Polymer-based nanocomposites as defence material
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[1] K. Agarwal,et al. High Thermally Stable Polyurethane Nanocomposite Foam Containing Polydimethyl Siloxane and Carbonaceous Nanofillers , 2022, Silicon.
[2] Ayesha Kausar. Current state-of-the-art of carbonaceous nanofiller coated carbon fiber in polymeric nanocomposites , 2022, Journal of Thermoplastic Composite Materials.
[3] Hassan Younis,et al. Carbon Nanomaterial-Based Lubricants: Review of Recent Developments , 2022, Lubricants.
[4] G. Bhat,et al. Recent progress in developing ballistic and anti-impact materials: Nanotechnology and main approaches , 2022, Defence Technology.
[5] Suvarn S. Kulkarni,et al. Small Carbohydrate Derivatives as Potent Antibiofilm Agents. , 2022, Journal of medicinal chemistry.
[6] S. Sapuan,et al. Recent applications of carbon-based composites in defence industry: A review , 2022, Defence Technology.
[7] S. Monteiro,et al. Ballistic performance of boron carbide nanoparticles reinforced ultra-high molecular weight polyethylene (UHMWPE) , 2022, Journal of Materials Research and Technology.
[8] R. A. Ilyas,et al. Fabrication, Functionalization, and Application of Carbon Nanotube-Reinforced Polymer Composite: An Overview , 2021, Polymers.
[9] M. Sen. Nanotechnology and the Environment , 2020 .
[10] K. Mukhopadhyay,et al. Microwave-assisted preparation of magnetic ternary core-shell nanofiller (CoFe2O4/rGO/SiO2) and their epoxy nanocomposite for microwave absorption properties , 2020 .
[11] Xuejun Jiang,et al. Tumor Microenvironment-Responsive Nanomaterials as Targeted Delivery Carriers for Photodynamic Anticancer Therapy , 2020, Frontiers in Chemistry.
[12] Xu Li,et al. Polymer Nanocomposite-based Coatings for Corrosion Protection. , 2020, Chemistry, an Asian journal.
[13] J. Kumar,et al. Experimental investigation for machinability aspects of graphene oxide/carbon fiber reinforced polymer nanocomposites and predictive modeling using hybrid approach , 2020 .
[14] E. Coy,et al. Effect of MWCNTs on Wear Behavior of Epoxy Resin for Aircraft Applications , 2020, Materials.
[15] F. Ebrahimi,et al. Buckling analysis of embedded graphene oxide powder-reinforced nanocomposite shells , 2020 .
[16] Xungai Wang,et al. Polymer composite for antistatic application in aerospace , 2020 .
[17] M. Mohammadi,et al. Bending and stress analysis of polymeric composite plates reinforced with functionally graded graphene platelets based on sinusoidal shear-deformation plate theory , 2020 .
[18] N. Prasad,et al. Study of Electromagnetic Properties of Fabricated NiFe 2 O 4 /Polyurethane Nanocomposites , 2020, Journal of Applied Polymer Science.
[19] R. Tenne,et al. Impact resistant hybrid composites reinforced with inorganic nanoparticles and nanotubes of WS2 , 2019, Composites Part B: Engineering.
[20] S. Monteiro,et al. Effect of Graphene Oxide Coating on Natural Fiber Composite for Multilayered Ballistic Armor , 2019, Polymers.
[21] Nand Kumar,et al. Synthesis of AgNPs embedded double network nanocomposite hydrogels having high swelling and anti-bacterial characteristics , 2019, Advanced Materials Letters.
[22] M. Shaffer,et al. Interfacially-grafted single-walled carbon nanotube / poly (vinyl alcohol) composite fibers , 2019, Carbon.
[23] K. Pielichowska,et al. Analysis of nanomaterials and nanocomposites by thermoanalytical methods , 2019, Thermochimica Acta.
[24] Polymer Nanocomposites for Advanced Engineering and Military Applications , 2019, Advances in Chemical and Materials Engineering.
[25] R. Tripathi,et al. An Overview on Glyco-Macrocycles: Potential New Lead and their Future in Medicinal Chemistry. , 2019, Current medicinal chemistry.
[26] N. Prasad,et al. Preparation and Characterization of Ni0.5Zn0.5Fe2O4 + Polyurethane Nanocomposites Using Melt Mixing Method , 2019, Silicon.
[27] Fujun Xu,et al. Synergistic effect of CNT films impregnated with CNT modified epoxy solution towards boosted interfacial bonding and functional properties of the composites , 2018, Composites Part A: Applied Science and Manufacturing.
[28] Jiake Wu,et al. Self-Healing Electronic Materials for a Smart and Sustainable Future. , 2018, ACS applied materials & interfaces.
[29] Roland Weber,et al. An overview of chemical additives present in plastics: Migration, release, fate and environmental impact during their use, disposal and recycling. , 2018, Journal of hazardous materials.
[30] L. Machado,et al. Scale Effects on the Ballistic Penetration of Graphene Sheets , 2017, Scientific Reports.
[31] N. Prasad,et al. Development of Low Density, Heat Resistant and Broadband Microwave Absorbing Materials (MAMs) for Stealth Applications , 2018, Silicon.
[32] Tao Zhang,et al. Improving the fracture toughness properties of epoxy using graphene nanoplatelets at low filler content , 2017 .
[33] N. Prasad,et al. Study and characterization of E.M. absorbing properties of EPDM ferrite composite containing manganese zinc ferrite , 2017 .
[34] B. Gu,et al. Ultrastrong and excellent dynamic mechanical properties of carbon nanotube composites , 2017 .
[35] N. Merah,et al. Impact resistance of hybrid glass fiber reinforced epoxy/nanoclay composite , 2017 .
[36] G. Tsui,et al. Tensile properties of graphene nano-platelets reinforced polypropylene composites , 2016 .
[37] Binhua Wang,et al. Enhanced epoxy adhesion between steel plates by surface treatment and CNT/short-fibre reinforcement , 2016 .
[38] S. Shi,et al. Scalable Fabrication of Natural-Fiber Reinforced Composites with Electromagnetic Interference Shielding Properties by Incorporating Powdered Activated Carbon , 2015, Materials.
[39] J. Michopoulos,et al. Dynamics response of polyethylene polymer nanocomposites to shock wave loading , 2015 .
[40] Hao‐Bin Zhang,et al. Enhanced electromagnetic interference shielding efficiency of polystyrene/graphene composites with magnetic Fe3O4 nanoparticles , 2015 .
[41] Brian C. Riggs,et al. Polymer Nanocomposites for Energy Storage Applications , 2015 .
[42] M. M. Noor,et al. Influence of Carbon Nanotube Inclusion on the Fracture Toughness and Ballistic Resistance of Twaron/Epoxy Composite Panels , 2015 .
[43] Abdolhossein Fereidoon,et al. The effect of MWCNTs on the mechanical properties of woven Kevlar/epoxy composites , 2014 .
[44] Yanju Liu,et al. EMI shielding performance of nanocomposites with MWCNTs, nanosized Fe3O4 and Fe , 2014 .
[45] A. Kumar,et al. Effects of amino-functionalized MWCNTs on ballistic impact performance of E-glass/epoxy composites using a spherical projectile , 2013 .
[46] W. Choi,et al. Nanostructured graphene/Fe₃O₄ incorporated polyaniline as a high performance shield against electromagnetic pollution. , 2013, Nanoscale.
[47] M. Prato,et al. Nanomaterials for (Nano)medicine. , 2013, ACS medicinal chemistry letters.
[48] Mohammed H Al-Saleh,et al. X-band EMI shielding mechanisms and shielding effectiveness of high structure carbon black/polypropylene composites , 2013 .
[49] Paul E Kladitis,et al. How Small Is Too Small? True Microrobots and Nanorobots for Military Applications in 2035 , 2012 .
[50] H. Pang,et al. Efficient electromagnetic interference shielding of lightweight graphene/polystyrene composite , 2012 .
[51] Tongxi Yu,et al. High-performance Ballistic Protection Using Polymer Nanocomposites , 2012 .
[52] E. Sparks,et al. Advances in military textiles and personal equipment , 2012 .
[53] B. Theng. Polymer–Clay Nanocomposites , 2012 .
[54] W. Hsu,et al. Investigation of the electric conductivity and the electromagnetic interference shielding efficiency of SWCNTs/GNS/PAni nanocomposites , 2011 .
[55] D. K. Setua,et al. Studies on Microstructural and Thermophysical properties of polymer nanocomposite based on polyphenylene oxide and Ferrimagnetic iron oxide , 2011 .
[56] C. A. Wilkie,et al. The Utility of Nanocomposites in Fire Retardancy , 2010, Materials.
[57] A. K. Bakhshi,et al. Dielectric and magnetic properties of conducting ferromagnetic composite of polyaniline with γ-Fe2O3 nanoparticles , 2008 .
[58] Liangchi Zhang,et al. Fabrication and application of polymer composites comprising carbon nanotubes. , 2007, Recent patents on nanotechnology.
[59] D. Pradhan,et al. Application of carbon nanomaterial as a microwave absorber. , 2005, Journal of Nanoscience and Nanotechnology.
[60] K. Watson,et al. Carbon nanotube-conductive additive-space durable polymer nanocomposite films for electrostatic charge dissipation , 2004 .
[61] Eric D. Wetzel,et al. The Effect of Rheological Parameters on the Ballistic Properties of Shear Thickening Fluid (STF)‐Kevlar Composites , 2004 .
[62] Seung Yol Jeong,et al. Enhanced Sensitivity of a Gas Sensor Incorporating Single‐Walled Carbon Nanotube–Polypyrrole Nanocomposites , 2004 .
[63] R. Spontak,et al. Low‐Temperature, Surface‐Mediated Foaming of Polymer Films , 2004 .
[64] Kathryn M. Butler,et al. Thermal and flammability properties of polypropylene/carbon nanotube nanocomposites , 2004 .
[65] Krzysztof Pielichowski,et al. Polymer Nanocomposites for Aerospace Applications: Fabrication , 2004 .
[66] Dean M. DeLongchamp,et al. High‐Contrast Electrochromism and Controllable Dissolution of Assembled Prussian Blue/Polymer Nanocomposites , 2004 .
[67] Jürgen Altmann,et al. Military Uses of Nanotechnology: Perspectives and Concerns , 2004 .
[68] R. Tenne,et al. Polymer Nanocomposites with Fullerene‐like Solid Lubricant , 2004 .
[69] T. Hanemann,et al. Tuning the Refractive Index of Polymers for Polymer Waveguides Using Nanoscaled Ceramics or Organic Dyes , 2004 .
[70] R. Vaia,et al. Remotely actuated polymer nanocomposites—stress-recovery of carbon-nanotube-filled thermoplastic elastomers , 2004, Nature materials.
[71] Peter J. F. Harris,et al. Carbon nanotube composites , 2004 .
[72] R. Kaner,et al. Flash welding of conducting polymer nanofibres , 2004, Nature Materials.
[73] E. Terentjev,et al. Nematic elastomers with aligned carbon nanotubes: New electromechanical actuators , 2003, cond-mat/0309216.
[74] N. Wagner,et al. Dynamic properties of shear thickening colloidal suspensions , 2003 .
[75] J. Fischer,et al. Production and characterization of polymer nanocomposites with highly aligned single-walled carbon nanotubes. , 2003, Journal of nanoscience and nanotechnology.
[76] A. Heilmann. Polymer Films with Embedded Metal Nanoparticles , 2002 .
[77] W. D. de Heer,et al. Carbon Nanotubes--the Route Toward Applications , 2002, Science.
[78] Kavita Agarwal,et al. Short Fibre and Particulate-reinforced Rubber Composites , 2002 .
[79] R. Pethrick. Polymer–Clay Nanocomposites, Edited by TJ Pinnavaia and GW Beall John Wiley & Sons Ltd, Chichester, UK, 2000 0‐471‐6300‐9 pp xi + 345, price £125.00 , 2002 .
[80] H. Hamann,et al. Polymer mediated self-assembly of magnetic nanoparticles. , 2002, Journal of the American Chemical Society.
[81] Kong,et al. Nanotube molecular wires as chemical sensors , 2000, Science.
[82] Takashi Kashiwagi,et al. NANOCOMPOSITES : A REVOLUTIONARY NEW FLAME RETARDANT APPROACH , 1997 .
[83] L. B. Ebert. Science of fullerenes and carbon nanotubes , 1996 .
[84] A. Diaz,et al. A novel method for the preparation of magnetic nanoparticles in a polypyrrole powder , 1994 .
[85] L. Hihara,et al. Corrosion of metal matrix composites , 1994 .
[86] S. Iijima. Helical microtubules of graphitic carbon , 1991, Nature.
[87] D. Landman. ADVANCES IN THE CHEMISTRY AND APPLICATIONS OF BISMALEIMIDES , 1986 .
[88] Th International Conference on Composite Materials , 2022 .