Academic literature on the topic 'Nano- Structures of the Energetic Materials'

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Journal articles on the topic "Nano- Structures of the Energetic Materials"

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Guo, Xiaogang, Taotao Liang, Md Labu Islam, Xinxin Chen, and Zheng Wang. "Highly Reactive Thermite Energetic Materials: Preparation, Characterization, and Applications: A Review." Molecules 28, no. 6 (2023): 2520. http://dx.doi.org/10.3390/molecules28062520.

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As a promising kind of functional material, highly reactive thermite energetic materials (tEMs) with outstanding reactive activation can release heat quickly at a high reaction rate after low-energy stimulation, which is widely used in sensors, triggers, mining, propellants, demolition, ordnance or weapons, and space technology. Thus, this review aims to provide a holistic view of the recent progress in the development of multifunctional highly reactive tEMs with controllable micro/nano-structures for various engineering applications via different fabricated techniques, including the mechanica
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Zhang, Chi, Dajun Wu, Liming Shi, et al. "Manganese molybdate nanoflakes on silicon microchannel plates as novel nano energetic material." Royal Society Open Science 4, no. 12 (2017): 171229. http://dx.doi.org/10.1098/rsos.171229.

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Nano energetic materials have attracted great attention recently owing to their potential applications for both civilian and military purposes. By introducing silicon microchannel plates (Si-MCPs) three-dimensional (3D)-ordered structures, monocrystalline MnMoO 4 with a size of tens of micrometres and polycrystalline MnMoO 4 nanoflakes are produced on the surface and sidewall of nickel-coated Si-MCP, respectively. The MnMoO 4 crystals ripen controllably forming polycrystalline nanoflakes with lattice fringes of 0.542 nm corresponding to the ( 1 ¯ 11 ) plane on the sidewall. And these MnMoO 4 n
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Chen, Liang, Lihui Wu, Yu Liu, and Wei Chen. "In situ observation of void evolution in 1,3,5-triamino-2,4,6-trinitrobenzene under compression by synchrotron radiation X-ray nano-computed tomography." Journal of Synchrotron Radiation 27, no. 1 (2020): 127–33. http://dx.doi.org/10.1107/s1600577519014309.

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The formation and development of voids in 1,3,5-triamino-2,4,6-trinitrobenzene crystals under compression were characterized in situ by X-ray nano-computed tomography. Benefiting from high spatial resolution (30 nm) and excellent imaging contrast, the X-ray nano-computed tomography images revealed the presence of a small fraction of inhomogeneous structures in the original crystal (volume ratio ∼1.2%). Such an inhomogeneity acts as a nucleation of voids and produces stress concentration during compression, which leads to continuous growth of the voids under loading. Meanwhile, the results furt
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Yao, Jie, Yanjie Huang, Kanghua Chang, et al. "Preparation and Energy Release Properties of nB@F2603@CL-20 Microspheres by Electrospray." Metals 12, no. 10 (2022): 1727. http://dx.doi.org/10.3390/met12101727.

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Nano-boron, as a potential high-energy additive due to its high calorific value, is widely studied in propellants, explosives, and thermites. However, the unexpected agglomeration of surface oxidation hinders its further application, especially in the casting of energetic materials. The fluorine-modified nano-boron nB@F2603 and nB@F2603@CL-20 preagglomerated microspheres were prepared by electrospray to improve the ignition and combustion reactions and the rheological properties of boron-containing casting systems. Sphericity microspheres could be obtained by controlling the voltage and propul
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Kamanina, Natalia. "CARBON STRUCTURES AS EFFECTIVE MODIFIERS OF THE MATERIALS’ BASIC PROPERTIES." CBU International Conference Proceedings 5 (September 24, 2017): 1135–42. http://dx.doi.org/10.12955/cbup.v5.1084.

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Because of the unique energetic, refractive and photoconductive characteristics of effective nano-objects, especially carbon nanotubes, the modification of optical properties of the organic and inorganic materials can be considered as the preferable one via the use of the nanostructuration process. Emphasis has been given to the incorporation of nanoobjects directly in the materials’ body and on their surface. Under the conditions of a surface treatment of the inorganic structures, an IR-laser at the wavelength of 10.6 micrometers was used to orientate carbon nanotubes deposited in the elect
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Lukin, Alexander N. "UNIVERSAL LAW OF THE SPATIAL-PERIODIC NANO- AND MICRO-STRUCTURES EXCITATION DURING THE TRANSIENT COMBUSTION OF ENERGETIC MATERIALS." International Journal of Energetic Materials and Chemical Propulsion 6, no. 1 (2007): 119–42. http://dx.doi.org/10.1615/intjenergeticmaterialschemprop.v6.i1.90.

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Kappagantula, Keerti, Michelle L. Pantoya, and Emily M. Hunt. "Impact ignition of aluminum-teflon based energetic materials impregnated with nano-structured carbon additives." Journal of Applied Physics 112, no. 2 (2012): 024902. http://dx.doi.org/10.1063/1.4737118.

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Goloshchapov, Dmitry, Nikita Buylov, Anna Emelyanova, et al. "Raman and XANES Spectroscopic Study of the Influence of Coordination Atomic and Molecular Environments in Biomimetic Composite Materials Integrated with Dental Tissue." Nanomaterials 11, no. 11 (2021): 3099. http://dx.doi.org/10.3390/nano11113099.

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In this work, for the first time, the influence of the coordination environment as well as Ca and P atomic states on biomimetic composites integrated with dental tissue was investigated. Bioinspired dental composites were synthesised based on nanocrystalline calcium carbonate-substituted hydroxyapatite Ca4ICa6IIPO46−xCO3x+yOH2−y (nano-cHAp) obtained from a biogenic source and a set of polar amino acids that modelled the organic matrix. Biomimetic composites, as well as natural dental tissue samples, were investigated using Raman spectromicroscopy and synchrotron X-ray absorption near edge stru
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Wang, Hao, Gang Li, Jun-Hui Yuan, Jiafu Wang, Pan Zhang, and Yahui Shan. "Two−Dimensional Planar Penta−NiPN with Ultrahigh Carrier Mobility and Its Potential Application in NO and NO2 Gas Sensing." Micromachines 14, no. 7 (2023): 1407. http://dx.doi.org/10.3390/mi14071407.

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Two−dimensional (2D) materials with novel structures and electronic properties are promising candidates for the next generation of micro− and nano−electronic devices. Herein, inspired by the recent experimental synthesis of penta−NiN2 (ACS Nano, 2021, 15, 13539–13546), we propose for the first time a novel ternary penta−NiPN monolayer with high stability by partial element substitution. Our predicted penta−NiPN monolayer is a quasi−direct bandgap (1.237 eV) semiconductor with ultrahigh carrier mobilities (103–105 cm2V−1s−1). Furthermore, we systematically studied the adsorption properties of c
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Erdeniz, Dinc, and Teiichi Ando. "Fabrication of micro/nano structured aluminum–nickel energetic composites by means of ultrasonic powder consolidation." International Journal of Materials Research 104, no. 4 (2013): 386–91. http://dx.doi.org/10.3139/146.110874.

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Dissertations / Theses on the topic "Nano- Structures of the Energetic Materials"

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Sundaram, Dilip Srinivas. "Multi-scale modeling of thermochemical behavior of nano-energetic materials." Diss., Georgia Institute of Technology, 2013. http://hdl.handle.net/1853/50225.

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Conventional energetic materials which are based on monomolecular compounds such as trinitrotoluene (TNT) have relatively low volumetric energy density. The energy density can be significantly enhanced by the addition of metal particulates. Among all metals, aluminum is popular because of its high oxidation enthalpy, low cost, and relative safety. Micron-sized aluminum particles, which have relatively high ignition temperatures and burning times, have been most commonly employed. Ignition of micron-sized aluminum particles is typically achieved only upon melting of the oxide shell at 2350 K, t
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Safdar, Amna. "Nano-structures and materials for wafer-scale solar cells." Thesis, University of York, 2018. http://etheses.whiterose.ac.uk/20561/.

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This thesis addresses two of the main materials for solar cells, namely silicon and the family of halide perovskites. For silicon, light trapping structures are investigated for solar cell applications while perovskite materials are investigated as a gain material for optoelectronic applications. Light trapping allows the capture of photons that might otherwise be lost, especially at the red end of the spectrum where silicon is less absorptive. The key is to enhance the efficiency of silicon cells by thinning down the wafer and reducing the bulk recombination losses and to achieve a higher Voc
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Cox, Barry James. "Mathematical modelling of nano-scaled structures, devices and materials." Access electronically, 2007. http://www.library.uow.edu.au/adt-NWU/public/adt-NWU20080129.102240/index.html.

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Chen, Zhihui. "Light manipulation in micro and nano photonic materials and structures." Doctoral thesis, KTH, Teoretisk kemi och biologi, 2012. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-94081.

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Light manipulation is an important method to enhance the light-matter interactions in micro and nano photonic materials and structures by generating usefulelectric field components and increasing time and pathways of light propagationthrough the micro and nano materials and structures. For example, quantum wellinfrared photodetector (QWIP) cannot absorb normal incident radiation so thatthe generation of an electric field component which is parallel to the original incident direction is a necessity for the function of QWIP. Furthermore, the increaseof time and pathways of light propagation in t
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Shenoy, Sukesh. "Design, simulation and analysis of a molecular nano-sensor operating at terahertz frequencies for energetic materials." Thesis, Texas A&M University, 2003. http://hdl.handle.net/1969.1/5786.

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Nano-sensors, as an application of nanotechnology, are extremely important for environmental, medical and security applications. Terahertz science is an exciting new field that is set to impact the field of sensing to a large extent. I proposed to combine the fields of nanotechnology and terahertz science and develop a molecular nano-sensor that operates at terahertz frequencies. I focused our sensing on energetic materials, particularly nitromethane, and conducted an extensive analysis on its frequency spectrum. The study also focused on designing the nano-sensor and determining its terahertz
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Lee, Eun Seong. "Light-exciton coupling in semiconductor micro- and nano-structures." Diss., The University of Arizona, 2001. http://hdl.handle.net/10150/279986.

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The optical properties of planar semiconductor microstructures and three-dimensional nanostructures containing narrow linewidth In₀.₀₄Ga₀.₉₆As quantum wells are studied in this dissertation. The interaction of quantum-well excitons with light in environments different from free space gives a pronounced effect on the optical response. N periodically arranged quantum wells are coupled to each other by light leading to N exciton-polariton eigenmodes. Each eigenmode is characterized by a distinct energy and radiative lifetime depending on the periodicity of the quantum wells. For a period of about
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Yan, Kun. "Size effects on the thermo-mechanical behavior on nano-structures/ materials." Click to view the E-thesis via HKUTO, 2008. http://sunzi.lib.hku.hk/hkuto/record/B41290513.

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Mehrez, Hatem. "Theoretical study of nano structures and molecular electronic systems." Thesis, McGill University, 2001. http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=38237.

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Research studies on systems with reduced size and dimensionality have attracted great attention for the past two decades. This is mainly driven by industrial development, which demands the fabrication of new, small, well-controlled devices as well as the desire to understand quantum effects which manifest in these small structures.<br>In this thesis we theoretically investigate quantum coherent transport properties of nano structures in the form of molecular electronic systems. Our approach is based on Landauer-Buttiker transport theory. However, the details of the method depend on the interac
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Maines, Geoffrey C. "Underwater Pressure Pulses Generated by Mechanically Alloyed Intermolecular Composites." Thèse, Université d'Ottawa / University of Ottawa, 2014. http://hdl.handle.net/10393/30708.

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Recently, the use of thermite-based pressure waves for applications in cellular transfection and drug delivery have shown significant improvements over previous technologies. In the present study, a new technique for producing thermite-generated pressure pulses using fully-dense nano-scale thermite mixtures was evaluated. This was accomplished by evaluation of a stoichiometric mixture of aluminium (Al) and copper(II)-oxide (CuO) prepared by mechanical alloying. Flame propagation speeds, constant-volume pressure characteristics and underwater pressure characteristics of both a micron-scale and
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Yan, Kun, and 閆琨. "Size effects on the thermo-mechanical behavior on nano-structures/ materials." Thesis, The University of Hong Kong (Pokfulam, Hong Kong), 2008. http://hub.hku.hk/bib/B41290513.

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Books on the topic "Nano- Structures of the Energetic Materials"

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Bhattacharya, Shantanu, Avinash Kumar Agarwal, T. Rajagopalan, and Vinay K. Patel, eds. Nano-Energetic Materials. Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-13-3269-2.

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Zhang, Chaoyang, Jing Huang, and Rupeng Bu. Intrinsic Structures and Properties of Energetic Materials. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-2699-2.

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Gdoutos, E. E., ed. Fracture of Nano and Engineering Materials and Structures. Springer Netherlands, 2006. http://dx.doi.org/10.1007/1-4020-4972-2.

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Xing, Zhu, Chou Stephen Y, Arakawa Yasuhiko, et al., eds. Nano-optics and nano-structures: 15-16 October, 2002, Shanghai, China. SPIE, 2003.

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Gdoutos, E. E., ed. Experimental Analysis of Nano and Engineering Materials and Structures. Springer Netherlands, 2007. http://dx.doi.org/10.1007/978-1-4020-6239-1.

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1959-, Tang Zikang, and Sheng Ping 1946-, eds. Nano science and technology: Novel structures and phenomena. Taylor & Francis, 2003.

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1939-, Vincenzini P., De Rossi Danilo E, and International Conference on "Smart Materials, Structures, and Systems" (3rd : 2008 : Acireale, Italy), eds. Biomedical applications of smart materials, nanotechnology and micro/nano engineering: "biomedical applications of smart materials, nanotechnology and micro/nano engineering" : proceedings of symposium D "Biomedical applications of smart materials, nanotechnology and micro/nano engineering" of CIMTEC 2008 - 3rd International conference "Smart materials, structures and systems", held in Acireale, Sicily, Italy, June 8-13 2008. Trans Tech Publications Ltd, 2009.

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1939-, Vincenzini P., De Rossi Danilo E, and International Conference on "Smart Materials, Structures, and Systems" (3rd : 2008 : Acireale, Italy), eds. Biomedical applications of smart materials, nanotechnology and micro/nano engineering: "biomedical applications of smart materials, nanotechnology and micro/nano engineering" : proceedings of symposium D "Biomedical applications of smart materials, nanotechnology and micro/nano engineering" of CIMTEC 2008 - 3rd International conference "Smart materials, structures and systems", held in Acireale, Sicily, Italy, June 8-13 2008. Trans Tech Publications Ltd, 2009.

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Mira, Mitra, ed. Wavelet methods for dynamical problems: With application to metallic, composite, and nano-composite structures. Taylor & Francis, 2010.

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Agarwal, Avinash Kumar, Shantanu Bhattacharya, and T. Rajagopalan. Nano-Energetic Materials. Springer, 2019.

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Book chapters on the topic "Nano- Structures of the Energetic Materials"

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Bhattacharya, Shantanu, Avinash Kumar Agarwal, Vinay K. Patel, T. Raja Gopalan, Aviru Kumar Basu, and Anubhuti Saha. "Introduction to Nano-energetic Materials." In Energy, Environment, and Sustainability. Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-13-3269-2_1.

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Zhang, Chaoyang, Jing Huang, and Rupeng Bu. "Energetic Cocrystals." In Intrinsic Structures and Properties of Energetic Materials. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-2699-2_7.

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Jena, Sudarsana, and Ankur Gupta. "Nano-energetic Materials for Defense Application." In Energy, Environment, and Sustainability. Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-13-3269-2_4.

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Katiyar, Jitendra Kumar, and Vinay K. Patel. "Nano-energetic Materials on a Chip." In Energy, Environment, and Sustainability. Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-13-3269-2_6.

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Zhang, Chaoyang, Jing Huang, and Rupeng Bu. "Energetic Atomic Crystals, Energetic Metallic Crystals, and Energetic Mixed-Type Crystals." In Intrinsic Structures and Properties of Energetic Materials. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-2699-2_8.

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Zhang, Chaoyang, Jing Huang, and Rupeng Bu. "Energetic Molecules and Energetic Single-Component Molecular Crystals." In Intrinsic Structures and Properties of Energetic Materials. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-2699-2_4.

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Zhang, Chaoyang, Jing Huang, and Rupeng Bu. "Energetic Ionic Crystals." In Intrinsic Structures and Properties of Energetic Materials. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-2699-2_6.

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Zhang, Chaoyang, Jing Huang, and Rupeng Bu. "Category of Energetic Crystals." In Intrinsic Structures and Properties of Energetic Materials. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-2699-2_2.

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Alexe, M., C. Harnagea, A. Pignolet, D. Hesse, and U. Gösele. "Nano-Size Ferroelectric Structures." In Piezoelectric Materials: Advances in Science, Technology and Applications. Springer Netherlands, 2000. http://dx.doi.org/10.1007/978-94-011-4094-2_6.

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Zhang, Chaoyang, Jing Huang, and Rupeng Bu. "π-Stacking in Energetic Crystals." In Intrinsic Structures and Properties of Energetic Materials. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-2699-2_10.

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Conference papers on the topic "Nano- Structures of the Energetic Materials"

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Shirodkar, Nishant, Samantha Rocker, and Gary D. Seidel. "Structural Health Monitoring of Solid Rocket Propellants Using Piezoresistive Properties of Dispersed Carbon Nano-Tube Sensing Networks." In ASME 2018 Conference on Smart Materials, Adaptive Structures and Intelligent Systems. American Society of Mechanical Engineers, 2018. http://dx.doi.org/10.1115/smasis2018-8250.

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There has been increasing focus in the area of in-situ structural health monitoring since the advent of embedded nano-composites. This experimental research investigates the structural health monitoring abilities of polymer bonded energetics embedded with a uniformly dispersed but randomly oriented carbon nanotube (CNT) sensing network within the polymer binder. A common formulation of the recent solid propellants consists of ammonium perchlorate (oxidizer) and aluminum powder (combustive fuel)-often shaped using a polymer binder, rather than the older techniques of power pressing. Since this
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Hotz, Nico. "Nano-Structured Catalytic Material for Solar-Powered Biofuel Reforming." In ASME 2012 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2012. http://dx.doi.org/10.1115/imece2012-89729.

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The main goal of this project is to combine two renewable energy conversion technologies (low-temperature fuel cells and solarthermal collectors) to achieve synergies in terms of cost and energetic efficiency compared to systems based on a single energy source and energy conversion technology. Direct solar-to-electric energy conversion, such as photovoltaics, is currently not economically competitive with traditional electric power generation. Fuel cell technology using alcoholic fuel possibly generated from biomass (e.g. methanol) is not competitive in terms of costs either. The system propos
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Narayanan, V., X. Lu, and S. Hanagud. "Shock-Induced Chemical Reactions in Multi-Functional Structural Energetic Intermetallic Nanocomposite Mixtures." In ASME 2005 International Mechanical Engineering Congress and Exposition. ASMEDC, 2005. http://dx.doi.org/10.1115/imece2005-81636.

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Shock induced chemical reactions of intermetallics or mixtures of metal and metal-oxides are also used to synthesize new materials with unique phases and microstructures. These materials are also of significant interest to the energetics community because of the significant amount of heat energy released during chemical reactions when subjected to shock and/or thermal loading. Binary energetic materials are classified into two categories— metal/metal oxides and intermetallics. When these materials are synthesized at a nano level with binders and other structural reinforcements, the strength of
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Tomar, Vikas, and Min Zhou. "Strength Analyses of FE2O3+Al Nanocomposites Using Classical Molecular Dynamics." In ASME 2005 International Mechanical Engineering Congress and Exposition. ASMEDC, 2005. http://dx.doi.org/10.1115/imece2005-79282.

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Classical molecular dynamics (CMD) simulation is an important technique for analyzing custom-designed nanostructured materials and nano-sized systems such as nanowires and nanobelts. This research focuses on analyzing the strength of Fe2O3+Al energetic nanocomposites using CMD. A generic potential form is used to describe the behavior of the Fe+Al+Fe2O3+Al2O3 system. The potential is able to describe bulk single crystal behavior of Fe, Al, Fe2O3, Al2O3 as well as interfacial transitions among them. The nanostructures analyzed include polycrystalline Aluminum, Fe2O3 as well as their composites
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Amini Manesh, Navid, Kevin R. Coffey, and Ranganathan Kumar. "Experimental and Numerical Study of Dense Layered Nano-Energetic Materials." In ASME 2007 International Mechanical Engineering Congress and Exposition. ASMEDC, 2007. http://dx.doi.org/10.1115/imece2007-43670.

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This paper deals with the reaction of dense Metastable Intermolecular Composite (MIC) materials. The energy density of MIC nanocomposite materials is much higher than that of conventional energetic materials. The reaction of a multilayer thin film of aluminum and copper oxide has been studied by varying the substrate material and thicknesses, to vary the heat loss during the reaction of the MIC material. The in-plane speed of propagation of the reaction was experimentally determined using a time of-flight technique. The experiment shows that the reaction is completely quenched for a silicon su
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Samatham, Ravikant, Kiyoung Choe, Kwang Jin Kim, Mohsen Shahinpoor, and Jaedo Nam. "Toward nano-biomimetic muscles: polyacrylonitrile nanofibers." In Smart Structures and Materials, edited by Yoseph Bar-Cohen. SPIE, 2004. http://dx.doi.org/10.1117/12.534363.

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Murzina, Tatyana V. A., Oleg A. Aktsipetrov, F. Yu Sychev, J. Paul Farrell, and Marina V. Murzina. "Nano-coating with controllable reflectance spectrum." In Smart Structures and Materials, edited by William D. Armstrong. SPIE, 2005. http://dx.doi.org/10.1117/12.598883.

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Breiner, Jakob A., and Kevin M. Jaansalu. "ANTICIPATED IMPACT OF STRUCTURAL REACTIVE MATERIALS ON A WARHEADS IM." In 34th International Symposium on Ballistics. Destech Publications, Inc., 2025. https://doi.org/10.12783/ballistics25/37157.

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Structural reactive materials have been identified as feasible technology to improve a warhead’s lethality by air blast/bubble energy, behind armor effects, or as small sized initiation elements. Laboratory scale sensitivity test data reveal that many SRM formulations show a much higher shock and thermal insensitivity level compared to the well-known energetic materials TNT and HMX. Even though few data were identified in literature, estimation of IM test results is possible by generic reaction models. Based on the NATO AOP-39 framework, the IM characteristics of non-mitigated SRM warheads are
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Kim, Seongyul, Tansel Karabacak, Toh-Ming Lu, and Nikhil Koratkar. "Hydrogen generation using ruthenium nano-rod array electrodes." In Smart Structures and Materials, edited by Vijay K. Varadan. SPIE, 2006. http://dx.doi.org/10.1117/12.658786.

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Luo, Cheng, and Anirban Chakraborty. "A novel approach to fabricate metallic nano-cantilevers." In Smart Structures and Materials, edited by Vijay K. Varadan. SPIE, 2005. http://dx.doi.org/10.1117/12.600305.

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Reports on the topic "Nano- Structures of the Energetic Materials"

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Allara, David, Dana Dlott, Tim Eden, et al. Nano Engineered Energetic Materials (NEEM). Defense Technical Information Center, 2011. http://dx.doi.org/10.21236/ada544673.

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Barnett, Scott, Ken Poeppelmeier, Tom Mason, Lawrence Marks, and Peter Voorhees. High Performance Nano-Crystalline Oxide Fuel Cell Materials. Defects, Structures, Interfaces, Transport, and Electrochemistry. Office of Scientific and Technical Information (OSTI), 2016. http://dx.doi.org/10.2172/1320742.

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Rogers, Robin D., Marcin Smiglak, Julia Shamshina, and David M. Drab. Toward a Modular Ionic Liquid" Platform for the Custom Design of Energetic Materials: Understanding How the Dual Nature of Ionic Liquids Relates Key Physical Properties to Target Structures". Defense Technical Information Center, 2009. http://dx.doi.org/10.21236/ada626354.

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Kennedy, Alan, Andrew McQueen, Mark Ballentine, et al. Sustainable harmful algal bloom mitigation by 3D printed photocatalytic oxidation devices (3D-PODs). Engineer Research and Development Center (U.S.), 2022. http://dx.doi.org/10.21079/11681/43980.

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The impacts of Harmful Algal Blooms (HAB), often caused by cyanobacteria (Figure 1), on water resources are increasing. Innovative solutions for treatment of HABs and their associated toxins are needed to mitigate these impacts and decrease risks without introducing persistent legacy contaminants that cause collateral ecosystem impacts. This technical note (TN) identifies novel opportunities enabled by Additive Manufacturing (AM), or 3D printing, to produce high surface area advanced material composites to rapidly prototype sustainable environmental solutions for aquatic nuisance species contr
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