Academic literature on the topic 'Tellurure de nickel'

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Journal articles on the topic "Tellurure de nickel":

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Rustembekov, K. T., M. S. Kasymova, Ye V. Minayeva, and A. Zh Bekturganova. "Lanthanum-magnesium-nickel tellurite: thermodynamic and electrophysical characteristics." Bulletin of the Karaganda University. "Chemistry" series 94, no. 2 (June 28, 2019): 69–75. http://dx.doi.org/10.31489/2019ch2/69-75.

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Zhang, Shiyi, Dongzhi Yang, Ming Zhang, Yaxin Liu, Ting Xu, Jing Yang, and Zhong-Zhen Yu. "Synthesis of novel bimetallic nickel cobalt telluride nanotubes on nickel foam for high-performance hybrid supercapacitors." Inorganic Chemistry Frontiers 7, no. 2 (2020): 477–86. http://dx.doi.org/10.1039/c9qi01395d.

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Novel bimetallic nickel cobalt telluride nanotubes are grown on nickel foam by solvothermal synthesis and ion-exchange reaction for constructing self-standing hybrid supercapacitor electrodes with high specific capacity and electrical conductivity.
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Mu, Yannan, Qian Li, Pin Lv, Yanli Chen, Dong Ding, Shi Su, Liying Zhou, Wuyou Fu, and Haibin Yang. "Fabrication of NiTe films by transformed electrodeposited Te thin films on Ni foils and their electrical properties." RSC Adv. 4, no. 97 (2014): 54713–18. http://dx.doi.org/10.1039/c4ra11246f.

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Radisavljević, Ivana, Nikola Novaković, Nenad Ivanović, Nebojša Romčević, Miodrag Manasijević, and Heinz-Eberhard Mahnke. "XAFS studies of nickel-doped lead telluride." Physica B: Condensed Matter 404, no. 23-24 (December 2009): 5032–34. http://dx.doi.org/10.1016/j.physb.2009.08.209.

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Yadava, Y. P., and R. A. Singh. "On the electrical transport in nickel telluride." Journal of Materials Science Letters 4, no. 11 (November 1985): 1421–24. http://dx.doi.org/10.1007/bf00720118.

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Deiseroth, Hans-Jörg, Filip Spirovski, Christof Reiner, and Marc Schlosser. "Crystal structures of nickel germanium selenide, Ni5.45GeSe2, and nickel germanium telluride, Ni5.45GeTe2." Zeitschrift für Kristallographie - New Crystal Structures 222, no. 3 (September 2007): 171–72. http://dx.doi.org/10.1524/ncrs.2007.0071.

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De Meester, P., and J. Naud. "Contribution à L'Étude des Tellurures de Cobalt et de Nickel." Bulletin des Sociétés Chimiques Belges 83, no. 7-8 (September 2, 2010): 219–25. http://dx.doi.org/10.1002/bscb.19740830702.

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Numan, Mohamad, Md Salman Khan, and Subham Majumdar. "Vacancy induced mixed valence state in nickel tellurate Ni3TeO6." Materials Today: Proceedings 57 (2022): 151–56. http://dx.doi.org/10.1016/j.matpr.2022.02.202.

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Lei, C., K. S. Ryder, E. Koukharenko, M. Burton, and Iris S. Nandhakumar. "Electrochemical deposition of bismuth telluride thick layers onto nickel." Electrochemistry Communications 66 (May 2016): 1–4. http://dx.doi.org/10.1016/j.elecom.2016.02.005.

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Clerjaud, B., A. Gelineau, F. Gendron, C. Naud, and C. Porte. "Study of the deep nickel acceptor in zinc telluride." Journal of Crystal Growth 72, no. 1-2 (July 1985): 351–54. http://dx.doi.org/10.1016/0022-0248(85)90171-x.

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Dissertations / Theses on the topic "Tellurure de nickel":

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Ksila, Wafa. "Préparation, caractérisation et réactivité de catalyseurs xerogels et aerogels à base de zirconium, d’aluminium et de porosité contrôlée pour les réactions d’estérification et d’hydrogénation." Electronic Thesis or Diss., Université de Lille (2018-2021), 2021. http://www.theses.fr/2021LILUR039.

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Les oxydes de zirconium et d’aluminium sont des matériaux de grande stabilité thermique dans des conditions différentes et ont une surface dotée de sites acido-basiques modulables. La modification de ces oxydes par un oxo-anion, par une fonction acide et/ou métallique leur donne plus de stabilité, inhibe le frittage et développe l’acidité de leur surface et par suite ils peuvent être utilisés dans plusieurs réactions catalytiques en tant que phase active ou support.Les travaux de cette thèse portent sur la synthèse, la caractérisation et la valorisation de deux types de catalyseurs xerogels et aerogels à base d’oxydes de zirconium et d’aluminium. Nous avons fait le choix d’utiliser l’acide tellurique comme modulateur de l’acidité des supports à base de zircone et d’alumine et d’associer le nickel à l’acide tellurique pour faire des phases de tellure de nickel sur ces supports permettant la réaction d’isomérisation.Dans un premier volet, des catalyseurs xerogels et aerogels à base de zircone et d’alumine dopées par l’acide tellurique ont été synthétisés par voie « sol-gel » puis caractérisés et valorisés dans la réaction d’estérification de l’acide acétique par l’alcool benzylique comme réaction modèle pour la synthèse de biodiesel. Une étude cinétique et mécanistique ainsi que la détermination des grandeurs thermodynamiques pour la réaction d’estérification ont été réalisées en présence du catalyseur ayant les meilleures performances catalytiques.Le second volet de cette thèse porte sur la synthèse des catalyseurs xerogels et aerogels à base de zircone et d’alumine dopées par l’acide tellurique et les nitrates de nickel en une seule étape, toujours synthétisés par voie « sol-gel ». Ces catalyseurs ont été caractérisés puis testés dans la réaction d’hydrogénation isomérisation du 1-hexene comme réaction modèle pour la reformulation d’essence. Nous montrerons que la présence de nickel dans la préparation empêche la formation d’une phase Zr-Te, caractérisée sur le support seul modifié par l’acide tellurique
Zirconium and aluminum oxides are materials of great thermal stability under different conditions and have a surface with modulable acid-base sites. The modification of these oxides by an oxo-anion, by an acid and / or metallic function gives them more stability, inhibits sintering and develops the acidity of their surface and consequently they can be used in several catalytic reactions as active phase or support.The work of this thesis focuses on the synthesis, characterization and upgrading of two types of xerogels and aerogels catalysts based on zirconium and aluminum oxides. Telluric acid was chosen as a modulator of the acidity of supports based on zirconia and alumina. Nickel was combined with telluric acid to make nickel tellurium phases on these supports, allowing the isomerization reaction.In a first part, xerogels and aerogels catalysts based on zirconia and alumina doped with telluric acid were synthesized by the “sol-gel” route then characterized and tested in the esterification reaction of acetic acid by benzyl alcohol as a model reaction for the synthesis of biodiesel. A kinetic and mechanistic study as well as the determination of the thermodynamic quantities for the esterification reaction were carried out in the presence of the catalyst having the best catalytic performance.The second part of this thesis focuses on the synthesis of zirconia and alumina-based xerogels and aerogels catalysts doped with telluric acid and nickel nitrates in one-pot, always synthesized by the "sol-gel" route. These catalysts were characterized and then tested in the isomerization hydrogenation reaction of 1-hexene as a model reaction for gasoline reformulation. We will show that the presence of nickel in the preparation prevents the formation of a Zr-Te phase, characterized on the support alone modified by telluric acid
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Malik, M. S. "Comparative studies of the electronic properties of copper tellurite glasses containing nickel, cobalt and lutetium oxides and cupric chloride." Thesis, Brunel University, 1989. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.235019.

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Liu, Jianfei. "Selective Deposition of Metallic and Semiconductor Materials onto DNA Templates for Nanofabrication." BYU ScholarsArchive, 2011. https://scholarsarchive.byu.edu/etd/3143.

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This work examines the selective deposition of metallic and semiconductor materials onto DNA templates for the fabrication of nanodevices. DNA origami provides a simple and robust method for folding DNA into a variety of shapes and patterns and makes it possible to create the complex templates needed for nanodevices, such as nanoelectronic circuits, plasmonics, and nanosensors. Metallization of DNA origami templates is essential for the fabrication of such nanodevices. In addition, selective deposition of semiconductor materials onto the DNA template is of importance for making many nanodevices such as nanocircuits. Metallization of DNA origami presents several challenges beyond those associated with the metallization of other DNA templates such as λ-DNA. All of these challenges were addressed in this study. DNA origami templates were seeded with Ag and then plated with Au via electroless deposition. Selective continuous metal deposition was achieved, with an average metallized height as small as 32 nm. The structure of T-shaped DNA origami was also retained after metallization. Following the metallization of complete origami, site-specific metallization of branched DNA origami was also demonstrated. To achieve this, staple strands at select locations on origami were replaced with staple strands modified with binding sites at the end. These binding sites then attached to thiolated DNA coated Au nanoparticles through base pairing. The continuous Au nanowires formed at designated sites on DNA origami after Au plating had an average width of 33 nm, with the smallest ones ~20 nm wide. The continuity of nanowires was verified by conductivity tests- the only tests of this nature of which I am aware. Moreover, predesigned sites on "circuit-shaped" DNA origami were successfully metallized. The selective deposition of a variety of materials onto DNA templates for the formation of continuous DNA-templated nanowires was also demonstrated. Specifically, an electroless Ni plating solution was developed to enable the fabrication of uniform and continuous DNA-templated Ni nanowires. Tests showed that these DNA-templated Ni nanowires were conductive. Moreover, continuous DNA-templated Bi2Te3 and/or Te nanowires have been fabricated through galvanic displacement of DNA-templated Ni and Cu nanowires. Altogether, these results represent important progress toward the realization of DNA-templated nanofabrication.
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Tseng, Shao-Yu, and 曾紹瑜. "Diffusion Barrier Effect of Nickel and Cobalt Layers between Bismuth Telluride and Copper and Their Influence on Thermoelectric Properties." Thesis, 2011. http://ndltd.ncl.edu.tw/handle/44569422096285933313.

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Abstract:
碩士
國立中興大學
材料科學與工程學系所
99
In this study, Ni、Co diffusion barriers and Cu film were deposited onto Bi2Te3 bulk by RF magnetron sputter. The cross section of sample are Cu/Ni/Bi2Te3/Ni/Cu and Cu/Co/Bi2Te3/Co/Cu, respectively. Then Annealed at 200°C for 1、2、3、4、16 hours and 1、4、8、16 hours. The crystallized films were 100 nm, respectively., Enhanced crystallization and the compounds produced after heat treatment. The characteristic peak of NiTe2 were (011) and (002) at 31.86°and 33.3°. Ni diffusion barrier failed after annealed 4 hours, as obtained using depth profiling. Co diffusion barrier formed a more stable interface with Bi2Te3, even though annealed after 16 hours. The electric conductivity of 290±2 S/cm, the optimum Seebeck coefficient of 71±1 μV/K, and the optimum power factor of 1.48×10-4 W/K2m for Ni diffusion barrier after annealed 1 hour. The electric conductivity of 381±5 S/cm, the optimum Seebeck coefficient of 51±1.8 μV/K, and the optimum power factor of 9.94×10-5 W/K2m for Co diffusion barrier after annealed 1 hour.

Books on the topic "Tellurure de nickel":

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Malik, Mohammad Suleman. Comparative studies of the electronic properties of copper tellurite glasses containing nickel, cobalt and lutetium oxides and cupric chloride. Uxbridge: Brunel University, 1989.

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Book chapters on the topic "Tellurure de nickel":

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Pardasani, R. T., and P. Pardasani. "Magnetic properties of nickel(II) tellurite complex." In Magnetic Properties of Paramagnetic Compounds, Magnetic Susceptibility Data, Volume 3, 17–18. Berlin, Heidelberg: Springer Berlin Heidelberg, 2021. http://dx.doi.org/10.1007/978-3-662-62470-8_2.

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Farisya Nadira, S. K., H. Nurhafizah, N. H. Ahmad, and Nurul Nadia Adnan. "Structural Properties of Lithium-Niobium-Calcium Tellurite Glass Doped with Nickel Oxide: Computational Analysis." In Springer Proceedings in Physics, 175–85. Singapore: Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-16-8903-1_18.

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Surabhi, Sudeshna, Kumar Anurag, and S. R. Kumar. "Development and Characterization of As-Deposited CdTe Thin Films in a Non-Aqueous Medium." In Diversity and Applications of New Age Nanoparticles, 201–19. IGI Global, 2023. http://dx.doi.org/10.4018/978-1-6684-7358-0.ch008.

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Cadmium telluride (CdTe) is a binary II-VI direct band gap semiconducting material. Cadmium telluride is a promising electrochemical and photovoltaic material for thin film solar cells. It shows both p and n type conductivity. A nanocrystalline thin film of CdTe was deposited on nickel plate by chemical bath deposition method containing 0.01M Cadmium acetate and 0.02M tellurium dioxide. The structural, compositional, and optical analysis were studied by X-ray diffraction (XRD), energy-dispersive X-ray spectroscopy (EDS), scanning electron microscope (SEM), fourier transform infrared spectroscopy (FTIR) and photoluminescence (PL).The diffraction peak observed at 2=23.59° with (111) plane indicate the crystalline phase of CdTe film. The average crystalline size is measured to be 7nm.Compositional analysis reveals the presence of both Cd and Te elements. The EDS spectroscopy shows the ratio of Cd and Te is1:2 in case of as deposited film. The photoluminescence peak is observed at 471nm.
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Milward, John. "The “Birth” of Americana." In Americanaland, 210–27. University of Illinois Press, 2021. http://dx.doi.org/10.5622/illinois/9780252043918.003.0016.

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This chapter looks at Alison Krauss, who began playing classical violin at the age of five years and turned to bluegrass after winning her first fiddle contest aged eight. Krauss won her first Grammy Award for the title song of her 1990 album I've Got That Old Feeling. By 2019, she had won twenty-seven Grammys, fourteen of them with Union Station. Krauss's success was an anomaly in the relatively cloistered world of bluegrass, where the big time meant a contract with an independent label such as Rounder or Sugar Hill and gigs at the Telluride Bluegrass Festival and Merlefest, an annual roots music event in North Carolina. Festival attendees often bring their own instruments for campground jam sessions, while the pros network backstage. That was how Krauss became acquainted with Nickel Creek, a young bluegrass trio consisting of Chris Thile (mandolin) and siblings Sara Watkins (fiddle) and Sean Watkins (guitar). Krauss produced the trio's self-titled 2000 album, an influential success that, though grounded in bluegrass, also incorporated elements of jazz, classical, folk, and rock. Americana lived in this music, and the young players would become stars of the new genre.
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Rao, Y. K., and Y. Do. "Diffusion in quasi-steady-state irreversible systems; epitaxy of nickel telluride from halide vapour phase." In High-Temperature Oxidation and Sulphidation Processes, 55–69. Elsevier, 1990. http://dx.doi.org/10.1016/b978-0-08-040423-3.50009-4.

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Conference papers on the topic "Tellurure de nickel":

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Bastola, Ebin, Khagendra P. Bhandari, and Randy J. Ellingson. "Solution-Processed Nickel-Alloyed Iron Pyrite Thin Film as Hole Transport Layer in Cadmium Telluride Solar Cells." In 2017 IEEE 44th Photovoltaic Specialists Conference (PVSC). IEEE, 2017. http://dx.doi.org/10.1109/pvsc.2017.8366488.

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Headings, Leon M., Gregory N. Washington, Shawn Midlam-Mohler, and Joseph P. Heremans. "High Temperature Multi-Fuel Combustion-Powered Thermoelectric Auxiliary Power Unit." In ASME 2009 Conference on Smart Materials, Adaptive Structures and Intelligent Systems. ASMEDC, 2009. http://dx.doi.org/10.1115/smasis2009-1290.

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With rising worldwide energy demands, there is a growing need for technologies which are able to utilize alternative forms and sources of energy as well as to reduce consumption. While energy storage technologies are rapidly advancing, they are not yet capable of matching the energy densities of combustible fuels. The internal combustion engine (ICE), coupled with a generator, is the predominant method of converting this chemical energy into electrical energy, yet the mechanical nature of this system presents performance limitations. An alternative being developed here is a combustion-powered thermoelectric generator (C-TEG) to directly convert the heat released from combustion into electricity. The solid-state nature of thermoelectric (TE) devices provides the attractive inherent benefits of reliability, fuel flexibility, controllability, and potential for power densities exceeding that of ICE/generator systems. While low material and device efficiencies have thus far limited the use of TEGs to niche applications, recently developed materials have more than doubled the TE figure of merit, a material parameter strongly influencing efficiency. The rapid rate of TE material advancements merits the parallel development of device technologies. Opportunities for a durable, multi-fuel, high power density generator make C-TEGs potential candidates for many consumer, industrial, and military power applications including automotive auxiliary power. Within the automotive field, C-TEGs may be applied in hybrid-electric vehicles to provide power during engine cycling or in conjunction with a TE waste heat recovery system to provide power on demand. With sufficient improvements in efficiency, C-TEGs may be used in plug-in hybrid-electric vehicles where the C-TEG serves as the range extender in lieu of an ICE/generator system. Another application is to provide auxiliary power in commercial vehicles. In this research, a baseline prototype was first constructed with a conventional heat exchange configuration, a commercial bismuth telluride module (maximum 225 °C), and a novel fuel atomizer. This prototype was used to develop and validate a computer simulator, identify the greatest opportunities for improvement, validate the use of the fuel atomizer with diesel fuel for TE power generation, and provide a baseline performance with which to compare system improvements. Subsequent improvements were made to increase combustion efficiency, reduce thermal losses, and characterize the heat exchangers at 500 °C for accurate simulation of the system performance with high performance lead telluride modules. In addition, multiple fuels were tested to verify multi-fuel capability and performance, and the use of a Pt/Pd combustion catalyst was tested to quantify improvements in heat exchange effectiveness.

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