Academic literature on the topic 'Polymer matrices'

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Journal articles on the topic "Polymer matrices"

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Khudyakov, Igor, Peter Levin, and Aleksei Efremkin. "Cage Effect under Photolysis in Polymer Matrices." Coatings 9, no. 2 (2019): 111. http://dx.doi.org/10.3390/coatings9020111.

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Photoinduced elementary reactions of low-MW compounds in polymers is an area of active research. Cured organic polymer coatings often undergo photodegradation by free-radical paths. Besides practical importance, such studies teach how the polymer environment controls elementary free-radical reactions. Presented here is a review of recent literature which reports such studies by product analysis and by a time-resolve technique of photochemical reaction inside the cage of a polymer and in the bulk of a polymer. It was established that application of moderate external magnetic field allows the co
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Liu, Tianbo, Christian Burger, and Benjamin Chu. "Nanofabrication in polymer matrices." Progress in Polymer Science 28, no. 1 (2003): 5–26. http://dx.doi.org/10.1016/s0079-6700(02)00077-1.

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Ishchenko, Alexander A. "Photonics and molecular design of dye-doped polymers for modern light-sensitive materials." Pure and Applied Chemistry 80, no. 7 (2008): 1525–38. http://dx.doi.org/10.1351/pac200880071525.

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The advantages of dye-doped polymer matrices over polymers and dyes, separately, are analyzed. The effects of the polymer nature and chemical constitution of organic dyes on the spectral and luminescent properties of these matrices are discussed. The processes of dye aggregation in polymers are characterized, and their influence on the photophysical properties and photochemical stability of dye-doped nonphotoconducting and photoconducting polymers is discussed. The different approaches for the struggle with dye aggregation in polymers are offered. The main paths of energy degradation of electr
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Woerly, S., G. Laroche, R. Marchand, J. Pato, V. Subr, and K. Ulbrich. "Intracerebral Implantation of Hydrogel-Coupled Adhesion Peptides: Tissue Reaction." Journal of Neural Transplantation and Plasticity 5, no. 4 (1995): 245–55. http://dx.doi.org/10.1155/np.1994.245.

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Arg-Gly-Asp peptides (RGD) were synthesized and chemically coupled to the bulk of N-(2-hydroxypropyl) methacrylamide-based polymer hydrogels. Fourier Transform Infrared Spectroscopy (FFIR) and amino acid analysis confirmed the peptide coupling to the polymer. Activated and control (unmodified) polymer matrices were stereotaxically implanted in the striata of rat brains, and two months later the brains were processed for immunohistochemistry using antibodies for glial acidic fibrillary protein (GFAP), laminin and neurofilaments. RGD-containing polymer matrices promoted stronger adhesion to the
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Al-Hakawati, M. S., and C. J. Banks. "Copper removal by polymer immobilised Rhizopus oryzae." Water Science and Technology 42, no. 7-8 (2000): 345–52. http://dx.doi.org/10.2166/wst.2000.0587.

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Rhizopus oryzae, strain IMI 057412, was immobilised by inclusion in six different polymers: polyvinlformal, polysulfone, polyurethane, alginate, polyacrylamide, k-carrageenan, polyethyleneimine(PEI). It was also grown on a seventh, polyurethane. The biomass/polymer matrices were formed into equal size units (4 mm spheres or cubes) and the resulting biomass/polymer matrices were used to uptake copper at 2 mg/l from a laboratory-formulated copper solution in shake flask experiments at room temperature and initially neutral pH. Results showed that the copper uptake capacity of immobilised biomass
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Kobrina, Larisa, Valentina Boyko, Serhii Riabov, Lydmila Orel, Serhii Sinelnikov та Volodumir Stompel. "POLYACRYLAMIDE MATRIX BASED ON β-CYCLODEXTRIN-CONTAINING PSEUDOROTAXANE FOR DRUGS RELEASE: SYNTHESIS AND PROPERTIES". Ukrainian Chemistry Journal 85, № 10 (2019): 102–15. http://dx.doi.org/10.33609/0041-6045.85.10.2019.102-115.

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Formation and studying of different inclusion complexes, which could be attributed to the supra-molecular structures, are still remaining among an actual topics in the modern polymer chemistry. The ability of cyclodextrins to selectively interact with a range of their size complementary molecules makes them promising objects for supramolecular chemis-try. Therefore, we obtained polymer matrices involv-ing acrylamide and methylene-bis-acrylamide with different content of pseudorotaxane based on β-cyc-lodextrin and polyoxypropylenedimethacrylate and confirmed their structures by different techni
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Jin, Fan-Long, Seul-Yi Lee, and Soo-Jin Park. "Polymer matrices for carbon fiber-reinforced polymer composites." Carbon letters 14, no. 2 (2013): 76–88. http://dx.doi.org/10.5714/cl.2013.14.2.076.

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Koh, Clement, Gary S. Grest, and Sanat K. Kumar. "Assembly of Polymer-Grafted Nanoparticles in Polymer Matrices." ACS Nano 14, no. 10 (2020): 13491–99. http://dx.doi.org/10.1021/acsnano.0c05495.

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Mills, P. J., J. W. Mayer, E. J. Kramer, et al. "Diffusion of polymer rings in linear polymer matrices." Macromolecules 20, no. 3 (1987): 513–18. http://dx.doi.org/10.1021/ma00169a008.

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Guipeng, Cai, and Charles Wilkie Charles. "Recent Advances on Montmorillonite-Based Fire Retardant Composites in Polymer Matrices." Vestnik Volgogradskogo gosudarstvennogo universiteta. Serija 10. Innovatcionnaia deiatel’nost’, no. 4 (November 6, 2014): 19–28. http://dx.doi.org/10.15688/jvolsu10.2014.4.3.

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Dissertations / Theses on the topic "Polymer matrices"

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Nolan, Trevor F. "Organometallic reactions in polymer matrices." Thesis, University of Nottingham, 1997. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.243749.

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Lee, Yook Heng. "Ion-selective acrylic polymer matrices." Thesis, University of Cambridge, 1998. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.624889.

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Lim, Kate. "Supramolecular polymer blends for composite matrices." Thesis, University of Reading, 2016. http://centaur.reading.ac.uk/66400/.

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This research project reports a new approach to thermoplastic composite matrix design, in which a low-MW polymer additive acts as a plasticiser and flow-promoter at high temperatures, but as a non-covalent cross-linking agent at lower temperatures. Thus, poly(aryl ether ketone)s (PAEKs) are functionalised with π-electron rich terminal groups and blended with π-electron deficient polyimides. A non-covalent charge-transfer stacking interaction between the two polymers forms a self-assembled supramolecular network. Carbon fibre composites with matrices composed of these supramolecular polymer ble
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Rogge, Carsten. "Photophysical studies of organic dyes in polymer matrices." Thesis, Cranfield University, 1998. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.266485.

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Hu, Anran. "Mixed polymer hydrophilic matrices containing HPMC and PEO." Thesis, University of Nottingham, 2016. http://eprints.nottingham.ac.uk/31558/.

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The research in this thesis describes investigations of (i) mixed polymer HPMC and PEO hydrophilic matrices and their performance in low and high ionic environments and (ii) understanding the internal behaviour of HPMC and PEO mixed systems. It was postulated that using a blend of these polymers might provide advantages over the use of single polymers. A series of ‘realistic’ 30% w/w polymer matrix formulations, containing different weight ratios of HPMC and PEO and a soluble model drug (caffeine), were tested in ionically challenging media, up to 1M sodium chloride (NaCl). Dissolution testing
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Hisada, Kenji. "Triplet Energy Transfer and Migration in Polymer Matrices." Kyoto University, 1998. http://hdl.handle.net/2433/157030.

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本文データは平成22年度国立国会図書館の学位論文(博士)のデジタル化実施により作成された画像ファイルを基にpdf変換したものである<br>Kyoto University (京都大学)<br>0048<br>新制・課程博士<br>博士(工学)<br>甲第7329号<br>工博第1704号<br>新制||工||1104(附属図書館)<br>UT51-98-G258<br>京都大学大学院工学研究科高分子化学専攻<br>(主査)教授 山本 雅英, 教授 山岡 仁史, 教授 増田 俊夫<br>学位規則第4条第1項該当
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Livi, Sébastien. "Ionic liquids : multifunctional agents of the polymer matrices." Lyon, INSA, 2010. http://theses.insa-lyon.fr/publication/2010ISAL0101/these.pdf.

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An excellent thermal stability, a low saturated vapor pressure, a no flammability, a good ionic conductivity and the different cations / anions combinations possible of ionic liquids are currently the focus of the research. Because of its various benefits, they are as a new alternative in the polymer science, and particularly in the field of the nanocomposites where their use is currently limited to the function of surfactant for the layered silicates. However, before claiming the status of an alternative, it is necessary to highlight the benefits of their use on the final properties of polyme
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Gudmundsdóttir, Anna Dóra. "Photochemistry of some naphthoquinols in solid polymer matrices." Thesis, University of British Columbia, 1988. http://hdl.handle.net/2429/27471.

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The main objective of this work was to study how polymer media can modify the photochemical reactivity of dissolved guest molecules. Three tetrahydronaphthoquinols, whose photochemistry is known to be sensitive to the reaction medium, were synthesized for this study. The photochemistry of these compounds consisted of [2 + 2] cycloaddition in solution and hydrogen abstraction-initiated rearrangement in the solid state. Different photopro-ducts from solution and solid state photolysis were interpreted as being due to reaction from different conformers in the different media. 2,3,4aα,6,7,8aα-hex
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Zimmerman, Catherine Mary. "Advanced gas separation membrane materials : hyper rigid polymers and molecular sieve-polymer mixed matrices /." Digital version accessible at:, 1998. http://wwwlib.umi.com/cr/utexas/main.

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D'mello, Sheetal Reginald. "Natural polymer based gene activated matrices for bone regeneration." Diss., University of Iowa, 2015. https://ir.uiowa.edu/etd/1586.

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Gene therapy using non-viral vectors that are safe and efficient at transfecting target cells is an effective approach to overcome the shortcomings of delivery of growth factors in protein form. The objective of this study was to develop and test a non-viral gene delivery system for bone regeneration utilizing a collagen scaffold carrying polyethylenimine (PEI)-plasmid DNA (pDNA) complexes. Two different pDNA were used: pDNA encoding platelet derived growth factor-B (PDGF-B) and pDNA encoding vascular endothelial growth factor (VEGF). The complexes were fabricated at an amine (N) to phosphate
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Books on the topic "Polymer matrices"

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McCallon, Roisin Lesley. The controlled release of macromolecules from macroporous hydrophyllic polymer matrices. Aston University. Department of Pharmaceutical Sciences, 1990.

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Chrétien, Gilbert. Matériaux composites à matrice organique: Polymères et renforts type, caractéristiques, technologies de mise en forme, applications. Lavoisier, 1986.

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Approaches to polymer-derived CMC matrices. National Aeronautics and Space Administration, 1992.

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Approaches to polymer-derived CMC matrices. National Aeronautics and Space Administration, 1992.

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United States. National Aeronautics and Space Administration., ed. Approaches to polymer-derived CMC matrices. National Aeronautics and Space Administration, 1992.

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United States. National Aeronautics and Space Administration., ed. Approaches to polymer-derived CMC matrices. National Aeronautics and Space Administration, 1992.

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Chiu, Li-kun. A stochastic model to describe polymer degradation and drug release from degradable polymer matrices. 1995.

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Kudinov, V. V., N. V. Korneeva, and I. K. Krylov. Effect of components on the properties of composite materials. Nauka Publishers, 2021. http://dx.doi.org/10.7868/9785020408654.

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Methods for the creation and characteristics of composite materials reinforced with carbon, aramid and UHMWPE-fibers based on polymer matrices are considered. The properties of more than 50 composite materials are given. Technologies for their production from wound nonwoven and woven fiber reinforcements are proposed, with regulation of activation, composition and arrangement of components in the material. Experimental methods for studying polymer com- posites, such as wet-pull-out (W-P-O), full-pull-out (F-P-O) and impact break (IB) have been deve­loped. It allows one to study the interfacial
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Svenson, Sonke. Polymeric Drug Delivery: Volume II: Polymeric Matrices and Drug Particle Engineering (Acs Symposium Series). An American Chemical Society Publication, 2006.

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Polowinski, S. Template Polymerization. ChemTec Publishing, 1996.

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Book chapters on the topic "Polymer matrices"

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AI-Jawhari, Ihsan Flayyih Hasan. "Polymer Nanocomposite Matrices." In Handbook of Polymer and Ceramic Nanotechnology. Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-10614-0_16-1.

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AI-Jawhari, Ihsan Flayyih Hasan. "Polymer Nanocomposite Matrices." In Handbook of Polymer and Ceramic Nanotechnology. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-40513-7_16.

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Nicolais, Luigi, and Gianfranco Carotenuto. "Metal Particles Confined in Polymeric Matrices." In Polymer Physics. John Wiley & Sons, Inc., 2010. http://dx.doi.org/10.1002/9780470600160.ch15.

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Simonsen, John, and Youssef Habibi. "Cellulose Nanocrystals in Polymer Matrices." In The Nanoscience and Technology of Renewable Biomaterials. John Wiley & Sons, Ltd, 2009. http://dx.doi.org/10.1002/9781444307474.ch10.

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Ramachandran, Dhanya, and Marek W. Urban. "Photochromic Responses in Polymer Matrices." In Handbook of Stimuli-Responsive Materials. Wiley-VCH Verlag GmbH & Co. KGaA, 2011. http://dx.doi.org/10.1002/9783527633739.ch9.

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Zhao, Yu, Lijia Pan, Zhuanghao Yue, and Yi Shi. "Conducting Polymer Hydrogels: Synthesis, Properties, and Applications for Biosensors." In Nanocellulose and Nanohydrogel Matrices. Wiley-VCH Verlag GmbH & Co. KGaA, 2017. http://dx.doi.org/10.1002/9783527803835.ch8.

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Trostyanskaya, E. B. "Polymeric matrices in fibre-reinforced composite materials." In Polymer Matrix Composites. Springer Netherlands, 1995. http://dx.doi.org/10.1007/978-94-011-0515-6_1.

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Tiwari, Sandip B., James DiNunzio, and Ali Rajabi-Siahboomi. "Drug–Polymer Matrices for Extended Release." In Controlled Release in Oral Drug Delivery. Springer US, 2011. http://dx.doi.org/10.1007/978-1-4614-1004-1_7.

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Plonka, A. "Decay of Radicals in Polymer Matrices." In Lecture Notes in Chemistry. Springer Berlin Heidelberg, 1986. http://dx.doi.org/10.1007/978-3-642-93326-4_4.

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Musto, Pellegrino, Michele Galizia, Giuseppe Scherillo, and Giuseppe Mensitieri. "Water Sorption Thermodynamics in Polymer Matrices." In Solid Mechanics and Its Applications. Springer Netherlands, 2013. http://dx.doi.org/10.1007/978-94-007-7417-9_2.

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Conference papers on the topic "Polymer matrices"

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Mal'tsev, Eugene I., Dmitry A. Lypenko, Boris I. Shapiro, et al. "J-aggregate electroluminescence in polymer matrices." In SPIE's International Symposium on Optical Science, Engineering, and Instrumentation, edited by Zakya H. Kafafi. SPIE, 1999. http://dx.doi.org/10.1117/12.372716.

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Myshkin, N. K., S. S. Pesetskii, and A. Ya Grigoriev. "Polymer Composites in Tribology." In BALTTRIB 2015. Aleksandras Stulginskis University, 2015. http://dx.doi.org/10.15544/balttrib.2015.25.

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There are many options for tribological applications of basic polymers primarily as matrices and fillers of compound material due to the structural peculiarities of polymers. The polymer materials for tribosystems and their processing technique are briefly described. It is shown that composites with thermoplastic matrix are effective antifriction materials just as composites with thermosetting matrix is basically used as brake materials. Information on tribological behavior of polymer-based materials is presented. Polymer nanocomposites made by mixing nanofillers with melted thermoplastics are
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Tork, Amir, Francois Boudreault, Mathieu Roberge, Tigran V. Galstian, Roger A. Lessard, and Anna-Marie R. Ritcey. "Photochromic reaction of spiropyran in polymer matrices." In 2000 International Conference on Application of Photonic Technology (ICAPT 2000), edited by Roger A. Lessard and George A. Lampropoulos. SPIE, 2000. http://dx.doi.org/10.1117/12.406295.

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Zimnyakov, Dmitry A., Sergey Yuvchenko, Ilya Slavnetskov, et al. "Low-coherence reflectometry of the foamed polymer matrices." In Saratov Fall Meeting 2018: Laser Physics, Photonic Technologies, and Molecular Modeling, edited by Vladimir L. Derbov. SPIE, 2019. http://dx.doi.org/10.1117/12.2522799.

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Draxler, Sonja, and Max E. Lippitsch. "Effect of polymer matrices in lifetime-based sensing." In Photonics West '95, edited by Joseph R. Lakowicz. SPIE, 1995. http://dx.doi.org/10.1117/12.208494.

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Kislyakov, Ivan, Igor V. Bagrov, Inna M. Belousova, et al. "Aggregated inorganic chromophores in polymer matrices for photonics applications." In International Conference on Fibre Optics and Photonics. OSA, 2014. http://dx.doi.org/10.1364/photonics.2014.s5a.78.

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Yamagishi, Frederick G., Leroy J. Miller, and Camille I. van Ast. "Morphological Control In Polymer-Dispersed Liquid Crystal Film Matrices." In OE/LASE '89, edited by J. William Doane and Zvi Yaniv. SPIE, 1989. http://dx.doi.org/10.1117/12.976397.

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Kutsevol, Nataliya, Iuliia Konko, Michel Rawiso, and Tetiana Bezugla. "Silver nanoparticle synthesis in polymer matrices of various internal structures." In 6TH INTERNATIONAL CONFERENCE ON TIMES OF POLYMERS (TOP) AND COMPOSITES. AIP, 2012. http://dx.doi.org/10.1063/1.4738459.

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Sawa, F., T. Imai, T. Ozaki, T. Shimizu, and T. Tanaka. "Molecular dynamics simulation of characteristics of polymer matrices in nanocomposites." In 2007 Annual Report - Conference on Electrical Insulation and Dielectric Phenomena. IEEE, 2007. http://dx.doi.org/10.1109/ceidp.2007.4451514.

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Stoleru, Elena, Raluca Dumitriu, Mihai Brebu, Cornelia Vasile, and Alin Enache. "Development of Bioactive Polymeric Materials by Incorporation of Essential/Vegetal Oils into Biopolymer Matrices." In The First International Conference on “Green” Polymer Materials 2020. MDPI, 2020. http://dx.doi.org/10.3390/cgpm2020-07197.

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Reports on the topic "Polymer matrices"

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Czerwinski, Kenneth. Utilization of Methacrylates and Polymer Matrices for the Synthesis of Ion Specific Resins. Office of Scientific and Technical Information (OSTI), 2013. http://dx.doi.org/10.2172/1116530.

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Tharayil, Nishanth. Exploratory Project: Rigid nanostructured organic polymer monolith for in situ collection and analysis of plant metabolites from soil matrices. Office of Scientific and Technical Information (OSTI), 2016. http://dx.doi.org/10.2172/1259701.

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Dreier, Timothy. Control of Nanoparticles in Composite Polymer Matricies. Office of Scientific and Technical Information (OSTI), 2018. http://dx.doi.org/10.2172/1460667.

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