Academic literature on the topic 'Metal nanosystem'

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Journal articles on the topic "Metal nanosystem"

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Sun, Xinran, Guoda Zhang, Xilai Ding, et al. "A DNA functionalized metal–organic framework combined with magnesium peroxide nanoparticles: targeted and enhanced photodynamic therapy." Materials Chemistry Frontiers 6, no. 7 (2022): 956–65. http://dx.doi.org/10.1039/d1qm01475g.

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A self-supplying O2 nanosystem (Hf-MOF-MgO2/DNA) based on a DNA functionalized MOF combined with magnesium peroxide nanoparticles was constructed. This nanosystem can be used for targeted PDT with a significantly enhanced therapeutic efficacy.
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Ling, Pinghua, Caihua Qian, Feng Gao, and Jianping Lei. "Enzyme-immobilized metal–organic framework nanosheets as tandem catalysts for the generation of nitric oxide." Chemical Communications 54, no. 79 (2018): 11176–79. http://dx.doi.org/10.1039/c8cc05068f.

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Fan, Yu Zhu, Lei Han, Shi Gang Liu, Ying Zhang, Hong Qun Luo, and Nian Bing Li. "A ratiometric optical strategy for bromide and iodide ion sensing based on target-induced competitive coordination of a metal–organic nanosystem." Journal of Materials Chemistry C 8, no. 33 (2020): 11517–24. http://dx.doi.org/10.1039/d0tc01983f.

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Ling, Danping, Haihong Li, Wensong Xi, et al. "Heterodimers made of metal–organic frameworks and upconversion nanoparticles for bioimaging and pH-responsive dual-drug delivery." Journal of Materials Chemistry B 8, no. 6 (2020): 1316–25. http://dx.doi.org/10.1039/c9tb02753j.

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Duan, Yan, Fanggui Ye, Yuanlin Huang, Yuemei Qin, Caimei He, and Shulin Zhao. "One-pot synthesis of a metal–organic framework-based drug carrier for intelligent glucose-responsive insulin delivery." Chemical Communications 54, no. 42 (2018): 5377–80. http://dx.doi.org/10.1039/c8cc02708k.

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A glucose-responsive metal–organic framework (MOF)-based insulin delivery nanosystem was developed via a one-pot process. The system relies on the MOF response to glucose stimulation and this can promote insulin delivery.
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Zhao, Qiu-ge, Jing Wang, Yu-peng Zhang, Jing Zhang, An-na Tang, and De-ming Kong. "A ZnO-gated porphyrinic metal–organic framework-based drug delivery system for targeted bimodal cancer therapy." Journal of Materials Chemistry B 6, no. 47 (2018): 7898–907. http://dx.doi.org/10.1039/c8tb02663g.

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Zeng, Zhanghua, Shin Mizukami, Katsumasa Fujita, and Kazuya Kikuchi. "An enzyme-responsive metal-enhanced near-infrared fluorescence sensor based on functionalized gold nanoparticles." Chemical Science 6, no. 8 (2015): 4934–39. http://dx.doi.org/10.1039/c5sc01850a.

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An enzyme-responsive NIR nanosystem based on MEF was fabricated by surface functionalization of gold nanoparticles. Sensors based on this strategy are promising for enzyme detection in early diagnostic imaging and in vivo applications.
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Rumpf, K., P. Granitzer, M. Albu, and P. Poelt. "Electrochemically Fabricated Silicon/Metal Hybrid Nanosystem with Tailored Magnetic Properties." Electrochemical and Solid-State Letters 13, no. 2 (2010): K15. http://dx.doi.org/10.1149/1.3269188.

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Riccardi, Claudia, Antonella Campanella, Daniela Montesarchio, Pompea Del Vecchio, Rosario Oliva, and Luigi Paduano. "Investigating the Interaction of an Anticancer Nucleolipidic Ru(III) Complex with Human Serum Proteins: A Spectroscopic Study." Molecules 28, no. 6 (2023): 2800. http://dx.doi.org/10.3390/molecules28062800.

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Ruthenium(III) complexes are very promising candidates as metal-based anticancer drugs, and several studies have supported the likely role of human serum proteins in the transport and selective delivery of Ru(III)-based compounds to tumor cells. Herein, the anticancer nanosystem composed of an amphiphilic nucleolipid incorporating a Ru(III) complex, which we named DoHuRu, embedded into the biocompatible cationic lipid DOTAP, was investigated as to its interaction with two human serum proteins thought to be involved in the mechanism of action of Ru(III)-based anticancer drugs, i.e., human serum
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Sun, Yun-Lei, and En-Jia Ye. "Low-frequency ac transport in silicene nanosystem with normal-metal electrodes." Japanese Journal of Applied Physics 56, no. 8 (2017): 085101. http://dx.doi.org/10.7567/jjap.56.085101.

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Dissertations / Theses on the topic "Metal nanosystem"

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Коротун, А. В., та А. О. Коваль. "Осциляції енергії Фермі сферичної металевої нанооболонки". Thesis, Сумський державний університет, 2017. http://essuir.sumdu.edu.ua/handle/123456789/64289.

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Чутливість оптичних властивостей металевих нанооболонок до навколишнього середовища робить їх привабливими для використання у хімічних та біологічних сенсорах. На даний момент найбільш активно нанооболонки використовуються у медицині. Експериментальний і теоретичний аналіз оптичних властивостей подібних систем концентрується передусім на вивченні плазмонного резонансу. При цьому поведінка енергії Фермі дає основний внесок у розмірні осциляції оптичних характеристик металевих наносистем. Тому задача знаходження енергії Фермі металевої нанооболонки є актуальною.
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Roukala, J. (Juho). "Magnetic resonance properties of metal-containing nanosystems." Doctoral thesis, University of Oulu, 2016. http://urn.fi/urn:isbn:9789526213279.

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Abstract This thesis presents computational first-principles investigations of nuclear magnetic resonance (NMR) parameters in metal-containing nanosystems. Special attention is paid to the relativistic effects observed in the vicinity of heavy elements. Small transition metal complexes are used to assess the feasibility of a quasirelativistic density functional theory (DFT) approach for calculating nuclear magnetic shielding tensors of increasingly heavy metal nuclei, followed by applications of the concept to larger systems. Nuclear magnetic shielding constants, shielding anisotropies, and ch
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Перекрестов, Вячеслав Іванович, Вячеслав Иванович Перекрестов, Viacheslav Ivanovych Perekrestov, et al. "Formation of Porous ZnO Nanosystems for Potential Use in Sensor Electronics." Thesis, Sumy State University, 2013. http://essuir.sumdu.edu.ua/handle/123456789/35193.

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The semiconducting ZnO is a very promising material for applications in UV light emitters, optical de-tectors, solar cells, piezoelectric transducers, transparent electronics, gas sensors etc. It is known that physical properties, and as a result areas of applications, are strongly determined by morphology and size of the material’s structural elements. Therefore, the development of a technology that allows formation of nanoporous metal oxide structures with a high surface to volume ratio is of great interest nowadays. The aim of this work was to develop technology for selective formation of p
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Baklanov, Aleksandr [Verfasser], Wilhelm [Akademischer Betreuer] Auwärter, Wilhelm [Gutachter] Auwärter, and Alexander [Gutachter] Holleitner. "Silicon and Porphyrins: Molecular Nanosystems on Silicene and Noble Metal Surfaces / Aleksandr Baklanov ; Gutachter: Wilhelm Auwärter, Alexander Holleitner ; Betreuer: Wilhelm Auwärter." München : Universitätsbibliothek der TU München, 2021. http://d-nb.info/1230985417/34.

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Bukauskas, Virginijus. "Application of scanning probe microscopy for development and investigation of gas sensitive nanosystems and hybrid structures integrated with the ultra-thin metal oxide." Doctoral thesis, Lithuanian Academic Libraries Network (LABT), 2010. http://vddb.laba.lt/obj/LT-eLABa-0001:E.02~2010~D_20101001_150357-00098.

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Modification of the properties of solid state structures, used for gas sensing is important task in making detection and measurement systems of volatile chemical compounds. These properties depend on material, inner structure and interaction with gas atmosphere. In hybrid materials (solid-biomolecular) biochemical recognition plays important role in gas sensing mechanism. In this work the methodologies of the SPM was applied for characterization of the local point and local area properties in the gas sensitive MO films with the nanoscaled thickness that can be used for nanosystems and hybrid m
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Bukauskas, Virginijus. "Dujoms jautrių hibridinių darinių ir nanosistemų integruotų metalo oksido plėvelėse kūrimas ir tyrimai Skenuojančio zondo mikroskopijos metodais." Doctoral thesis, Lithuanian Academic Libraries Network (LABT), 2010. http://vddb.laba.lt/obj/LT-eLABa-0001:E.02~2010~D_20101001_150411-33373.

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Kryptingas kietojo kūno darinių, naudojamų išorinio dujų poveikio detekcijai, savybių keitimas yra vienas iš aktualiausių uždavinių, sprendžiamų kuriant lakiųjų cheminių junginių poveikio atpažinimo ir matavimo sistemas. Šias savybes lemia darinių medžiaga, jų struktūra bei sąveikos su dujine aplinka ypatumai, kurie hibridiniuose dariniuose iš kietojo kūno ir biomolekulių gali būti lemiami dar ir biocheminiu atpažinimu. Šiame darbe tiriami dujoms jautrūs hibridiniai dariniai ir nanosistemos, integruotos metalo oksido plėvelėse, Skenuojančio zondo mikroskopijos (SZM) metodais. Disertacijoje sus
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Dacosta, Fernandes Benoit. "Etude des propriétés électroniques et vibrationnelles de nano-objets métalliques et hybrides par spectroscopie femtoseconde." Thesis, Bordeaux, 2015. http://www.theses.fr/2015BORD0047/document.

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Ce travail a porté sur l’étude expérimentale de la dynamique électronique et vibrationnelle de nano-objets métalliques et hybrides par spectroscopie pompe-sonde femtoseconde. L’étude de la dynamique des échanges d’énergie électrons-réseau dans des systèmes métalliques bidimensionnels nous a permis de mettre en évidence une accélération du transfert d’énergie entre électrons et phonons due au confinement. Cette accélération est gouvernée par la plus petite dimension des nano-objets étudiés (nano-triangles d’argent 2D) lorsque celle-ci devient inférieure à environ 10 nm. Nous avons aussi étudié
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Корнющенко, Ганна Сергіївна, Анна Сергеевна Корнющенко та Hanna Serhiivna Korniushchenko. "Структуроутворення і фізичні властивості близько- рівноважних металевих, оксидних та багатокомпонентних конденсатів з нанорозмірними елементами". Thesis, Сумський державний університет, 2021. https://essuir.sumdu.edu.ua/handle/123456789/86325.

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Дисертаційна робота присвячена дослідженню процессів фазо- та структуроутворення близько-рівноважних конденсатів окремих металів (Zn, Cu, Ni, Cr і Al), їх оксидів (ZnO, NiO і CuO), фрактально-перколяційних наносистем (ZnO, ZnO/NiO та ZnO/CuO), а також багатоелементних систем за наявності різних металів (W, Ta, Нf, Ti, Mo, Сr, Zr, Al, Со і Ni) і вуглецю. Основним результатом роботи є вивчення трансформації селективних процесів фазоутворення й просторово розподіленого росту конденсатів за умов осадження пари під час наближення системи плазма–конденсат або хімічно активне середовище–конденсат до
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Books on the topic "Metal nanosystem"

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Deleonibus, Simon. Integrated Nanodevice and Nanosystem Fabrication: Breakthroughs and Alternatives. Jenny Stanford Publishing, 2017.

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Deleonibus, Simon. Integrated Nanodevice and Nanosystem Fabrication: Breakthroughs and Alternatives. Jenny Stanford Publishing, 2017.

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Integrated Nanodevice and Nanosystem Fabrication: Breakthroughs and Alternatives. Taylor & Francis Group, 2017.

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Deleonibus, Simon. Integrated Nanodevice and Nanosystem Fabrication: Breakthroughs and Alternatives. Jenny Stanford Publishing, 2017.

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Deleonibus, Simon. Integrated Nanodevice and Nanosystem Fabrication: Breakthroughs and Alternatives. Jenny Stanford Publishing, 2017.

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Emerging Devices for Low-Power and High-performance Nanosystems. Taylor & Francis Group, 2018.

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(Editor), Henry Baltes, Oliver Brand (Editor), Gary K. Fedder (Editor), Christofer Hierold (Editor), Jan G. Korvink (Editor), and Osamu Tabata (Editor), eds. CMOS-MEMS: Advanced Micro and Nanosystems. Wiley-VCH, 2005.

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Deleonibus, Simon. Emerging Devices for Low-Power and High-Performance Nanosystems: Physics, Novel Functions, and Data Processing. Jenny Stanford Publishing, 2018.

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Deleonibus, Simon. Emerging Devices for Low-Power and High-Performance Nanosystems: Physics, Novel Functions, and Data Processing. Jenny Stanford Publishing, 2018.

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Prakash Rai, Dibya, ed. Advanced Materials and Nano Systems: Theory and Experiment (Part-1). BENTHAM SCIENCE PUBLISHERS, 2022. http://dx.doi.org/10.2174/97898150507451220101.

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The discovery of new materials and the manipulation of their exotic properties for device fabrication is crucial for advancing technology. Nanoscience and the creation of nanomaterials have taken materials science and electronics to new heights for the benefit of mankind. Advanced Materials and Nanosystems: Theory and Experiment cover several topics of nanoscience research. The compiled chapters aim to update students, teachers, and scientists by highlighting modern developments in materials science theory and experiments. The significant role of new materials in future technology is also demo
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Book chapters on the topic "Metal nanosystem"

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Brust, Mathias, Yun-Ping Liu, Thomas O. Hutchinson, and Christopher J. Kiely. "Templates for Metal Nanowire Self-Assembly." In Frontiers of Multifunctional Nanosystems. Springer Netherlands, 2002. http://dx.doi.org/10.1007/978-94-010-0341-4_10.

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Gurin, V. S. "Molecular Orbital Simulation of Semiconductor and Metal Clusters." In Frontiers of Multifunctional Nanosystems. Springer Netherlands, 2002. http://dx.doi.org/10.1007/978-94-010-0341-4_3.

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Palpant, Bruno. "Optical Generation and Detection of Heat Exchanges in Metal–Dielectric Nanocomposites." In Thermal Nanosystems and Nanomaterials. Springer Berlin Heidelberg, 2009. http://dx.doi.org/10.1007/978-3-642-04258-4_6.

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Buzaneva, E., A. Gorchinskiy, P. Scharff, et al. "DNA, DNA/Metal Nanoparticles, DNA/Nanocarbon and Macrocyclic Metal Complex/Fullerene Molecular Building Blocks for Nanosystems: Electronics and Sensing." In Frontiers of Multifunctional Integrated Nanosystems. Springer Netherlands, 2004. http://dx.doi.org/10.1007/1-4020-2173-9_23.

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Žitko, R. "Magnetization Curves for Anisotropic Magnetic Impurities Adsorbed on a Normal Metal Substrate." In Physical Properties of Nanosystems. Springer Netherlands, 2010. http://dx.doi.org/10.1007/978-94-007-0044-4_20.

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Figueiredo, Sara, and Carlos F. G. C. Geraldes. "Metal-Based Chelates and Nanosystems as MRI Contrast Agents." In Advances in Organometallic Chemistry and Catalysis. John Wiley & Sons, Inc., 2013. http://dx.doi.org/10.1002/9781118742952.ch46.

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Tyvonenko, Artem, Tetiana Dontsova, Olena Yanushevska, and Oleksii Skip. "Ways to Create Promising Metal Oxide Catalytic Nanosystems for Selective Reduction of Nitrogen Oxides." In Springer Proceedings in Physics. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-74800-5_20.

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Cronin, Leroy. "Molecular Metal Oxides and Clusters as Building Blocks for Functional Nanoscale Architectures and Potential Nanosystems." In Tomorrow's Chemistry Today. Wiley-VCH Verlag GmbH & Co. KGaA, 2010. http://dx.doi.org/10.1002/9783527628902.ch2.

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Rapacioli, Mathias, Fernand Spiegelman, and Nathalie Tarrat. "Chapter 5. DFTB and Hybrid-DFTB Schemes: Application to Metal Nanosystems, Isolated and in Environments." In Theoretical and Computational Chemistry Series. Royal Society of Chemistry, 2021. http://dx.doi.org/10.1039/9781839164668-00144.

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Huong Nguyen, Thi, Minh Thanh Vu, and Ngoc Son Nguyen. "Hybrid Magnetic-Semiconductor Oxides Nanomaterial: Green Synthesis and Environmental Catalytic." In Photocatalysts - New Perspectives [Working Title]. IntechOpen, 2022. http://dx.doi.org/10.5772/intechopen.107031.

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Semiconductor oxide nanoparticles with various properties are used in applications such as photocatalysis, lithium-ion batteries, antimicrobial materials, magnetic and antibacterial materials, sensors, thermally conductive and anti-ferromagnetic films and photocatalysis. Coprecipitation, sol-gel, electrospray synthesis, laser ablation, hydrothermal and green synthesis methods have been developed for the synthesis of semiconductor oxide nanoparticles. The photocatalytic treatment method is environmentally friendly, thorough, and has high efficiency. Hybrid magnetic-Semiconductor oxide nanoparti
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Conference papers on the topic "Metal nanosystem"

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Das, Biswajit. "Nanosystem Implementation Using Nanochannels of Nanoporous Membranes." In ASME 2007 5th International Conference on Nanochannels, Microchannels, and Minichannels. ASMEDC, 2007. http://dx.doi.org/10.1115/icnmm2007-30147.

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We are currently developing a novel fabrication technique for the implementation of nanosystems utilizing the nanochannels in nanoporous membranes. The technique is CMOS-compatible and has the potential for volume commercial manufacturing. The technique is based on the anodization, or electrolytic oxidation, of a thin film of aluminum to form a nanoporous alumina membrane, which is used as a guide to implement the nanosystems. The underlying principle of the fabrication technique is that when aluminum is anodized in a suitable acidic electrolyte under controlled conditions, it oxidizes to form
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Bulavinets, Tetiana, Iryna Yaremchuk, Adriana Barylyak, and Yaroslav Bobitski. "Photocatalytic Properties of Metal-Semiconductor Nanosystems." In 2020 IEEE 40th International Conference on Electronics and Nanotechnology (ELNANO). IEEE, 2020. http://dx.doi.org/10.1109/elnano50318.2020.9088798.

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Haque, Aman, and Taher Saif. "Is There a Critical Size in Nano Grained Metals for Ductile to Brittle Transition?" In ASME 2004 3rd Integrated Nanosystems Conference. ASMEDC, 2004. http://dx.doi.org/10.1115/nano2004-46097.

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Nanoscale metal films and electrodes are extensively used in today’s micro and nano electronics as well as nano mechanical systems. These metal structures are usually polycrystalline in nature with nano scale grains connected to each other by grain boundaries. The small size offers large grain boundary to volume ratio that is likely to affect the metal properties significantly. Here, we discuss the role of grain size and boundaries in determining the mechanical behavior of metals, such as elasticity and yielding.
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Harutyunyan, Hayk, and Gary P. Wiederrecht. "Femtosecond response of metal – oxide hybrid nanosystems." In Frontiers in Optics. OSA, 2014. http://dx.doi.org/10.1364/fio.2014.ftu1e.8.

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Tsakalakos, Loucas, Lauraine Denault, Michael Larsen, et al. "Mo2C Nanowires and Ribbons on Si via Two-Step Vapor Phase Growth." In ASME 2004 3rd Integrated Nanosystems Conference. ASMEDC, 2004. http://dx.doi.org/10.1115/nano2004-46098.

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Transition metal carbides are an interesting class of electronic materials owing to their high electrical conductivity at room temperature, which is only slightly lower than that of their constituent transition metal elements. For example, the room temperature electrical resistivity of bulk Mo2C is ∼70 μΩ-cm compared to that of Mo (4.85 μΩ-cm), whereas that of NbC is ∼50 μΩ-cm as compared to 15.2 μΩ-cm for Nb. Indeed, the temperature dependent resistivity of many transition metal carbides suggests metallic-like conduction. Furthermore, certain transition metal carbides are known to become supe
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Konishi, Y., K. Ohno, N. Saitoh, T. Nomura, and S. Nagamine. "Microbial synthesis of noble metal nanoparticles using the Fe(III)-reducing bacterium shewanella algae." In 2006 Bio Micro and Nanosystems Conference. IEEE, 2006. http://dx.doi.org/10.1109/bmn.2006.330876.

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Liu, Cuirong, Qingsen Meng та Lifang Hu. "Joining Mechanism of Static Bonding Between β"-Al2O3 and L2-Aluminum". У 2007 First International Conference on Integration and Commercialization of Micro and Nanosystems. ASMEDC, 2007. http://dx.doi.org/10.1115/mnc2007-21576.

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Electrostatic bonding, as a special method of solid-state diffusion bonding for the ceramics and the metals, can be performed at low temperature quickly and conveniently. And It’s suitable for making micro electromechanical system (MEMS), such as micro-devices, solar cell and micro-sensors. So Electrostatic bonding process mainly is used to bond the fast-ion conductivity materials and the metals. The bonding technique of functionally materials and metals had a significant role in the manufacture of MEMS. In this paper, the L2 aluminum film and β"-Al2O3 sheet were bonded by the electrostatic bo
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Nara, Matsunori. "Invention Using a Liposome of a Bio-Micromachine." In ASME 4th Integrated Nanosystems Conference. ASMEDC, 2005. http://dx.doi.org/10.1115/nano2005-87031.

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It is thought that a minus hydrogen ion is useful to the apotosis of a mitochondria and prevention of a necrosis, or prevention of the illness resulting from the oxygen radical in a human body. So, in this research, examination about the possibility and its practical use method of production of the hydrogen ion by which it was minus electrified was performed. First, the lipid bilayer as a medicine transporter of DDS (Drug Delivery System) was produced using the supercritical fluid. Next, experimental examination was performed for the purpose of enclosing the substance for hydrogen ion generati
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Fu, Ceji, and Wenchang Tan. "Near-Field Radiative Heat Transfer Between Materials With Dielectric Coatings." In 2008 Second International Conference on Integration and Commercialization of Micro and Nanosystems. ASMEDC, 2008. http://dx.doi.org/10.1115/micronano2008-70279.

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Radiative heat transfer between materials with dielectric coatings is numerically studied based on the fluctuational electrodynamics and the fluctuation-dissipation theorem. The results show that whereas a dielectric coating (SiC) enhances the far-field radiative heat transfer between two bulk metals, it will suppress the radiative heat transfer in the near-field and the suppression is only for the s-wave contribution. The total radiative heat flux continuously decreases as the coating thickness increases up to 1 μm. A further increase in the coating thickness will cause the total radiative he
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Kornyushchenko, A. S., V. M. Latyshev, V. I. Perekrestov, and Yu O. Rybalko. "Formation of porous metal nanosystems using direct and reverce flows of DC magnetron sputtering." In 2017 IEEE 7th International Conference "Nanomaterials: Application & Properties" (NAP). IEEE, 2017. http://dx.doi.org/10.1109/nap.2017.8190376.

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