Academic literature on the topic 'Layers of nanocomposite'

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Journal articles on the topic "Layers of nanocomposite"

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Jokar, Maryam, Russly Abdul Rahman, and Luqman Chuah Abdullah. "Physical and Antimicrobial Characterization of Self Assembled Silver Nanoparticle/Chitosan onto Low Density Polyethylene Film as Active Packaging Polymer." Journal of Nano Research 27 (March 2014): 53–64. http://dx.doi.org/10.4028/www.scientific.net/jnanor.27.53.

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Colloidal Silver nanoparticles with a size of 5 nm produced by chemical reduction using poly ethylene glycol (PEG 200). Layers of silver nanoparticles and chitosan were deposited onto low density polyethylene (LDPE) substrate by layer by layer (LBL) self-assembly technique. Silver nanocomposite films were built by sequential dipping of LDPE film in either anionic silver nanoparticles or cationic chitosan. Silver nanoparticles and chitosan led to the formation of nanocomposite films possessing antimicrobial properties with the thickness of 2, 4, 8, 12 and 20 layers. Silver nanocomposite films w
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Haq, Izhar ul, AA Khurram, Rizwan Hussain, and Shahzad Naseem. "Designing and manufacturing of a lightweight and broadband electromagnetic wave absorber with combined carbonaceous and magnetic nanofillers." Polymers and Polymer Composites 27, no. 4 (2019): 215–21. http://dx.doi.org/10.1177/0967391118822794.

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Two different types of microwave absorbers composed of two layers and four layers of nanocomposites have been designed in the light of the theory of electromagnetic wave absorbers and tested. The nanocomposites were prepared from glass fiber/epoxy filled with carbonaceous and magnetic nanoparticles. The carbonaceous nanoparticles include multiwalled carbon nanotubes, graphene nanoplatelets (GNPs), and thermally exfoliated GNPs, whereas magnetic nanoparticles include CoFe3O4, CoNiFe3O4, MnFe3O4 in different weight percentage. The absorbers with two layers of nanocomposites had total designed th
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Ma, Chun Yang, Meng Hua Wu, Jia Gui Wan, and Zhi Jia Qu. "Characterization and Structure of Ni-AlN Nanocomposite Layers Fabricated by Pulse Electro-Deposition 19." Advanced Materials Research 236-238 (May 2011): 2126–30. http://dx.doi.org/10.4028/www.scientific.net/amr.236-238.2126.

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The pulse electro-deposition (PED) has been successfully applied for fabricating nanocomposite layers on the surface of steel substrates. The Ni-AlN nanocomposite layers were fabricated by mixing a given amount of AlN particles in electrolyte ultrasonically. The composition and surface morphology of the layers were investigated by means of XRD and SEM. The results showed that the Ni-AlN nanocomposite layers consisting of nickel grains (~68.27 nm) and AlN nanoparticles (~38.46 nm) had been obtained on the surface of steel substrates by PED. The Ni-AlN layer exhibited a compact surface morpholog
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Sadykov, Vladislav, Natalia Mezentseva, Vladimir Usoltsev, et al. "Metal Supported SOFC on the Gradient Permeable Metal Foam Substrate." Advanced Materials Research 123-125 (August 2010): 1083–86. http://dx.doi.org/10.4028/www.scientific.net/amr.123-125.1083.

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Gradient permeable metallic substrate material consisting of two layers of NiAl alloy was developed for the SOFC design. The open-cell foam layer (thickness 1-2 mm, cell density 60 ppi) provides the structure robustness, while a thin (100-200 μm) mesoporous layer facilitates supporting functional layers. Cathode layers (LSM, LSFN and their nanocomposites with GDC or YSZ) and anode layers (NiO/YSZ, NiO/YSZ +Ru/Ln-Sr-Mn-Cr-O nanocomposite catalyst) were deposited by slip casting, electrophoretic deposition or air brushing. Thin (5-10 μm) YSZ layer was deposited by MO CVD. Power density up to 550
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Irfan, Muhammad, Suzanne Martin, Muhannad Ahmed Obeidi, et al. "A Magnetic Nanoparticle-Doped Photopolymer for Holographic Recording." Polymers 14, no. 9 (2022): 1858. http://dx.doi.org/10.3390/polym14091858.

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Functionalised holograms are important for applications utilising smart diffractive optical elements for light redirection, shaping and in the development of sensors/indicators. This paper reports on holographic recording in novel magnetic nanocomposites and the observed temperature change in dry layers and liquid samples exposed to alternating magnetic field (AMF). The nanocomposite consists of N-isopropylacrylamide (NIPA)-based polymer doped with magnetic nanoparticles (MNPs), and local heating is achieved through magnetic induction. Here, volume transmission holographic gratings (VTHGs) are
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Piao, Shang Hao, Hyeonju Lee, Jaehoon Park, and Hyoung Jin Choi. "Poly(4-vinylphenol-co-methyl methacrylate)/Hafnium Oxide Nanocomposite Gate Insulators for Organic Thin-Film Transistors." Journal of Nanoscience and Nanotechnology 20, no. 7 (2020): 4188–92. http://dx.doi.org/10.1166/jnn.2020.17567.

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We fabricate 6,13-bis(triisopropylsilylethynyl) pentacene (TIPS-Pn) thin-film transistors (TFTs) with nanocomposite insulators. The insulator layers consist of both poly(4-vinylphenol-co-methyl methacrylate) and high-dielectric constant hafnium oxide (HfO2) nanoparticles. The HfO2 nanoparticles are ball-milled for sufficient dispersion in a nanocomposite solution to enable solution process methods to be used in preparing the insulator layers. The nanocomposite insulators demonstrate high capacitances and improve the performance of TIPS-Pn TFTs. Nonetheless, particle aggregates are produced in
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Bozkurt, Çağatay, Hakan DİLMAÇ, and Abdullah Sofiyev. "Buckling problem of sandwich rectangular plates consisting of polymer-based nanocomposite layers under compressive load." UNEC Journal of Engineering and Applied Sciences 5, no. 1 (2025): 35–42. https://doi.org/10.61640/ujeas.2025.0504.

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In this work, buckling problem of polymer-based sandwich rectangular plates with uniform and heterogeneous (HT) reinforced layers subjected to uniaxial compressive load is investigated. First, mechanical properties of each layer of sandwich rectangular plates consisting of polymer nanocomposites are modeled according to the extended mixture rule. After the basic relations of sandwich plates consisting of polymer-based nanocomposite layers are constructed, governing equations are derived based on the assumptions of classical plate theory (CPT). The governing equations under simply supported bou
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De Girolamo Del Mauro, Anna, Angelica Immacolata Grimaldi, Vera La Ferrara, et al. "A Simple Optical Model for the Swelling Evaluation in Polymer Nanocomposites." Journal of Sensors 2009 (2009): 1–6. http://dx.doi.org/10.1155/2009/703206.

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In the present study, we report on a simple optical method based on thin film interferometry for the swelling evaluation in polymer nanocomposite layers used for gas sensing applications. We show that white light interferometry can be profitably applied to characterize scattering materials such as polymer/carbon black nanocomposites. A properly adjusted experimental setup was implemented to monitor the swelling behavior of the sensitive films in real device operating conditions. In particular, the behavior of poly(2-hydroxyethyl methacrylate) (PHEMA) and of carbon black/PHEMA nanocomposite lay
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Sapsaliou, D. V., A. S. Petrovskaya, D. L. Radyukevich, T. N. Tolstaya, G. B. Melnikova, and S. A. Chizhik. "Structure and Properties of Multilayer Nanocomposite Coatings of Polyvinyl Alcohol with Aluminum Oxide Nanoparticles." Science & Technique 22, no. 5 (2023): 359–66. http://dx.doi.org/10.21122/2227-1031-2023-22-5-359-366.

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The nanocomposite polymer – inorganic materials formation, the study of their morphology and mechanical properties at the nanolevel is acute in the development of new materials for various functional purposes, including medical ones. As a result of the research the technique for producing singleand multilayer films of polyvinyl alcohol and composite polymer coatings with aluminum oxide nanoparticles by the spin coating method has been developed. It is shown that the optimal mass content of aluminum oxide nanoparticles in suspension for the formation of uniform composite coatings is 0.625 %. Ba
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Kasım, Hasan, and Murat Yazıcı. "Electrical Properties of Graphene / Natural Rubber Nanocomposites Coated Nylon 6.6 Fabric under Cyclic Loading." Periodica Polytechnica Chemical Engineering 63, no. 1 (2018): 160–69. http://dx.doi.org/10.3311/ppch.12122.

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In the present study, an elastomeric nanocomposite was prepared by two roller mixing mill with the Natural Rubber (NR) and Nano Graphene Platelets (NGP). The Nylon 6.6 cord fabrics were laminated with the prepared NR/NGP nanocomposite layers. The NR/NGP composites and Nylon 6.6 cord fabric laminated nanocomposite plates were cured at 165 °C for 10 min under pressure. Nylon 6.6 fabric reinforced NR/NGP nanocomposites were electrically characterized under free and cyclic loading conditions. NGP addition to NR improved the electrical conductivity. Under cyclic loading produced nanocomposite and c
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Dissertations / Theses on the topic "Layers of nanocomposite"

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Bobrinetskiy, I. I., A. Y. Gerasimenko, L. Ichkitidze, et al. "Nanocomposite Materials for Cell Growth." Thesis, Sumy State University, 2013. http://essuir.sumdu.edu.ua/handle/123456789/35452.

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We propose a development of carbon nanotube (CNT)/albumin nanocomposite for 2D and 3D tissue organization by cell growth. The adhesion and proliferation for neuroblastoma and fibroblast cells have been investigated on films based on CNT/bovine serum albumin (BSA) nanocomposite. Single-walled car-bon nanotube (SWNT)/BSA composites can be used as a substrate for cell growth of different kind. The layers of nanocomposite properties growing method based on laser radiation action. Investigations of sta-bility, an adhesion and internal structure of layers were performed. Stabilizing properties of th
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Solano, Minuesa Eduardo. "Synthesis and Characterisation of Ferrite Nanoparticles for YBa2Cu3O7-δ - Nanocomposite Superconducting Layers: a Neutron and Synchrotron Study". Doctoral thesis, Universitat Autònoma de Barcelona, 2013. http://hdl.handle.net/10803/129400.

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En este trabajo se ha estudiado la síntesis de nanopaticulas tipo ferrita (MFe2O4) y el desarrollo de nuevas capas superconductoras de YBa2Cu3O7-δ con dichas nanopartículas magnéticas embebidas: Primeramente, una nueva metodología sintética llevada a cabo por una vía térmica y otra microondas fue optimizada. A continuación, las ferritas obtenidas de MFe2O4 (M=Mn, Fe, Co, Ni, Cu, Zn) fueron caracterizadas mediante técnicas comunes de laboratorio, con tal de demostrar que ambas vías sintéticas producen nanopartículas similares en alta concentración y de alta calidad. Por ello, se seleccionaron
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Gruia, Violeta-Tincuta [Verfasser], Andreas [Akademischer Betreuer] Bund, Uwe [Gutachter] Ritter, and Geta [Gutachter] Carac. "Preparation and electrochemical performance of PEDOT – AuNPs nanocomposite layers for the selective detection of neurotransmitters / Violeta-Tincuta Gruia ; Gutachter: Uwe Ritter, Geta Carac ; Betreuer: Andreas Bund." Ilmenau : TU Ilmenau, 2016. http://d-nb.info/1178174573/34.

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Lin, Zhiyuan. "Nanocomposite-based Lignocellulosic Fibers." Diss., Virginia Tech, 2009. http://hdl.handle.net/10919/40488.

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The formation of layered nanoparticle films on the surface of wood fibers is reported in this study. The layer-by-layer (LbL) assembly technique was comprehensively investigated as a non-covalent surface modification method for lignocellulosic fiber. Nanocomposite-based lignocellulosic fibers were successfully fabricated by sequential adsorption of oppositely charged poly(diallydimethylammonium) chloride (PDDA) and clay nanoparticles in a number of repeated deposition cycles. Nanocomposite fibers displayed layered structure as indicated by the electrokinetic potential studies and scanning elec
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Al-Shahrani, Abdullah A. "Layered silicate nanocomposites." Thesis, University of Manchester, 2008. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.492712.

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Over the past decade, nanomaterials have been the subject of enormous interest. Notable for their extremely small feature size, they have the potential for wide-ranging industrial applications. Using such materials combined with epoxy resin to synthesise nanocomposite is proposed to enhance the corrosion protection performance of the resin.
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Tokarski, Tomasz. "Nanomechanical properties of nanocomposite polymer layer." Thesis, KTH, Skolan för kemi, bioteknologi och hälsa (CBH), 2019. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-261161.

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Interphase phenomenon gains more and more interest throughout the research community. An interphase is formed between a filler particle and a polymeric matrix, and it may constitute almost the entire volume of a nanocomposite. If the interphase have favorable mechanical properties it will thus result in a nanocomposite with such properties. Therefore, understanding the principles of its formation and properties are crucial in order to design advanced nanocomposites. This thesis focuses on PDMS-carboxylic acid modified latex nanoparticles (PDMS-CML) surface composites investigated by means of A
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Pillai, Karthik. "Bio-inspired Cellulose Nanocomposites." Diss., Virginia Tech, 2011. http://hdl.handle.net/10919/28575.

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Natural composites like wood are scale-integrated structures that range from molecular to the macroscopic scale. Inspired by this design, layer-by-layer (LbL) deposition technique was used to create lignocellulosic composites from isolated wood polymers namely cellulose and lignin, with a lamellar architecture. In the first phase of the study, adsorption of alkali lignin onto cationic surfaces was investigated using a quartz crystal microbalance with dissipation monitoring (QCM-D). Complete coverage of the cationic surface with alkali lignin occured at low solution concentration; large affinit
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Merindol, Rémi. "Layer-by-layer assembly of strong bio-inspired nanocomposites." Thesis, Strasbourg, 2014. http://www.theses.fr/2014STRAE015/document.

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Les performances exceptionnelles des composites naturels comme la nacre ou le bois émergent de l’arrangement précis d’éléments souples et rigides à l’échelle nanométrique. L’assemblage couche-par-couche permet la fabrication de films avec un contrôle nanométrique de l’organisation et de la composition. Ce travail décrit l’assemblage et les propriétés de nouveaux nano-composites contenant des nano-renforts 1-D (fibrilles de cellulose) et 2-D (plaquettes d’argile). Nous avons combiné les argiles avec une matrice extrêmement souple de poly(diméthylsiloxane) dans une architecture lamellaire imitan
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Işık, Kıvanç Tanoğlu Metin. "Layered silicate/polypropylene nanocomposites/." [s.l.]: [s.n.], 2006. http://library.iyte.edu.tr/tezler/master/makinamuh/T000532.pdf.

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Kaya, Elçin Dilek Tanoğlu Metin. "Development of layered silicate/epoxy nanocomposite/." [s.l.]: [s.n.], 2006. http://library.iyte.edu.tr/tezler/master/malzemebilimivemuh/T000538.pdf.

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Thesis (Master)--İzmir Institute Of Technology, İzmir, 2006.<br>Keywords: epoxy resin, nanocomposites, clay, scanning electron microscope, mechanical properties. Includes bibliographical references (leaves. 93-98).
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Books on the topic "Layers of nanocomposite"

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Ke, Y. C. Polymer-layered silicate and silica nanocomposites. Elsevier, 2005.

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Layered Double Hydroxide Polymer Nanocomposites. Elsevier, 2020. http://dx.doi.org/10.1016/c2016-0-00811-2.

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Thomas, Sabu, and Saju Daniel. Layered Double Hydroxide Polymer Nanocomposites. Elsevier Science & Technology, 2020.

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Thomas, Sabu, and Saju Daniel. Layered Double Hydroxide Polymer Nanocomposites. Elsevier Science & Technology, 2020.

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Polymer-Layered Silicate and Silica Nanocomposites. Elsevier, 2005. http://dx.doi.org/10.1016/b978-0-444-51570-4.x5000-9.

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Ke, Y. C., and P. Stroeve. Polymer-Layered Silicate and Silica Nanocomposites. Elsevier Science & Technology Books, 2005.

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Okamoto, M. Polymer/layered Silicate Nanocomposites (Rapra Review Reports). Rapra Technology, 2003.

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Toxic Gas Sensors and Biosensors. Materials Research Forum LLC, 2021. http://dx.doi.org/10.21741/9781644901175.

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The book focuses on novel sensor materials and their environmental and healthcare applications, such as NO2 detection, toxic gas and biosensing, hydrazine determination, glucose sensing and the detection of toxins and pollutants on surfaces. Materials covered include catalytic nanomaterials, metal oxides, perovskites, zeolites, spinels, graphene-based gas sensors, CNT/Ni nanocomposites, glucose biosensors, single and multi-layered stacked MXenes, black phosphorus, transition metal dichalcogenides and P3OT thin films.
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Lemmon, John P. The synthesis and characterization of components for solid-state lithium cells: Amorphous polyether-salt complexes, planar-sheet graphite fluorides, and layered organic/inorganic nanocomposites. 1994.

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Coveney, Peter V., and Shunzhou Wan. Molecular Dynamics: Probability and Uncertainty. Oxford University PressOxford, 2025. https://doi.org/10.1093/9780198893479.001.0001.

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Abstract This book explores the intersection of molecular dynamics (MD) simulation with advanced probabilistic methodologies to address the inherent uncertainties in the approach. Beginning with a clear and comprehensible introduction to classical mechanics, the book transitions into the probabilistic formulation of MD, highlighting the importance of ergodic theory, kinetic theory, and unstable periodic orbits, concepts which are largely unknown to current practitioners within the domain. It discussed ensemble-based simulations, free energy calculations and the study of polymer nanocomposites
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Book chapters on the topic "Layers of nanocomposite"

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Chen, D., and L. Zhang. "Harmonic Vibration of Inclined Porous Nanocomposite Beams." In Lecture Notes in Civil Engineering. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-3330-3_52.

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AbstractThis work investigated the linear harmonic vibration responses of inclined beams featured by closed-cell porous geometries where the bulk matrix materials were reinforced by graphene platelets as nanofillers. Graded and uniform porosity distributions combined with different nanofiller dispersion patterns were applied in the establishment of the constitutive relations, in order to identify their effects on beam behavior under various harmonic loading conditions. The inclined beam model comprised of multiple layers and its displacement field was constructed using Timoshenko theory. Force
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Goncharov, V. L., Y. V. Lakhotkin, V. P. Kuzmin, Vladimir K. Alimov, and J. Roth. "Chemical Vapor Crystallization of Hard Nanocomposite Tungsten Carbide Layers for Extreme Applications." In Advanced Materials Research. Trans Tech Publications Ltd., 2008. http://dx.doi.org/10.4028/3-908454-01-8.62.

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Datcu, A., A. Pérez del Pino, C. Logofatu, A. Duta, and E. György. "Wetting and Photoactive Properties of Laser Irradiated Zinc Oxide – Graphene Oxide Nanocomposite Layers." In Nanoscience Advances in CBRN Agents Detection, Information and Energy Security. Springer Netherlands, 2014. http://dx.doi.org/10.1007/978-94-017-9697-2_13.

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Jeong, Soo Kyeong, and Nam Ju Jo. "The Effect of Silicate Layers on Electrochemical Properties in Nanocomposite Solid Polymer Electrolytes." In Key Engineering Materials. Trans Tech Publications Ltd., 2007. http://dx.doi.org/10.4028/0-87849-410-3.526.

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Di Girolamo, G., E. Piscopiello, M. Massaro, et al. "Microstructural analysis of ultra-thin nanocomposite layers fabricated by Cu+ ion implantation in inert polymers." In EMC 2008 14th European Microscopy Congress 1–5 September 2008, Aachen, Germany. Springer Berlin Heidelberg, 2008. http://dx.doi.org/10.1007/978-3-540-85226-1_389.

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Stetsko, Andrew E., and Yaryna T. Stetsko. "The Influence of Carbon, Carbon, and Boron on the Formation of Diffusion Nanocomposite Hardened Layers on the Surfaces of Steel Parts." In Springer Proceedings in Physics. Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-51905-6_47.

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Becker, Ole, George P. Simon, and Karel Dusek. "Epoxy Layered Silicate Nanocomposites." In Inorganic Polymeric Nanocomposites and Membranes. Springer Berlin Heidelberg, 2005. http://dx.doi.org/10.1007/b107204.

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Akbari, Abozar, Mahsa A. Tehrani, and Hossien Cherghibidsorkhi. "Polysterene Layered Silicate Nanocomposites." In Handbook of Polymernanocomposites. Processing, Performance and Application. Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-38649-7_16.

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Ansari, Mohd Zahid, Soo-Hyun Kim, Arpan Dhara, and Dip K. Nandi. "Atomic Layer Deposited Supercapacitor Electrodes." In Handbook of Nanocomposite Supercapacitor Materials IV. Springer International Publishing, 2023. http://dx.doi.org/10.1007/978-3-031-23701-0_7.

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Yatsyshen, Valeriy V., Irina I. Potapova, and Kseniya Yu Verevkina. "Ellipsometry of Nanocomposite Layered Materials." In "Smart Technologies" for Society, State and Economy. Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-59126-7_29.

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Conference papers on the topic "Layers of nanocomposite"

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Shaikhah, Dilshad, Bruce Cowe, Wassim Taleb, Anne Neville, Maalek Mohamed-Said, and Richard Barker. "In-situ Synthesis of Corrosion Product-polymer Composites on Carbon Steel for Enhanced Erosion-corrosion Protection in CO2 Corrosion Environments." In CONFERENCE 2022. AMPP, 2022. https://doi.org/10.5006/c2022-17717.

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Abstract Iron carbonate (FeCO3) is a common corrosion product found on steel surfaces in carbon dioxide (CO2)-containing aqueous environments. The formation of this corrosion product on the internal walls of carbon steel pipelines can suppress material dissolution by over an order of magnitude, providing an effective form of corrosion inhibition. One significant limitation associated with relying upon solely FeCO3 to suppress material dissolution is its propensity to be locally removed by chemical or mechanical mechanisms. Here we report a novel strategy, implemented to generate a mineral-poly
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Hu, Jianxun, and Dongyan Wang. "Characterization of Polyaniline Nanocomposite Using AC Electrochemical Impedance Spectroscopy." In ASME 2006 Multifunctional Nanocomposites International Conference. ASMEDC, 2006. http://dx.doi.org/10.1115/mn2006-17022.

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Silicate minerals have been found to improve physical and mechanical properties of polymers significantly through clay/polymer nanocomposites. This class of materials uses smectite-type clays, such as hectorite, montmorillonite, magadiite, and synthetic mica, as fillers to enhance the properties of polymers. One of the most important properties of smectite-type clays is their layered structure, in which each layer is constructed from tetrahedrally coordinated Si atoms fused into an edge-shared octahedral plane of either Al(OH)3 or Mg(OH)2. The layers exhibit excellent mechanical properties par
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Sancaktar, E., and J. Kuznicki. "Stress-Dependent Water Uptake Behavior of Clay Reinforced Nanocomposite Epoxy." In ASME 2005 International Mechanical Engineering Congress and Exposition. ASMEDC, 2005. http://dx.doi.org/10.1115/imece2005-80549.

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Layered silicate nanolayers can be used as alternative inorganic components for the construction of nanostructured hybrid composites. The clay silicate nanolayers possess stable Si-O bonds and high particle aspect ratios comparable to conventional fibers. Their interlayer surface is easily modified by ion-exchange reaction, and the gallery can be intercalated by organic polymer precursors for the formation of organic-inorganic nanocomposites. Exfoliated clay composites contain single, 1 nm thick layers of clay dispersed in the polymer matrix. Owing to the platy morphology of the silicate layer
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Behdinan, Kamran, and Rasool Moradi-Dastjerdi. "Electro-Mechanical Behavior of Smart Sandwich Plates With Porous Core and Graphene-Reinforced Nanocomposite Layers." In ASME 2019 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2019. http://dx.doi.org/10.1115/imece2019-10796.

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Abstract The use of piezoelectric sensor and/or actuator layers in engineering structures provides smart sandwich structures with adaptive responses. Moreover, due to the brittle behavior of piezoceramic materials, inserting nanocomposite and porous layers between piezoelectric layers offers more flexible and lighter structures along with maintaining the advantages of nanocomposite materials. Therefore, in this paper, we have proposed smart sandwich plates consisting of a porous polymeric core and two graphene-reinforced composite (GRC) layers integrated with two piezoceramic layers. The distr
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Qiao, Rui, and L. Cate Brinson. "Gradient Interphases in Polymer Nanocomposites." In ASME 2009 International Mechanical Engineering Congress and Exposition. ASMEDC, 2009. http://dx.doi.org/10.1115/imece2009-12706.

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As revealed by experimental data on ultrathin polymer films [1, 2], polymer mobility changes in a gradient fashion away from the polymer-surface interface. However, little is yet known on gradients in mechanical properties in polymer nanocomposites. In this work, we discuss a novel nanoindentation experimental approach to measure these properties in model nanocomposite systems, the associated modeling to extract realistic data (Figure1), and simulations of representative volume elements (RVE) of nanocomposites including interphase layers (Figure2).
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Tiefensee, Frank, and Carsten Becker-Willinger. "Nanocomposite materials for high frequency ultrasound matching layers." In 2009 IEEE International Ultrasonics Symposium. IEEE, 2009. http://dx.doi.org/10.1109/ultsym.2009.5441453.

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Kleps, Irina, Mihaela Miu, Mihai Danila, et al. "Silver/Porous Silicon (PS) Nanocomposite Layers for Biomedical Applications." In 2006 International Semiconductor Conference. IEEE, 2006. http://dx.doi.org/10.1109/smicnd.2006.283935.

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Chathamkandath Raghuvaran, Greeshma. "Nacre Shell Inspired Self Assembly of Graphene Oxide-Lipid Nanocomposites." In SurfCoat Korea and Graphene Korea 2021 International Joint Virtual Conferences. Setcor Conferences and Events, 2021. http://dx.doi.org/10.26799/cp-surfcoat-graphene-korea-2021/6.

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Nanoscale graphene oxide-lipid composites have shown wide applications in the field of biosensing and nanosafety. Macroscopic free-standing membranes of this combination potentially offer excellent mechanical properties which can be attributed to the inherent strength of graphene oxide(GO). Previous experimental studies have mostly dealt with monolayer or bilayer interactions of lipids with graphene and graphene oxide surfaces. In our study, we report for the first time, a simple and scalable fabrication method where Small Unilamellar Vesicles (SUVs) of 1,2-dioleoyl-sn-glycero-3-phosphocholine
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Zhao, Xuefeng, Jihua Gou, and Gangbing Song. "Interlayer Strain Monitoring of Hybrid Composites With Carbon Nanofiber Paper Using Fiber Bragg Grating Sensors." In ASME 2006 Multifunctional Nanocomposites International Conference. ASMEDC, 2006. http://dx.doi.org/10.1115/mn2006-17077.

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Graphite/epoxy prepregs are typically used to manufacture aerospace composite structures through autoclave processing. However, the vacuum-assisted resin transfer molding (VARTM) process has recently received increasing attention as a low-cost method to fabricate quality aerospace structures. In this study, carbon nanofiber paper was integrated into composite laminates using the VARTM process. The carbon nanofiber paper has a porous structure with highly entangled carbon nanofibers. The carbon nanofiber paper can be employed as an inter-layer and surface layer to enhance the damping properties
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Claussen, Sabine, Albert Grueninger, Michael Hustedt, Stephan Barcikowski, Volker Wesling, and Heinz Haferkamp. "Laser cladding of metal-ceramic nanocomposite layers for cutting applications." In ICALEO® 2011: 30th International Congress on Laser Materials Processing, Laser Microprocessing and Nanomanufacturing. Laser Institute of America, 2011. http://dx.doi.org/10.2351/1.5062309.

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Reports on the topic "Layers of nanocomposite"

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Anyaogu, Kelechi C., and Nicholas A. Kotov. Multifunctional Nanocomposite Structures via Layer-by-Layer Assembly Process. Defense Technical Information Center, 2011. http://dx.doi.org/10.21236/ada539381.

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Kurian, Mary K., Arnab Dasgupta, Mary E. Galvin, and Frederick L. Beyer. Effect of Textured Surfactant Brushes on Polymer-Layered Silicate Nanocomposite Morphology. Defense Technical Information Center, 2004. http://dx.doi.org/10.21236/ada420985.

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Ostermayer, David, Frederick L. Beyer, Peter G. Dehmer, and Melissa A. Klusewitz. Measurement of V50 Behavior of a Nylon 6-Based Polymer-Layered Silicate Nanocomposite. Defense Technical Information Center, 2001. http://dx.doi.org/10.21236/ada399371.

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