Academic literature on the topic 'Molybdenum Thin Films'
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Journal articles on the topic "Molybdenum Thin Films"
Navrátil, Vladislav, and Tomáš Šikola. "Microhardness of thin molybdenum films." Materials Science and Engineering: A 234-236 (August 1997): 390–92. http://dx.doi.org/10.1016/s0921-5093(97)00158-5.
Full textGurbanova, U. M., Z. S. Safaraliyeva, N. R. Abishova, R. G. Huseynova, and D. B. Tagiyev. "MATHEMATICAL MODELING THE ELECTROCHEMICAL DEPOSITION PROCESS OF Ni–Mo THIN FILMS." Azerbaijan Chemical Journal, no. 3 (September 28, 2021): 6–11. http://dx.doi.org/10.32737/0005-2531-2021-3-6-11.
Full textUno, Takehiko, and Kota Onuki. "Properties of Molybdenum Trioxide Thin Films." Japanese Journal of Applied Physics 24, S2 (January 1, 1985): 419. http://dx.doi.org/10.7567/jjaps.24s2.419.
Full textBosworth, D., S. L. Sahonta, R. H. Hadfield, and Z. H. Barber. "Amorphous molybdenum silicon superconducting thin films." AIP Advances 5, no. 8 (August 2015): 087106. http://dx.doi.org/10.1063/1.4928285.
Full textMattern, N., W. Pitschke, and S. Doyle. "Structure of molybdenum sulphide thin films." Acta Crystallographica Section A Foundations of Crystallography 49, s1 (August 21, 1993): c327—c328. http://dx.doi.org/10.1107/s010876737809087x.
Full textDivigalpitiya, W. M. Ranjith, S. Roy Morrison, and R. F. Frindt. "Thin oriented films of molybdenum disulphide." Thin Solid Films 186, no. 1 (April 1990): 177–92. http://dx.doi.org/10.1016/0040-6090(90)90511-b.
Full textWang, Zhouling, Wenwu Wang, Ya Yang, Wei Li, Lianghuan Feng, Jingquan Zhang, Lili Wu, and Guanggen Zeng. "The Structure and Stability of Molybdenum Ditelluride Thin Films." International Journal of Photoenergy 2014 (2014): 1–6. http://dx.doi.org/10.1155/2014/956083.
Full textChen, Shih-Fan, Shea-Jue Wang, Win-Der Lee, Ming-Hong Chen, Chao-Nan Wei, and Huy-Yun Y. Bor. "Preparation and Characterization of Molybdenum Thin Films by Direct-Current Magnetron Sputtering." Atlas Journal of Materials Science 2, no. 1 (June 14, 2017): 54–59. http://dx.doi.org/10.5147/ajms.v2i1.123.
Full textKrishnan, Rahul, Michael Riley, Sabrina Lee, and Toh-Ming Lu. "Vertically aligned biaxially textured molybdenum thin films." Journal of Applied Physics 110, no. 6 (September 15, 2011): 064311. http://dx.doi.org/10.1063/1.3638452.
Full textBaskaran, R., A. V. Thanikai Arasu, E. P. Amaladass, L. S. Vaidhyanathan, and D. K. Baisnab. "Superconducting fluctuations in molybdenum nitride thin films." Physica C: Superconductivity and its Applications 545 (February 2018): 5–9. http://dx.doi.org/10.1016/j.physc.2017.11.006.
Full textDissertations / Theses on the topic "Molybdenum Thin Films"
Rickman, Sarah. "Growth and characterization of molybdenum disulfide, molybdenum diselenide, and molybdenum(sulfide, selenide) formed between molybdenum and copper indium(sulfide, selenide) during growth." Access to citation, abstract and download form provided by ProQuest Information and Learning Company; downloadable PDF file 0.94 Mb., 85 p, 2006. http://gateway.proquest.com/openurl?url_ver=Z39.88-2004&res_dat=xri:pqdiss&rft_val_fmt=info:ofi/fmt:kev:mtx:dissertation&rft_dat=xri:pqdiss:1435848.
Full textKaye, Simon Peter. "Ion-assisted deposition of molybdenum disulphide films." Thesis, University of Salford, 1993. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.238835.
Full textWang, Yimin. "Reactive Sputter Deposition of Molybdenum Nitride Thin Films." University of Cincinnati / OhioLINK, 2002. http://rave.ohiolink.edu/etdc/view?acc_num=ucin1025108562.
Full textGross, Carl Morris III. "Growth and Characterization of Molybdenum Disulfide Thin Films." Wright State University / OhioLINK, 2016. http://rave.ohiolink.edu/etdc/view?acc_num=wright1464363549.
Full textCormier, Pierre Richard Sébastien. "Secondary electron emission properties of molybdenum disulfide thin films." Thesis, National Library of Canada = Bibliothèque nationale du Canada, 1998. http://www.collectionscanada.ca/obj/s4/f2/dsk3/ftp04/mq31189.pdf.
Full textGuimond, Sebastien. "Vanadium and molybdenum oxide thin films on Au(111)." Doctoral thesis, Humboldt-Universität zu Berlin, Mathematisch-Naturwissenschaftliche Fakultät I, 2009. http://dx.doi.org/10.18452/15999.
Full textThe growth and the surface structure of well-ordered V2O3, V2O5 and MoO3 thin films have been investigated in this work. These films are seen as model systems for the study of ele-mentary reaction steps occurring on vanadia and molybdena-based selective oxidation cata-lysts. It is shown that well-ordered V2O3(0001) thin films can be prepared on Au(111). The films are terminated by vanadyl groups which are not part of the V2O3 bulk structure. Elec-tron irradiation specifically removes the oxygen atoms of the vanadyl groups, resulting in a V-terminated surface. The fraction of removed vanadyl groups is controlled by the electron dose. Such surfaces constitute interesting models to probe the relative role of both the vanadyl groups and the undercoordinated V ions at the surface of vanadia catalysts. The growth of well-ordered V2O5(001) and MoO3(010) thin films containing few point defects is reported here for the first time. These films were grown on Au(111) by oxidation under 50 mbar O2 in a dedicated high pressure cell. Contrary to some of the results found in the literature, the films are not easily reduced by annealing in UHV. This evidences the contribution of radiation and surface contamination in some of the reported thermal reduction experiments. The growth of ultrathin V2O5 and MoO3 layers on Au(111) results in formation of interface-specific monolayer structures. These layers are coincidence lattices and they do not correspond to any known oxide bulk structure. They are assumed to be stabilized by electronic interaction with Au(111). Their formation illustrates the polymorphic character and the ease of coordination units rearrangement which are characteristic of both oxides. The formation of a second layer apparently precedes the growth of bulk-like crystallites for both oxides. This observation is at odds with a common assumption that crystals nucleate as soon as a monolayer is formed dur-ing the preparation of supported vanadia catalysts.
Tashiro, Hidenori. "Time-resolved infrared studies of superconducting molybdenum-germanium thin films." [Gainesville, Fla.] : University of Florida, 2004. http://purl.fcla.edu/fcla/etd/UFE0008001.
Full textBragg, Donald. "Photocatalytic Oxidation of Carbon Monoxide Using Sputter Deposited Molybdenum Oxide Thin Films on a Silicon Dioxide Substrate." Fogler Library, University of Maine, 2007. http://www.library.umaine.edu/theses/pdf/BraggD2007.pdf.
Full textGolub, A. S., N. D. Lenenko, E. P. Krinichnaya, O. P. Ivanova, I. V. Klimenko, and T. S. Zhuravleva. "Nanostructured Films of Semiconducting Molybdenum Disulfide Obtained Through Exfoliation-Restacking Method." Thesis, Sumy State University, 2013. http://essuir.sumdu.edu.ua/handle/123456789/35055.
Full textAshraf, Sobia. "Aerosol assisted chemical vapour deposition of tungsten and molybdenum oxide thin films." Thesis, University College London (University of London), 2007. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.498322.
Full textBooks on the topic "Molybdenum Thin Films"
National Renewable Energy Laboratory (U.S.) and IEEE Photovoltaic Specialists Conference (37th : 2011 : Seattle, Wash.), eds. Density profiles in sputtered molybdenum thin films and their effects on sodium diffusion in Cu(InxGa1-x)Se2 photovoltaics: Preprint. Golden, CO]: National Renewable Energy Laboratory, 2011.
Find full textTalivaldis, Spalvins, Lewis Research Center, and United States. National Aeronautics and Space Administration. Scientific and Technical Information Division., eds. Influence of the deposition conditions on radiofrequency magnetron sputtered MoS2 films. [Washington, D.C.]: National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Division, 1990.
Find full textWeber, Frank John. Changes in structure and stress in Mo/a-Si thin films upon annealing. 1995.
Find full textAdvanced Technologies for Next Generation Integrated Circuits. Institution of Engineering & Technology, 2020.
Find full textBook chapters on the topic "Molybdenum Thin Films"
Shen, Yao Gen. "Microstresses in Molybdenum Nitride Thin Films Deposited by Reactive DC Magnetron Sputtering." In Materials Science Forum, 589–94. Stafa: Trans Tech Publications Ltd., 2005. http://dx.doi.org/10.4028/0-87849-969-5.589.
Full textStrane, Jay, Jian Li, S. W. Russell, and J. W. Mayer. "Thermal Stability of Titanium-Molybdenum and Titanium-Copper Bilayer Thin Films on Alumina." In Crucial Issues in Semiconductor Materials and Processing Technologies, 321–25. Dordrecht: Springer Netherlands, 1992. http://dx.doi.org/10.1007/978-94-011-2714-1_31.
Full textHixson, Earl C., C. Suryanarayana, Graham G. W. Mustoe, and John J. Moore. "Modeling Thermal Stresses and Measuring Thin Film CTE in MoSi2and MoSi2+SiC Composite Coatings on Molybdenum." In Elevated Temperature Coatings, 109–18. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2013. http://dx.doi.org/10.1002/9781118787694.ch8.
Full textPanin, Sergey V., Lyudmila A. Kornienko, Nguyen Duc Anh, Vladislav O. Alexenko, Dmitry G. Buslovich, and Svetlana A. Bochkareva. "Three-Component Wear-Resistant PEEK-Based Composites Filled with PTFE and MoS2: Composition Optimization, Structure Homogenization, and Self-lubricating Effect." In Springer Tracts in Mechanical Engineering, 275–99. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-60124-9_13.
Full textZulkifli, Muhammad Nubli, and Sabarina Abdul Hamid. "Electrical Characterization of Ultrasonic Aluminum Bond on Molybdenum Back Contact of the Thin-Film Solar Module Using Micro-Ohmmeter." In Springer Proceedings in Physics, 115–22. Singapore: Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-19-9267-4_13.
Full textPerry, A. J., A. W. Baouchi, J. H. Petersen, and S. D. Pozder. "Crystal structure of molybdenum nitride films made by reactive cathodic arc evaporation." In Metallurgical Coatings and Thin Films 1992, 261–65. Elsevier, 1992. http://dx.doi.org/10.1016/b978-0-444-89900-2.50048-8.
Full textJankowski, A. F., and L. R. Schrawyer. "Working gas pressure and flow effects on reactively sputtered molybdenum oxide thin films." In Metallurgical Coatings and Thin Films 1992, 349–54. Elsevier, 1992. http://dx.doi.org/10.1016/b978-0-444-89900-2.50063-4.
Full textRobinson Azariah John Chelliah, Cyril, and Rajesh Swaminathan. "Binary Metal Oxides Thin Films Prepared from Pulsed Laser Deposition." In Practical Applications of Laser Ablation. IntechOpen, 2021. http://dx.doi.org/10.5772/intechopen.96161.
Full textHILTUNEN, L., M. LESKELÄ, M. MÄKELÄ, L. NIINISTÖ, E. NYKÄNEN, and P. SOININEN. "NITRIDES OF TITANIUM, NIOBIUM, TANTALUM AND MOLYBDENUM GROWN AS THIN FILMS BY THE ATOMIC LAYER EPITAXY METHOD." In Metallurgical Coatings 1988, 149–54. Elsevier, 1988. http://dx.doi.org/10.1016/b978-1-85166-985-1.50019-4.
Full textRocha, Lizandra Viana Maurat da, Paulo Sergio Rangel Cruz da Silva, and Maria Inês Bruno Tavares. "Comparative Study Of Poly (Butylene Adipate Co-Terephthalate) Nanocomposites With Zinc And Molybdenum Oxides." In COLLECTION OF INTERNATIONAL TOPICS IN HEALTH SCIENCE- V1. Seven Editora, 2023. http://dx.doi.org/10.56238/colleinternhealthscienv1-122.
Full textConference papers on the topic "Molybdenum Thin Films"
Yadav, P. K., M. Nayak, G. S. Lodha, and S. Rai. "Growth study of ion assisted evaporated molybdenum thin films." In INDIAN VACUUM SOCIETY SYMPOSIUM ON THIN FILMS: SCIENCE AND TECHNOLOGY. AIP, 2012. http://dx.doi.org/10.1063/1.4732395.
Full textAnand, T. Joseph S., T. Mahalingam, C. Sanjeevi Raja, M. Jayachandran, and Mary J. Chockalingam. "Molybdenum diselenide thin films prepared by electrodeposition technique." In SPIE's International Symposium on Optical Science, Engineering, and Instrumentation, edited by Carl M. Lampert and Claes-Goeran Granqvist. SPIE, 1999. http://dx.doi.org/10.1117/12.367559.
Full textBaskaran, R., A. V. Thanikai Arasu, and E. P. Amaladass. "Magnetoresistance measurements of superconducting molybdenum nitride thin films." In DAE SOLID STATE PHYSICS SYMPOSIUM 2015. Author(s), 2016. http://dx.doi.org/10.1063/1.4948112.
Full text"Increasing the Oxidation-Resistance of Molybdenum Thin Films." In SVC TechCon 2016. Society of Vacuum Coaters, 2016. http://dx.doi.org/10.14332/svc16.proc.0047.
Full textDominguez, A., Ateet Dutt, O. de Melo, and G. Santana. "Molybdenum oxide thin films for heterojunction solar cells." In 2017 IEEE 44th Photovoltaic Specialists Conference (PVSC). IEEE, 2017. http://dx.doi.org/10.1109/pvsc.2017.8366104.
Full textYuan, Y. F., and Oliver S. Heavens. "Transition and switching properties of the blue potassium molybdenum bronze thin films." In Thin Film Physics and Applications: Second International Conference, edited by Shixun Zhou, Yongling Wang, Yi-Xin Chen, and Shuzheng Mao. SPIE, 1994. http://dx.doi.org/10.1117/12.190758.
Full textKhalate, S. A., R. S. Kate, and R. J. Deokate. "Studies on nanosized molybdenum trioxide (α-MoO3) thin films." In DAE SOLID STATE PHYSICS SYMPOSIUM 2016. Author(s), 2017. http://dx.doi.org/10.1063/1.4980506.
Full textBhatia, Shally, and Atul Khanna. "Structural and optical properties of molybdenum trioxide thin films." In NANOFORUM 2014. AIP Publishing LLC, 2015. http://dx.doi.org/10.1063/1.4917961.
Full textKwok, Chee Y., Tom Puzzer, Kwang M. Lin, and Jafar Haji-Babaei. "DC magnetron-sputtered molybdenum thin films for micromechanical structures." In Far East and Pacific Rim Symposium on Smart Materials, Structures, and MEMS, edited by Alex Hariz, Vijay K. Varadan, and Olaf Reinhold. SPIE, 1997. http://dx.doi.org/10.1117/12.293487.
Full textLee, Jonghoon, Gary Kedziora, Nicholas Glavin, and Ajit Roy. "Cluster formation and charge transfer in molecular doping of molybdenum disulfide." In International Workshop on Thin Films for Electronics, Electro-Optics, Energy and Sensors, edited by Guru Subramanyam, Partha Banerjee, Akhlesh Lakhtakia, and Nian X. Sun. SPIE, 2023. http://dx.doi.org/10.1117/12.2644983.
Full textReports on the topic "Molybdenum Thin Films"
Olson, K. Laser photodeposition of molybdenum oxide thin films from organometallic precursors. Office of Scientific and Technical Information (OSTI), January 1990. http://dx.doi.org/10.2172/7186114.
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