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1

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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2

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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3

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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5

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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6

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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7

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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8

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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9

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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10

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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11

Shahzad, Kashif, Ayesha Kausar, Saima Manzoor, et al. "Views on Radiation Shielding Efficiency of Polymeric Composites/Nanocomposites and Multi-Layered Materials: Current State and Advancements." Radiation 3, no. 1 (2022): 1–20. http://dx.doi.org/10.3390/radiation3010001.

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This article highlights advancements in polymeric composite/nanocomposites processes and applications for improved radiation shielding and high-rate attenuation for the spacecraft. Energetic particles, mostly electrons and protons, can annihilate or cause space craft hardware failures. The standard practice in space electronics is the utilization of aluminum as radiation safeguard and structural enclosure. In space, the materials must be lightweight and capable of withstanding extreme temperature/mechanical loads under harsh environments, so the research has focused on advanced multi-functiona
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12

Schramm, Rene, Thomas Reitberger, and Joerg Franke. "Electrical and Mechanical Investigations on Copper Circuit Paths Coated on Fiber-Reinforced Plastics by Atmospheric Plasma Technology." Journal of Microelectronics and Electronic Packaging 12, no. 1 (2015): 61–66. http://dx.doi.org/10.4071/imaps.445.

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In previous investigations, the additive metallization of conductor paths on thermoplastic substrate materials using printing technologies (e.g., ink jet, Aerosol Jet) was analyzed. Major disadvantages of printing technologies are the two-step process chain divided in printing and sintering and the low current-carrying capacity of the generated structures. Accordingly, printed conductor paths are mainly used for sensor and control currents. Plasmadust technology, based on a cold-active atmospheric plasma beam, offers the possibility of additive metallization of copper circuit paths on differen
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13

SINGH, DILIP K., PARAMESWAR K. IYER, and P. K. GIRI. "DEFECT EVOLUTION AND STRUCTURAL IMPROVEMENT IN LOW ENERGY ION IRRADIATED CARBON NANOTUBES: MICROSCOPIC AND SPECTROSCOPIC STUDIES." International Journal of Nanoscience 10, no. 01n02 (2011): 49–53. http://dx.doi.org/10.1142/s0219581x11007661.

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The capability of graphitic networks to reorganize their structures under irradiation of energetic particles provides the tool for nano-engineering of carbon nanotubes (CNTs). We have studied the effect of 30 keV N + ion irradiation with three different fluences 1012, 1013, and 1014 ions/cm2 on the structural and spectroscopic properties of single-walled carbon nanotubes (SWNTs) and multiwalled carbon nanotubes (MWNTs). Irradiation-induced structural defects and coalescence of the nanotubes are studied using high-resolution transmission electron microscopy (HRTEM). Upon irradiation, some of th
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14

Rene, Schramm, Reitberger Thomas, and Franke Joerg. "Electrical Characterization of Fibre-Reinforced Plastics by Atmospheric Plasma Technology." International Symposium on Microelectronics 2014, no. 1 (2014): 000123–28. http://dx.doi.org/10.4071/isom-ta52.

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In previous investigations the additive metallization of conductor paths on thermoplastic substrate materials using printing technologies (Inkjet, Aerosol-Jet) was analyzed. Major disadvantages of printing technologies are the double-stage process chain divided in printing and sintering and the low current-carrying capacity of the printed structures. Accordingly, printed conductor paths are mainly used for sensor and control currents. The plasmadust technology, based on a cold active atmospheric plasma beam, offers the possibility for additive metallization of copper circuit paths on a sandwic
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15

Ungerer, Marietjie J., and Nora H. de Leeuw. "A DFT Study of Ruthenium fcc Nano-Dots: Size-Dependent Induced Magnetic Moments." Nanomaterials 13, no. 6 (2023): 1118. http://dx.doi.org/10.3390/nano13061118.

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Many areas of electronics, engineering and manufacturing rely on ferromagnetic materials, including iron, nickel and cobalt. Very few other materials have an innate magnetic moment rather than induced magnetic properties, which are more common. However, in a previous study of ruthenium nanoparticles, the smallest nano-dots showed significant magnetic moments. Furthermore, ruthenium nanoparticles with a face-centred cubic (fcc) packing structure exhibit high catalytic activity towards several reactions and such catalysts are of special interest for the electrocatalytic production of hydrogen. P
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16

Kumar, Ravindra, Ajay Kumar Rakesh, Anil Govindan, and Neeraj K. Jaiswal. "Spin dependent Electronic properties of NO-adsorbed zigzag ZnO nanoribbons: A DFT Study." IOP Conference Series: Materials Science and Engineering 1248, no. 1 (2022): 012030. http://dx.doi.org/10.1088/1757-899x/1248/1/012030.

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Abstract Exploring novel nano-materials for designing the robust and efficient sensors is an area of immense potential. In the present work, we study the adsorption of NO molecules at the edges of zigzag ZnO nanoribbons (zZnONR). The adsorption of NO molecules was modelled at the edges of zZnONR in different possibilities. It is well known that pristine (H-passivated) zZnONR is a semi-conducting material. Present calculations reveal that NO-adsorption takes place via N-side and a semiconductor to metallic-transition is also witnessed in all configurations. The obtained adsorption energies are
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17

Kyrychenko, V. I., V. V. Kyrychenko, and V. P. Nezdorovin. "ALTERNATIVE DIRECTION OF DEVELOPMENT IN THE LUBRICANT MATERIALS INDUSTRY: INNOVATIONS REGARDING RAW MATERIALS, CHEMICAL-TECHNOLOGICAL, AND TRIBOLOGICAL ASPECTS." Energy Technologies & Resource Saving 81, no. 4 (2024): 22–42. https://doi.org/10.33070/etars.4.2024.02.

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The justified relevance of the stated problem is highlighted. A set of questions has been formed, investigated with the aim of developing innovative methods and technologies for processing technical oils into alternative bio-ester-based oils for the lubricant materials industry. Significant attention is given to the tribological aspects of the problem, particularly the development of a predictive model for bio-ester-based oils. Emphasis is placed on tribological requirements for the development of functionally qualitative oils, namely: special molecular structures with high levels of polarity
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18

Mosca, Dante H. "EDITORIAL." Revista de Engenharia Térmica 8, no. 2 (2009): 02. http://dx.doi.org/10.5380/reterm.v8i2.61889.

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This editorial focuses on the important contribution that engineering and science of materials have to offer in thermal engineering applications, in particular, energy management.The search for innovative technologies is more than ever crucial to meet many future energy needs around the world. One example is thin-film technology that continuously grows into the global research field, following recognition that the properties of thin surface layers differ greatly from those of the same materials in bulk. The effects of increased surfacearea, in tandem with quantum effects, begin to dominate mat
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19

Dmitriev, Andrey I., Anton Yu Nikonov, Werner Österle, and Bai Cheng Jim. "VERIFICATION OF RABINOWICZ’ CRITERION BY DIRECT MOLECULAR DYNAMICS MODELING." Facta Universitatis, Series: Mechanical Engineering 17, no. 2 (2019): 207. http://dx.doi.org/10.22190/fume190404026d.

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In the paper we use direct molecular dynamics modeling to validate the criterion for formation of wear debris proposed by E. Rabinowicz in 1958. A conventional molecular dynamics using a classical Tersoff’s potential was applied to simulate the sliding behavior within a thin film corresponding to a tribofilm formed from silica nano-particles in amorphous-like state. The simulation was carried out by varying the initial temperature and the spatial size of the simulated crystallite. The results show the change in sliding behavior of silica-based tribofilm depending on the temperature and the siz
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20

Jipa, Florin, Laura Ionel, and Marian Zamfirescu. "Advances in Design and Fabrication of Micro-Structured Solid Targets for High-Power Laser-Matter Interaction." Photonics 11, no. 11 (2024): 1008. http://dx.doi.org/10.3390/photonics11111008.

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Accelerated particles have multiple applications in materials research, medicine, and the space industry. In contrast to classical particle accelerators, laser-driven acceleration at intensities greater than 1018 W/cm2, currently achieved at TW and PW laser facilities, allow for much larger electric field gradients at the laser focus point, several orders of magnitude higher than those found in conventional kilometer-sized accelerators. It has been demonstrated that target design becomes an important factor to consider in ultra-intense laser experiments. The energetic and spatial distribution
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21

Nabi, Azeem Ghulam, Aman-ur-Rehman, Akhtar Hussain, Gregory A. Chass, and Devis Di Tommaso. "Optimal Icosahedral Copper-Based Bimetallic Clusters for the Selective Electrocatalytic CO2 Conversion to One Carbon Products." Nanomaterials 13, no. 1 (2022): 87. http://dx.doi.org/10.3390/nano13010087.

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Electrochemical CO2 reduction reactions can lead to high value-added chemical and materials production while helping decrease anthropogenic CO2 emissions. Copper metal clusters can reduce CO2 to more than thirty different hydrocarbons and oxygenates yet they lack the required selectivity. We present a computational characterization of the role of nano-structuring and alloying in Cu-based catalysts on the activity and selectivity of CO2 reduction to generate the following one-carbon products: carbon monoxide (CO), formic acid (HCOOH), formaldehyde (H2C=O), methanol (CH3OH) and methane (CH4). Th
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22

Fu, Xiaolong, Yonghu Zhu, Jizhen Li, Liping Jiang, Xitong Zhao, and Xuezhong Fan. "Preparation, Characterization and Application of Nano-Graphene-Based Energetic Materials." Nanomaterials 11, no. 9 (2021): 2374. http://dx.doi.org/10.3390/nano11092374.

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Nano-graphene-based energetic materials, as a new type of composite energetic materials such as desensitizer and combustion catalyst, have attracted extensive attention from energetic researchers. In this paper, the preparation of nano-graphene-based energetic materials, the desensitization effect of nano-graphene-based on energetic compounds, the thermal decomposition and combustion behavior of the materials are reviewed. Meanwhile, the existing problems and future development of nano-graphene-based energetic compounds are discussed.
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23

Tatsuma, Tetsu, and Takuya Ishida. "(Invited) Plasmonic Fabrication of Chiral and Magneto-Chiral Nanostructures." ECS Meeting Abstracts MA2024-02, no. 59 (2024): 3970. https://doi.org/10.1149/ma2024-02593970mtgabs.

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Chiral and magneto-chiral plasmonic nanostructures attract attention because they have various potential applications including catalysts, chemical sensors, and optical and optoelectronic materials and devices. In many cases, those nanostructures are fabricated by lithographic techniques. However, those top down methods are generally time-consuming and expensive. Therefore, we have developed photoelectrochemical methods in which site-selective deposition or dissolution reactions are driven by optical near field generated around anisotropic metal nanoparticles under right- or left-circularly po
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Gorshkov, Vyacheslav N., Mykola O. Stretovych, Valerii F. Semeniuk, et al. "Hierarchical Structuring of Black Silicon Wafers by Ion-Flow-Stimulated Roughening Transition: Fundamentals and Applications for Photovoltaics." Nanomaterials 13, no. 19 (2023): 2715. http://dx.doi.org/10.3390/nano13192715.

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Ion-flow-stimulated roughening transition is a phenomenon that may prove useful in the hierarchical structuring of nanostructures. In this work, we have investigated theoretically and experimentally the surface texturing of single-crystal and multi-crystalline silicon wafers irradiated using ion-beam flows. In contrast to previous studies, ions had relatively low energies, whereas flow densities were high enough to induce a quasi-liquid state in the upper silicon layers. The resulting surface modifications reduced the wafer light reflectance to values characteristic of black silicon, widely us
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Brewster, M. Quinn, and S. M. Begley. "RADIATIVE PROPERTIES OF NANO-ENERGETIC MATERIALS." International Journal of Energetic Materials and Chemical Propulsion 6, no. 1 (2007): 105–18. http://dx.doi.org/10.1615/intjenergeticmaterialschemprop.v6.i1.80.

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26

Pang, Weiqiang, Chongqing Deng, Huan Li, et al. "Effect of Nano-Sized Energetic Materials (nEMs) on the Performance of Solid Propellants: A Review." Nanomaterials 12, no. 1 (2021): 133. http://dx.doi.org/10.3390/nano12010133.

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As a hot research topic, nano-scale energetic materials have recently attracted much attention in the fields of propellants and explosives. The preparation of different types of nano-sized energetic materials were carried out, and the effects of nano-sized energetic materials (nEMs) on the properties of solid propellants and explosives were investigated and compared with those of micro-sized ones, placing emphasis on the investigation of the hazardous properties, which could be useable for solid rocket nozzle motor applications. It was found that the nano-sized energetic materials can decrease
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27

Zeng, Guiyu, Lin Zhao, Xi Zeng, and Zhiqiang Qiao. "Preparation Progress of micro/nano-energetic materials." IOP Conference Series: Materials Science and Engineering 382 (July 2018): 022030. http://dx.doi.org/10.1088/1757-899x/382/2/022030.

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28

Spitzer, Denis, Marc Comet, Christian Baras, Vincent Pichot, and Nelly Piazzon. "Energetic nano-materials: Opportunities for enhanced performances." Journal of Physics and Chemistry of Solids 71, no. 2 (2010): 100–108. http://dx.doi.org/10.1016/j.jpcs.2009.09.010.

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29

Zhang, K. L., Simon S. Ang, and Siaw Kiang Chou. "Micro/Nano Functional Manufacturing: From Microthruster to Nano Energetic Material to Micro/Nano Initiator." Key Engineering Materials 426-427 (January 2010): 240–44. http://dx.doi.org/10.4028/www.scientific.net/kem.426-427.240.

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Functional manufacturing technologies are becoming more and more important to the manufacturing industry and research. As promising categories of functional manufacturing, micro and nano manufacturing have received steadily growing interests in recent years. In this paper, as typical examples to demonstrate micro and nano manufacturing, our work on microthruster, nano energetic material, and micro/nano initiator is presented. Microspacecraft is one application of microsystem in space. In a microspacecraft, a micropropulsion system is required for station keeping, attitude control, and orbit ad
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Pang, Weiqiang, Xuezhong Fan, Ke Wang, et al. "Al-Based Nano-Sized Composite Energetic Materials (Nano-CEMs): Preparation, Characterization, and Performance." Nanomaterials 10, no. 6 (2020): 1039. http://dx.doi.org/10.3390/nano10061039.

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As one of the new types of functional materials, nano-sized composite energetic materials (nano-CEMs) possess many advantages and broad application prospects in the research field of explosives and propellants. The recent progress in the preparation and performance characterization of Al-based nano-CEMs has been reviewed. The preparation methods and properties of Al-based nano-CEMs are emphatically analyzed. Special emphasis is focused on the improved performances of Al-based nano-CEMs, which are different from those of conventional micro-sized composite energetic materials (micro-CEMs), such
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FAN, Hongyu, Chunjie NIU, Xiaoping LI, et al. "W fuzz layers: very high resistance to sputtering under fusion-relevant He + irradiations." Plasma Science and Technology 24, no. 1 (2021): 015601. http://dx.doi.org/10.1088/2058-6272/ac35a2.

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Abstract In this study, we have modeled the sputtering process of energetic He+ ions colliding with W nano-fuzz materials, based on the physical processes, such as the collision and diffusion of energetic particles, sputtering and redeposition. Our modeling shows that the fuzzy nanomaterials with a large surface-to-volume ratio exhibit very high resistance to sputtering under fusion-relevant He+ irradiations, and their sputtering yields are mainly determined by the thickness of fuzzy nano-materials, the reflection coefficients and mean free paths of energetic particles, surface sputtering yiel
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Krstović, Mirjana, Danica Bajić, Mladen Timotijević, Jovica Nešić, and Bojana Fidanovski. "The influence of nano-scale aluminum on the energetic potential of energetic materials: Theoretical and experimental observations." Scientific Technical Review 74, no. 1 (2024): 36–42. https://doi.org/10.5937/str2401036k.

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Metal powders have been utilized for a long time in energetic materials to improve some specific performance. In recent years, metal particles in energetic materials have been reduced in size since smaller particles, particularly nano-sized, have highly beneficial qualities. These positive aspects are evident in the reduction of ignition and combustion times, resulting in enhanced combustion in volume-constrained systems, improved heat transmission, and increased total thermal energy release. Aluminum is one of the first metals to be used in form of nano-particles in energetic formulations, wi
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Rossi, Carole. "Two Decades of Research on Nano‐Energetic Materials." Propellants, Explosives, Pyrotechnics 39, no. 3 (2014): 323–27. http://dx.doi.org/10.1002/prep.201480151.

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Acevedo, Ruben, Brigitte Soula, Anne Marie Galibert, and Emmanuel Flahaut. "Carbon Nanotubes for Confinement-Induced Energetic Nanomaterials." Nanomaterials 13, no. 12 (2023): 1845. http://dx.doi.org/10.3390/nano13121845.

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Oxidized carbon nanotubes obtained by catalytic chemical vapor deposition were filled with an aqueous solution of nano-energetic materials using a very simple impregnation method. The work compares different energetic materials but focuses especially on an inorganic compound belonging to the Werner complexes, [Co(NH3)6][NO3]3. Our results show a large increase in released energy upon heating, which we demonstrate to be related to the confinement of the nano-energetic material either directly by filling of the inner channel of carbon nanotubes or to insertion in the triangular channels between
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35

Hunt, Emily M., Steven Malcolm, Michelle L. Pantoya, and Freddie Davis. "Impact ignition of nano and micron composite energetic materials." International Journal of Impact Engineering 36, no. 6 (2009): 842–46. http://dx.doi.org/10.1016/j.ijimpeng.2008.11.011.

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Hobosyan, Mkhitar A., and Karen S. Martirosyan. "Iodine Pentoxide Nano-rods for High Density Energetic Materials." Propellants, Explosives, Pyrotechnics 42, no. 5 (2017): 506–13. http://dx.doi.org/10.1002/prep.201600220.

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Manesh, Navid Amini, Saptarshi Basu, and Ranganathan Kumar. "Experimental flame speed in multi-layered nano-energetic materials." Combustion and Flame 157, no. 3 (2010): 476–80. http://dx.doi.org/10.1016/j.combustflame.2009.07.011.

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38

Yoh, Jack Jai-ick. "Analysis of phase front structures for energetic materials." Journal of Physics: Condensed Matter 18, no. 35 (2006): 8179–93. http://dx.doi.org/10.1088/0953-8984/18/35/006.

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39

Zaky, Mohamed, Ahmed Elbeih, and Tamer Elshenawy. "Review of Nano-thermites; a Pathway to Enhanced Energetic Materials." Central European Journal of Energetic Materials 18, no. 1 (2021): 63–85. http://dx.doi.org/10.22211/cejem/134953.

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Li, Guoping, Menghui Liu, Ran Zhang, Lianhua Shen, Yazhong Liu, and Yunjun Luo. "Synthesis and properties of RDX/GAP nano-composite energetic materials." Colloid and Polymer Science 293, no. 8 (2015): 2269–79. http://dx.doi.org/10.1007/s00396-015-3620-x.

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Wang, Fuping, Guangyan Du, Xinchi Liu, Mingyu Shao, Chenggen Zhang, and Lang Chen. "Molecular dynamics application of cocrystal energetic materials: A review." Nanotechnology Reviews 11, no. 1 (2022): 2141–53. http://dx.doi.org/10.1515/ntrev-2022-0124.

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Abstract Cocrystallization is an important method to obtain high-energy and low-sensitivity explosives. Therefore, the synthesis, structures, and properties of cocrystal energetic materials have become a highly active research topic. Studying the physical and chemical properties of cocrystal energetic materials by molecular dynamics is of great significance for the in-depth understanding and design/synthesis of new cocrystal energetic materials. This review introduces the method of molecular dynamics, the cocrystal energetic materials synthesized successfully to date, and the application of mo
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Diwu, Minjie, Aifeng He, Jia Zhao, et al. "An Investigation of Laser Absorption Enhancement of Energetic Materials Doped with Metallic Nano-Particles." Journal of Physics: Conference Series 2478, no. 3 (2023): 032040. http://dx.doi.org/10.1088/1742-6596/2478/3/032040.

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Abstract The influence onto laser absorption enhancement of energetic materials from doping in metallic nanoparticles was investigated. The FEM analyzation using complex refractive index of Al and Au shows that the doping metal types, the structure of nanoparticles, and the wavelength of electromagnetic waves, takes an influence on the absorption efficiency. The laser ignition experiment was carried, the influence on the ignition properties of pyrotechnics of the energetic material types, the amount of doping particles, and ignition laser parameters were analysed.
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43

Li, Ying, Rajiv K. Kalia, Masaaki Misawa, et al. "Anisotropic mechanoresponse of energetic crystallites: a quantum molecular dynamics study of nano-collision." Nanoscale 8, no. 18 (2016): 9714–20. http://dx.doi.org/10.1039/c5nr08769d.

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44

Szefler, Beata. "Nano-structures as materials in biosciences." Journal of Molecular Structure 1224 (January 2021): 129186. http://dx.doi.org/10.1016/j.molstruc.2020.129186.

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45

Yelemessova, Zh, B. Milikhat, A. Yerken, Z. Mansurov, and A. Imangazy. "ENERGETIC COMPOSITE MATERIALS FOR MICRO-INITIATION SYSTEMS: COMPOSITION-PERFORMANCE RELATIONSHIPS." Chemical Journal of Kazakhstan, no. 2 (June 30, 2025): 62–80. https://doi.org/10.51580/2025-2.2710-1185.23.

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Introduction. Micro-initiation systems are crucial for the advancement of smart combustible technologies, enabling highly localized and controlled initiation of energetic reactions at the microscale. These systems are essential in applications such as micro-chips, MEMS devices, and smart munitions, and they depend on energetic composite materials (ECMs) that effectively balance performance and safety. Objective of the study. This review examines the relationships between composition and performance in energetic materials (ECMs) used in micro-initiation systems. It focuses on the chemical, stru
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Zhang, Junlin, Jing Zhou, Fuqiang Bi, and Bozhou Wang. "Energetic materials based on poly furazan and furoxan structures." Chinese Chemical Letters 31, no. 9 (2020): 2375–94. http://dx.doi.org/10.1016/j.cclet.2020.01.026.

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Li, Jingwei, Xuwen Liu, Quanmin Xie, Yongsheng Jia, Jinshan Sun, and Yingkang Yao. "Cryogel-Templated Fabrication of n-Al/PVDF Superhydrophobic Energetic Films with Exceptional Underwater Ignition Performance." Molecules 27, no. 20 (2022): 6911. http://dx.doi.org/10.3390/molecules27206911.

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The rapid heat loss and corrosion of nano-aluminum limits the energy performance of metastable intermolecular composites (MICs) in aquatic conditions. In this work, superhydrophobic n-Al/PVDF films were fabricated by the cryogel-templated method. The underwater ignition performance of the energetic films was investigated. The preparation process of energetic materials is relatively simple, and avoids excessively high temperatures, ensuring the safety of the entire experimental process. The surface of the n-Al/PVDF energetic film exhibits super-hydrophobicity. Because the aluminum nanoparticles
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Rice, Betsy M., and Edward F. C. Byrd. "Theoretical chemical characterization of energetic materials." Journal of Materials Research 21, no. 10 (2006): 2444–52. http://dx.doi.org/10.1557/jmr.2006.0329.

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Our research is focused on developing computational capabilities for the prediction of properties of energetic materials associated with performance and sensitivity. Additionally, we want to identify and characterize the dynamic processes that influence conversion of an energetic material to products upon initiation. We are attempting to achieve these goals through the use of standard atomistic simulation methods. In this paper, various theoretical chemistry methods and applications to energetic materials will be described. Current capabilities in predicting structures, thermodynamic propertie
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Visconti, Paolo, Patrizio Primiceri, Roberto de Fazio, Luciano Strafella, Antonio Ficarella, and Antonio Paolo Carlucci. "Light-Induced ignition of Carbon Nanotubes and energetic nano-materials: a review on methods and advanced technical solutions for nanoparticles-enriched fuels combustion." REVIEWS ON ADVANCED MATERIALS SCIENCE 59, no. 1 (2020): 26–46. http://dx.doi.org/10.1515/rams-2020-0010.

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AbstractAim of the present manuscript is to provide an overview of all possible methods and light source typologies used by the different research groups for obtaining the energetic nano-materials’ photo-ignition, showing the latest progress related to such phenomenon employing, also, alternative radiation sources to the common Xe lamp. In fact, the employment of a different source typology can open new usage prospects respect to those enabled by the Xe lamp, mainly due to its technological limitations. Therefore, several studies are faced to test light sources, such as lasers and LEDs, for ig
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Yang, Xin-bo, Chen-hui Jia, Xiang-yan Miao, Yu-chuan Li, and Si-ping Pang. "Synthesis and characterization of potential polycyclic energetic materials using bicyclic triazole and azetidine structures as building blocks." RSC Advances 13, no. 4 (2023): 2600–2610. http://dx.doi.org/10.1039/d2ra06646g.

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