heavy metal pollutants in wastewater is promising and deserves further investigation. The experimental process involved the reaction of 2-(2-(Vinyloxy)ethoxy)ethanol(cas: 929-37-3).SDS of cas: 929-37-3

The Article related to silsesquioxane chitosan nanocomposite nanoadsorbent wastewater, Plastics Fabrication and Uses: Plastic Product Uses and other aspects.SDS of cas: 929-37-3

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Matsui, Jun et al. published their research in Chemistry Letters in 2012 |CAS: 929-37-3

The Article related to hybrid amphiphile hydrogen bonding air water interface monolayer property, Surface Chemistry and Colloids: Liquid-Gas Systems and other aspects.Name: 2-(2-(Vinyloxy)ethoxy)ethanol

On October 5, 2012, Matsui, Jun; Kucuk, Asuman C.; Miyashita, Tokuji published an article.Name: 2-(2-(Vinyloxy)ethoxy)ethanol The title of the article was Monolayer property of “core-coronae” type hybrid amphiphile with four hydrogen-bonding groups at air-water interface. And the article contained the following:

A “core-coronae” type hybrid amphiphile, which contains urethane unit in the coronae was synthesized, and the monolayer property was studied. The hybrid amphiphile formed a liquid-like monolayer at the air-water interface. The urethane groups formed intramol. hydrogen bonds. The experimental process involved the reaction of 2-(2-(Vinyloxy)ethoxy)ethanol(cas: 929-37-3).Name: 2-(2-(Vinyloxy)ethoxy)ethanol

The Article related to hybrid amphiphile hydrogen bonding air water interface monolayer property, Surface Chemistry and Colloids: Liquid-Gas Systems and other aspects.Name: 2-(2-(Vinyloxy)ethoxy)ethanol

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Kucuk, Asuman C. et al. published their research in Journal of Colloid and Interface Science in 2011 |CAS: 929-37-3

The Article related to langmuir blodgett film silsesquioxane amphiphile monolayer, Surface Chemistry and Colloids: Liquid-Gas Systems and other aspects.Recommanded Product: 2-(2-(Vinyloxy)ethoxy)ethanol

On March 1, 2011, Kucuk, Asuman C.; Matsui, Jun; Miyashita, Tokuji published an article.Recommanded Product: 2-(2-(Vinyloxy)ethoxy)ethanol The title of the article was Langmuir-Blodgett films composed of amphiphilic double-decker shaped polyhedral oligomeric silsesquioxanes. And the article contained the following:

New amphiphilic polyhedral oligomeric silsesquioxanes (POSSs) were synthesized, and their monolayer behavior on a water surface and Langmuir-Blodgett (LB) film formation were studied. Two kinds of amphiphilic POSS mols., which have two or four di(ethylene glycol) units (2OH-DDSQ and 4OH-DDSQ, resp.), were synthesized by direct hydrosilylation of di(ethylene glycol) vinyl ether with double-decker shaped polyhedral oligomeric silsesquioxanes (DDSQs). Surface pressure (π)-area (A) isotherms and Brewster angle microscope (BAM) measurements indicated that both amphiphilic DDSQs form a stable monolayer at the air-water interface. 4OH-DDSQ can be deposited on a solid substrate by the LB technique. Atomic force microscope (AFM) images of a 1-layer 4OH-DDSQ film showed a homogeneous uniform surface on a hydrophilic silicon substrate, whereas nanometer scale dots were formed on a hydrophobic silicon substrate. Multilayer deposition on a hydrophobic substrate resulted in an increase of dot size with increasing deposition number of layers. Also, homogeneous multilayer films with a few voids were obtained on a hydrophilic substrate. 4OH-DDSQ is a good candidate for preparing hybrid nanoassemblies. The experimental process involved the reaction of 2-(2-(Vinyloxy)ethoxy)ethanol(cas: 929-37-3).Recommanded Product: 2-(2-(Vinyloxy)ethoxy)ethanol

The Article related to langmuir blodgett film silsesquioxane amphiphile monolayer, Surface Chemistry and Colloids: Liquid-Gas Systems and other aspects.Recommanded Product: 2-(2-(Vinyloxy)ethoxy)ethanol

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Takeda, Misaki et al. published their research in Chemistry Letters in 2015 |CAS: 929-37-3

The Article related to silsesquioxane short hydrophilic organic tail preparation vesicle nanosheet, self amphiphilic poss anchoring organic tail uniform structure, Organometallic and Organometalloidal Compounds: Metal Heterocyclic Compounds and Cluster Compounds and other aspects.Application of 929-37-3

On November 30, 2015, Takeda, Misaki; Kuroiwa, Keita; Mitsuishi, Masaya; Matsui, Jun published an article.Application of 929-37-3 The title of the article was Self-assembly of amphiphilic POSS anchoring a short organic tail with uniform structure. And the article contained the following:

An amphiphilic polyhedral oligomeric silsesquioxane (POSS) with a uniform mol. weight was synthesized by anchoring short hydrophilic organic tail groups at a corner of the POSS. The amphiphiles self-assembled to form vesicles in water and nanosheets in organic solvents. The experimental process involved the reaction of 2-(2-(Vinyloxy)ethoxy)ethanol(cas: 929-37-3).Application of 929-37-3

The Article related to silsesquioxane short hydrophilic organic tail preparation vesicle nanosheet, self amphiphilic poss anchoring organic tail uniform structure, Organometallic and Organometalloidal Compounds: Metal Heterocyclic Compounds and Cluster Compounds and other aspects.Application of 929-37-3

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Ether – Wikipedia,
Ether | (C2H5)2O – PubChem

Voepel, Jens et al. published their research in Journal of Polymer Science, Part A: Polymer Chemistry in 2009 |CAS: 929-37-3

The Article related to alkenyl functionalized hydrogel, Plastics Manufacture and Processing: Preparation Of Resins and other aspects.Computed Properties of 929-37-3

On July 15, 2009, Voepel, Jens; Edlund, Ulrica; Albertsson, Ann-Christine published an article.Computed Properties of 929-37-3 The title of the article was Alkenyl-functionalized precursors for renewable hydrogels design. And the article contained the following:

A library of crosslinking chemistries for the hydrogel synthesis based on the hemicellulose acetylated galactoglucomannan (AcGGM) has been developed, demonstrated, and evaluated. A three-step route was elaborated including (1) the carbonyldiimidazole activation of primary hydroxylated vinylic mols. such as acrylates, vinyl alcs., and vinyl ethers, (2) the covalent coupling of the alkenyl precursors to the polysaccharide backbone hydroxyls, and (3) the radical crosslinking of pendant vinyl functionalities affording a hydrophilic network. Crosslinking strategies explored include redox initiation and photo initiation, with an effort to adapt the suggested synthesis routes to benign conditions. The different functionalization strategies were shown to influence the resulting gel’s properties. Varying the crosslinking media was found to be a strong tool to tune the properties of the gels. Modifications were in all cases verified by means of NMR and FTIR, and the gels were characterized with respect to swelling capacity and rheol. parameters. It was shown that by adjusting the synthesis parameters, the resulting properties of the AcGGM gels could be custom-made for a given performance. © 2009 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 47: 3595-3606, 2009. The experimental process involved the reaction of 2-(2-(Vinyloxy)ethoxy)ethanol(cas: 929-37-3).Computed Properties of 929-37-3

The Article related to alkenyl functionalized hydrogel, Plastics Manufacture and Processing: Preparation Of Resins and other aspects.Computed Properties of 929-37-3

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Ether – Wikipedia,
Ether | (C2H5)2O – PubChem

Zhang, Z. et al. published their research in Surface and Coatings Technology in 2003 |CAS: 929-37-3

The Article related to plasma polymerization aqueous solution effect, Plastics Manufacture and Processing: Preparation Of Resins and other aspects.Application In Synthesis of 2-(2-(Vinyloxy)ethoxy)ethanol

On October 31, 2003, Zhang, Z.; Chen, Q.; Knoll, W.; Forch, R. published an article.Application In Synthesis of 2-(2-(Vinyloxy)ethoxy)ethanol The title of the article was Effect of aqueous solution on functional plasma polymerized films. And the article contained the following:

Surface plasmon resonance spectroscopy has been used to study the effect of aqueous solution on plasma polymers of allylamine, di(ethylene glycol) mono vinyl ether and maleic anhydride deposited at either continuous wave or pulsed plasma conditions. The behavior of the films in aqueous solution was dependent upon the plasma conditions used and can generally be correlated to the chem. structure of the film. The experimental process involved the reaction of 2-(2-(Vinyloxy)ethoxy)ethanol(cas: 929-37-3).Application In Synthesis of 2-(2-(Vinyloxy)ethoxy)ethanol

The Article related to plasma polymerization aqueous solution effect, Plastics Manufacture and Processing: Preparation Of Resins and other aspects.Application In Synthesis of 2-(2-(Vinyloxy)ethoxy)ethanol

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Ether – Wikipedia,
Ether | (C2H5)2O – PubChem

Liang, Siwei et al. published their research in Chemistry of Materials in 2012 |CAS: 929-37-3

The Article related to polysiloxane lithium ionic conductivity triphenylstyrylborate activation energy, Plastics Manufacture and Processing: Preparation Of Resins and other aspects.Quality Control of 2-(2-(Vinyloxy)ethoxy)ethanol

On June 26, 2012, Liang, Siwei; Choi, U. Hyeok; Liu, Wenjuan; Runt, James; Colby, Ralph H. published an article.Quality Control of 2-(2-(Vinyloxy)ethoxy)ethanol The title of the article was Synthesis and Lithium Ion Conduction of Polysiloxane Single-Ion Conductors Containing Novel Weak-Binding Borates. And the article contained the following:

Three borate monomers: lithium triphenylstyryl borate (B1), a variant with three ethylene oxides between the vinyl and the borate (B2) and a third with perfluorinated Ph rings (B3) were synthesized and used to prepare polysiloxane ionomers based on cyclic carbonates via hydrosilylation. B1 ion content variations show maximum 25 °C conductivity at 8 mol %, reflecting a trade-off between carrier d. and glass transition temperature (Tg) increase. Ethylene oxide spacers (B2) lower Tg, and increase the dielec. constant, both raising conductivity Perfluorinating the four Ph rings (B3) lowers the ion association energy, as anticipated by ab initio estimations This increases conductivity, a direct result of 3 times higher measured carrier d. The � kJ/mol activation energy of simultaneously conducting ions is less than half that of ionomers with either sulfonate or bis(trifluoromethanesulfonyl) imide anions, suggesting that ionomers with weak-binding borate anions may provide a pathway to useful single-ion Li+ conductors, if their Tg can be lowered. The experimental process involved the reaction of 2-(2-(Vinyloxy)ethoxy)ethanol(cas: 929-37-3).Quality Control of 2-(2-(Vinyloxy)ethoxy)ethanol

The Article related to polysiloxane lithium ionic conductivity triphenylstyrylborate activation energy, Plastics Manufacture and Processing: Preparation Of Resins and other aspects.Quality Control of 2-(2-(Vinyloxy)ethoxy)ethanol

Referemce:
Ether – Wikipedia,
Ether | (C2H5)2O – PubChem