Academic literature on the topic '(2-(trimethylsilyloxy)ethyl methacrylate)'

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Journal articles on the topic "(2-(trimethylsilyloxy)ethyl methacrylate)"

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Kim, Dong-Hyun, Tae-Hun Kim, and A.-Young Sung. "Ophthalmic Application of Polymer with High Oxygen Transmissibility Containing 2-(trimethylsilyloxy)ethyl Methacrylate." Journal of the Korean Chemical Society 57, no. 3 (2013): 405–10. http://dx.doi.org/10.5012/jkcs.2013.57.3.405.

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Ritz, Pavel, Petra Látalová, Jaroslav Kříž, Jan Genzer, and Petr Vlček. "Statistical copolymers of 2-(trimethylsilyloxy)ethyl methacrylate and methyl methacrylate synthesized by ATRP." Journal of Polymer Science Part A: Polymer Chemistry 46, no. 5 (2008): 1919–23. http://dx.doi.org/10.1002/pola.22436.

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Yoshida, Hidekazu, Shinichi Itsuno, and Koichi Ito. "Syntheses and interfacial characterization of graft copolymers from styrene and 2-hydroxyethyl methacrylate that comprise either trunks or branches." Canadian Journal of Chemistry 73, no. 11 (1995): 1757–64. http://dx.doi.org/10.1139/v95-216.

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Polystyrene (PS) and poly(2-hydroxyethyl methacrylate) (PHEMA) macromonomers with either p-vinylbenzyl or methacrylate end groups were prepared by living anionic polymerizations of styrene and 2-(trimethylsilyloxy)ethyl methacrylate, respectively, followed by appropriate end-capping. They were radically copolymerized with 2-hydroxyethyl methacrylate and styrene, respectively, to afford PS-g-PHEMA and PHEMA-g-PS, having PS trunks with PHEMA branches or the reverse architecture. 1H NMR spectra of the graft copolymers in deuterated methanol showed their micelle formation with PS and PHEMA chains
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Lee, Bong-Seop, Jae-Kyung Lee, Jae-Hwi Bong, and Hun-Soo Byun. "Phase behavior for the 2-(trimethylsilyloxy)ethyl methacrylate and 3-(trimethoxysilyl)propyl methacrylate in supercritical carbon dioxide." Fluid Phase Equilibria 462 (April 2018): 1–5. http://dx.doi.org/10.1016/j.fluid.2018.01.013.

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Kim, So Yeun, Jae-Hyung Wee, Cheol-Min Yang, and Bo-Hye Kim. "Electrochemical capacitor performance of 2-(trimethylsilyloxy)ethyl methacrylate-derived highly mesoporous carbon nanofiber composite containing MnO 2." Journal of Electroanalytical Chemistry 801 (September 2017): 403–9. http://dx.doi.org/10.1016/j.jelechem.2017.07.028.

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Osicka, Josef, Miroslav Mrlik, Markéta Ilčíková, et al. "Light-Induced Actuation of Poly(dimethylsiloxane) Filled with Graphene Oxide Grafted with Poly(2-(trimethylsilyloxy)ethyl Methacrylate)." Polymers 10, no. 10 (2018): 1059. http://dx.doi.org/10.3390/polym10101059.

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This study serves to combine two approaches into one single step, to achieve a significant improvement of the light-induced actuation capabilities. Graphene oxide (GO) is an inert material, from the electrical and thermal conductivity point of view, and is incompatible with the usually-used poly(dimethylsiloxane) (PDMS) matrix. During surface-modification by surface-initiated atom transfer radical polymerization, the GO was transformed into a conducting and compatible material with the PDMS showing enormous light-induced actuation capability. The GO surface-modification with poly(2-(trimethyls
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Kutalkova, Erika, Miroslav Mrlik, Marketa Ilcikova, Josef Osicka, Michal Sedlacik, and Jaroslav Mosnacek. "Enhanced and Tunable Electrorheological Capability using Surface Initiated Atom Transfer Radical Polymerization Modification with Simultaneous Reduction of the Graphene Oxide by Silyl-Based Polymer Grafting." Nanomaterials 9, no. 2 (2019): 308. http://dx.doi.org/10.3390/nano9020308.

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In this study, a verified process of the "grafting from" approach using surface initiated atom transfer radical polymerization was applied for the modification of a graphene oxide (GO) surface. This approach provides simultaneous grafting of poly(2-(trimethylsilyloxy)ethyl methacrylate) (PHEMATMS) chains and a controllable reduction of the GO surface. This allows the fine tuning of its electrical conductivity, which is a crucial parameter for applications of such hybrid composite particles in electrorheological (ER) suspensions. The successful coating was confirmed by transmission electron mic
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Aly, A. A., H. M. Ammar, and A. A. Khalil. "Copolymerization Parameters of 2-(N-Phthalimido) ethyl Methacrylate with Different Vinyl Monomers." Material Science Research India 8, no. 1 (2011): 17–24. http://dx.doi.org/10.13005/msri/080103.

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2-(N-phthalimido)ethyl methacrylate was prepared by the reaction of methacrylic acid with N-(2-hydroxyethyl)phthalimide in presence of N,N?-dicyclohexylcarbodiimide. The monomer reactivity ratios for copolymerization reactions of 2-(N-phthalimido)ethyl methacrylate with methyl acrylate, ethyl acrylate, butyl acrylate and styrene, respectively, in solution with azobisisobutyronitrile (AIBN) as initiator, were estimated by nitrogen analysis. The structure of the copolymers was investigated by IR spectroscopy. The Q and e values for 2-(N-phthalimido)ethyl methacrylate were calculated. Some of the
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Schneider, Bohdan, Jan Štokr, Jaroslav Straka, Martin Přádný, and Stanislav Ševčík. "Conformational structure of poly[2-(dimethylamino)ethyl methacrylate], 2-(dimethylamino)ethyl pivalate and of their quaternary iodides. Vibrational and NMR spectra." Collection of Czechoslovak Chemical Communications 53, no. 12 (1988): 3097–107. http://dx.doi.org/10.1135/cccc19883097.

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Raman, infrared, and 1H and 13C NMR spectra of 2-(dimethylamino)ethyl pivalate, 2-(pivaloyloxy)ethyltrimethylammonium iodide, poly[2-(dimethylamino)ethyl methacrylate] and of its quaternary iodide were measured. Spectral analysis revealed that in crystalline 2-(dimethylamino)ethyl pivalate and in its quaternary salt, the 2-(dimethylamino)ethyl group exists in the g conformational state. In the liquid state, these compounds also contain a smaller amount of the t conformational structure of the 2-(dimethylamino)ethyl group. In poly[2-(dimethylamino)ethyl methacrylate] and in its quaternary iodid
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Pei, Yiwen, Nadia C. Dharsana, and Andrew B. Lowe. "Ethanolic RAFT Dispersion Polymerization of 2-(Naphthalen-2-yloxy)ethyl Methacrylate and 2-Phenoxyethyl Methacrylate with Poly[2-(dimethylamino)ethyl Methacrylate] Macro-Chain Transfer Agents." Australian Journal of Chemistry 68, no. 6 (2015): 939. http://dx.doi.org/10.1071/ch14490.

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The ethanolic reversible addition-fragmentation chain transfer dispersion polymerization (RAFTDP), at 21 wt-%, of 2-(naphthalen-2-yloxy)ethyl methacrylate (NOEMA) and 2-phenoxyethyl methacrylate (POEMA) with a poly[2-(dimethylamino)ethyl methacrylate] macro-chain transfer agent (CTA) with an average degree of polymerization of 20 (PDMAEMA20) is described. DMAEMA20-b-NOEMAy (y = 20–125) block copolymers were readily prepared under dispersion conditions in ethanol at 70°C. However, the polymerization of NOEMA was not well controlled, with size exclusion chromatograms being distinctly bi or multi
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Dissertations / Theses on the topic "(2-(trimethylsilyloxy)ethyl methacrylate)"

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Pearson, Russell. "Characterisation and evaluation of poly(2-methacryloyl-oxy) ethyl phosphorylcholine- poly(2-diisopropyl-amino) ethyl methacrylate (PMPC-PDPA) self-assembly for biomedical applications." Thesis, University of Sheffield, 2014. http://etheses.whiterose.ac.uk/11452/.

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Drug Delivery Systems (DDS) can be used to improve the effectiveness of therapeutic small molecules by enabling specific targeting, lower doses and reduced side effects. Polymersomes are a fully synthetic, non-toxic DDS capable of entrapping, delivering and releasing a therapeutic cargo inside mammalian cells. Improvements to the production and purification processes for polymersomes may improve their efficiency as a DDS. The aim of this thesis was to investigate the formation of dispersed pH responsive PMPC-PDPA polymersomes specifically for drug delivery applications. Dynamic Light Scatterin
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Theqah, Ameerah Mohammed. "Conformational studies of poly(2-(dimethylamino ethyl methacrylate)) (PDMAEMA) and poly(acrylic acid) (PAA) using fluorescence spectroscopy." Thesis, University of Sheffield, 2016. http://etheses.whiterose.ac.uk/15512/.

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This project aims to explore the aqueous solution dynamics of the poly(dimethyl aminoethyl methacrylate) (PDMAEMA) and poly(acrylic acid) (PAA) systems using fluorescence techniques. Both of these polymers were synthesised several times using free radical polymerisation techniques with two types of fluorophore labels included in synthesis. The resultant polymers were investigated using fluorescence techniques which include steady state fluorescence studies, fluorescence decay lifetimes and time resolved anisotropy measurements. Initial solution dynamics of these polymer show that the PDMAEMA e
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Shahidan, Nur Nabilah. "A study of thermogelling PCL dispersion : towards an injectable colloidal cell delivery system." Thesis, University of Manchester, 2014. https://www.research.manchester.ac.uk/portal/en/theses/a-study-of-thermogelling-pcl-dispersion-towards-an-injectable-colloidal-cell-delivery-system(88615556-e5f3-4719-a214-22be1bcbf505).html.

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This thesis present a study of thermo-gelling polycaprolactone (PCL) dispersion which consist of a mixture of PCL microspheres (MSs) and thermo-responsive, graft cationic copolymer. The PCL microspheres are solid or colloidosomes (hollow). This study aims toward an injectable colloidal cell delivery system. The thermo-responsive copolymer used in this study is a new family of cationic graft copolymer. The cationic graft copolymer consisted of cationic poly(N,N-dimethylaminoethyl methacrylate) backbone and poly 2-(2-methoxyethoxy) ethyl methacrylate (PMA) side chains. A series of new cationic g
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Altin, Burcu [Verfasser], Michael [Akademischer Betreuer] Gradzielski, Michael [Gutachter] Gradzielski, and André [Gutachter] Laschewsky. "Synthesis and characterization of poly((2-dimethylamino)ethyl methacrylate) (PDMAEMA) modified silica nanoparticles / Burcu Altin ; Gutachter: Michael Gradzielski, André Laschewsky ; Betreuer: Michael Gradzielski." Berlin : Technische Universität Berlin, 2019. http://d-nb.info/1198308028/34.

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Ananthoji, Ramakanth. "Hydrophilic Polymers of Poly (2-Hydroxy Ethyl Methacrylate) with Tunable Properties for Drug Release, Sequestration of Blistering Agent, Preparation of Ultra-Strong Hydrogels & Thermal Stability of Various Organic Azides." Scholar Commons, 2012. http://scholarcommons.usf.edu/etd/3949.

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The design and synthesis of new finely tunable porous materials has spurred interest in developing novel uses in a variety of systems. Zeolites, inorganic materials with high thermal and mechanical stability, in particular, have been widely examined for use in applications such as catalysis, ion exchange and separation. A relatively new class of inorganic-organic hybrid materials known as metal-organic frameworks (MOFs) has recently surfaced, and many have exhibited their efficiency in potential applications such as ion exchange and drug delivery. A more recent development is the design and sy
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Wang, Yao-Sheng, and 王耀生. "Synthesis of poly(2-(dimethylamino)ethyl methacrylate) - chondroitin sulfate methacrylate nanogel as gene carriers." Thesis, 2012. http://ndltd.ncl.edu.tw/handle/50565093646905021693.

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碩士<br>高雄醫學大學<br>醫藥暨應用化學研究所<br>100<br>Hydrogel nanoparticles—also referred to as polymeric nanogels or macromolecular micelles—are emerging as promising drug carriers or gene carriers for therapeutic applications. Poly(2-(dimethylamino)ethyl methacrylate) (DM) is a water-soluble cationic polymer, which is able to bind to DNA by electrostatic interactions. Like other cationic polymers, DM is slightly cytotoxic. Therefore, we use chondroitin sulfate methacrylate (CM) to crosslink it, hoping to decrease its cytotoxicity. Chondroitin sulfate (CS) is a natural anionic polysaccharide with good biocom
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Chiang, Pang-chi, and 江邦騏. "Synthesis and Characterization of Poly(2-(dimethylamino)ethyl methacrylate-co-methacrylic acid)." Thesis, 2010. http://ndltd.ncl.edu.tw/handle/79404893055068673888.

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碩士<br>義守大學<br>生物技術與化學工程研究所碩士班<br>98<br>UV copolymerization of 2-(dimethylamino)ethyl methacrylate (DMAEMA), methacrylic acid (MAA) and Trimethylolpropane trimethacrylate (TMPTMA) using the initiator 1-Hydroxycyclohexyl phenyl ketone (HCPK) were studied. Highly transparent films of various formulations were successfully prepared. For the synthesized films, ultraviolet-visible (UV-Vis) spectroscopy was employed to measure the transmittance, while contact angle measurements were made to study their surface energy. It was found that the surface energy was reduced with the addition of TMPTMA. T
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Hsieh, Hsun-Hui, and 謝薰慧. "Preparation and properties of Rhodamine B end-capped poly(2-(dimethylamino)ethyl methacrylate)." Thesis, 2013. http://ndltd.ncl.edu.tw/handle/84157300933201935111.

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碩士<br>中原大學<br>化學工程研究所<br>101<br>Amine-terminated poly(2-(dimethylamino)ethyl methacrylate) (PDMAEMA-NH2) is prepared by chain transfer radical polymerization. Then PDMAEMA-NH2 reacts with Rhodamine B to result in PDMAEMA-RhB polymer. The other telechelic amine-terminated poly(2-(dimethylamino)ethyl methacrylate) (NH2-PDMAEMA-NH2) is prepared through atom transfer radical polymerization (ATRP). The precursor Br-PDMAEMA-Br is prepared through ATRP of DMAEMA. The bromine groups of the polymer has been transformed into amine groups to result in NH2-PDMAEMA-NH2 polymer. The Rhodamine B end-capped p
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LIN, YEN-TZU, and 林妍慈. "CO2 responsiveness of temperature- and pH-sensitive chitosan-g-poly[(2-dimethylamino)ethyl methacrylate]." Thesis, 2016. http://ndltd.ncl.edu.tw/handle/80859776175792652991.

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碩士<br>國立高雄大學<br>化學工程及材料工程學系碩士班<br>104<br>In this study, poly(2-dimethylamino)ethyl methacrylate (PDMAEMA) was prepared by atom transfer radical polymerization followed by grafting to chitosan (CS). The temperature- and pH-sensitive PDMAEMA and CS-g-PDMAEMA were investigated into their CO2 responsiveness and reversible CO2-switchable behavior as an emulsifier via simple CO2 and N2 bubblings. Proton NMR, GPC, TGA, DSC, particle size analysis, SEM and Zeta potential were used for characterizations of compositions, molecular weights, and aqueous related properties of PDMAEMA and CS-g-PDMAEMA. The
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Tan, J. F., P. Ravi, Heng-Phon Too, T. Alan Hatton, and K. C. Tam. "Association Behavior of Biotinylated and Non-Biotinylated PolyEthylene Oxide-b-Poly(2-(Diethylamino)Ethyl Methacrylate)." 2004. http://hdl.handle.net/1721.1/7473.

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Biotinylated and non-biotinylated copolymers of ethylene oxide (EO) and 2-(diethylamino)ethyl methacrylate (DEAEMA) were synthesized by the atom transfer radical polymerization technique (ATRP). The chemical compositions of the copolymers as determined by NMR are represented by PEO₁₁₃PDEAEMA₇₀ and biotin-PEO₁₀₄PDEAEMA₉₃ respectively. The aggregation behavior of these polymers in aqueous solutions at different pHs and ionic strengths was studied using a combination of potentiometric titration, dynamic light scattering (DLS), static light scattering (SLS), and transmission electron microscopy (T
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Books on the topic "(2-(trimethylsilyloxy)ethyl methacrylate)"

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Kagaku Busshitsu Hyōka Kenkyū Kikō and Shin Enerugī Sangyō Gijutsu Sōgō Kaihatsu Kikō (Japan), eds. Metakuriru-san 2-(jimechiruamino) echiru: 2-(dimethylamino)ethyl methacrylate. Seihin Hyōka Gijutsu Kiban Kikō Kagaku Busshitsu Hyōka Kenkyū Kikō, 2009.

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Book chapters on the topic "(2-(trimethylsilyloxy)ethyl methacrylate)"

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Gooch, Jan W. "2(1-Aziridinyl)ethyl Methacrylate." In Encyclopedic Dictionary of Polymers. Springer New York, 2011. http://dx.doi.org/10.1007/978-1-4419-6247-8_938.

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Wohlfarth, Ch. "Solubility parameter of poly[2-(N,N-dimethylamino)ethyl methacrylate-b-2-(N-morpholino)ethyl methacrylate]." In Polymer Solutions. Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-02890-8_904.

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Wohlfarth, Ch. "Solubility parameter of poly[2-(N,N-diethylamino)ethyl methacrylate-b-2-(N,N-dimethylamino)ethyl methacrylate]." In Polymer Solutions. Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-02890-8_900.

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Krasia, Theodora, and Helmut Schlaad. "Poly[2-(Acetoacetoxy)Ethyl Methacrylate]-Based Hybrid Micelles." In ACS Symposium Series. American Chemical Society, 2006. http://dx.doi.org/10.1021/bk-2006-0928.ch012.

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Wohlfarth, Ch. "Second virial coefficient of poly(isobutyl methacrylate-co-2-(tert-butylamino)ethyl methacrylate)." In Polymer Solutions. Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-02890-8_568.

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Wohlfarth, Ch. "Partial specific volume of poly[2-(triphenylmethoxy)ethyl methacrylate]." In Polymer Solutions. Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-02890-8_291.

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Wohlfarth, Ch. "Second virial coefficient of poly[2-(triphenylmethoxy)ethyl methacrylate]." In Polymer Solutions. Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-02890-8_722.

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Wohlfarth, Ch. "Solubility parameter of poly[2-(N-morpholino)ethyl methacrylate]." In Polymer Solutions. Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-02890-8_974.

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Wohlfarth, Ch. "Refractive index of the mixture (1) chlorobenzene; (2) ethyl methacrylate." In Refractive Indices of Pure Liquids and Binary Liquid Mixtures (Supplement to III/38). Springer Berlin Heidelberg, 2008. http://dx.doi.org/10.1007/978-3-540-75291-2_1199.

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Wohlfarth, Ch. "Refractive index of the mixture (1) ethyl methacrylate; (2) hexane." In Refractive Indices of Pure Liquids and Binary Liquid Mixtures (Supplement to III/38). Springer Berlin Heidelberg, 2008. http://dx.doi.org/10.1007/978-3-540-75291-2_1262.

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Conference papers on the topic "(2-(trimethylsilyloxy)ethyl methacrylate)"

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Stesikova, Elvira, Tammy L. Metroke, Perry L. Reed, Vinod S. Agarwala, and Edward T. Knobbe. "Impact of Trivalent Chromium Conversion Layers and Hybrid Silicate Coatings on Corrosion Resistance of Aluminum Alloys." In CORROSION 2000. NACE International, 2000. https://doi.org/10.5006/c2000-00287.

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Abstract Trivalent chromium conversion coatings have been deposited onto aluminum 2024-T3 alloy by immersion into or by spraying on a solution of chromic sulfate and hexafluorozirconate for periods of time varying from 3 minutes to 5 days. This treatment was followed by the deposition of hybrid silicate materials containing different organic modifiers [vinyl, methacrylate, epoxide functionalities and poly(2-ethyl-2-oxazoline)] to produce composite coatings. Aluminum alloys coated with the composite films, as well as single-layer coated aluminum alloys, i.e. coated with the conversion coating o
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Afroze, Tamanna, and A. H. Bhuiyan. "Effect of iodine doping on the ac electrical properties of plasma polymerized 2(diethylamino)ethyl methacrylate thin films." In 2014 9th International Forum on Strategic Technology (IFOST). IEEE, 2014. http://dx.doi.org/10.1109/ifost.2014.6991161.

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Hu, Wen, Jon Holy, and Xun Yu. "Fibroblast Behavior on Electrospun PMMAEA and PMMAEA-Collagen Nanofibers." In ASME 2013 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2013. http://dx.doi.org/10.1115/imece2013-62980.

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The influence of different physical forms of substrates on fibroblast behavior was examined by comparing the following experimental and control groups: 1) glass coverslips, 2) poly(methyl methacrylate-co-ethyl acrylate) (PMMAEA) cast films, 3) electrospun PMMAEA nanofibers, 4) electrospun PMMAEA/collagen nanofibers, and 5) electrospun collagen. Cell adhesion, spreading and proliferation were compared on the different substrates. It was observed that fibroblasts on electrospun PMMAEA, PMMAEA-collagen, and collagen substrates spread more slowly after plating, and did not spread out to the extent
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