Literatura académica sobre el tema "Magnesium phosphates"
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Artículos de revistas sobre el tema "Magnesium phosphates"
Gu, Xiang, Yan Li, Chao Qi y Kaiyong Cai. "Biodegradable magnesium phosphates in biomedical applications". Journal of Materials Chemistry B 10, n.º 13 (2022): 2097–112. http://dx.doi.org/10.1039/d1tb02836g.
Texto completoKazakova, Gilyana, Tatiana Safronova, Daniil Golubchikov, Olga Shevtsova y Julietta V. Rau. "Resorbable Mg2+-Containing Phosphates for Bone Tissue Repair". Materials 14, n.º 17 (26 de agosto de 2021): 4857. http://dx.doi.org/10.3390/ma14174857.
Texto completoPossenti, Elena, Claudia Conti, G. Diego Gatta, Marco Realini y Chiara Colombo. "Diammonium Hydrogenphosphate Treatment on Dolostone: the Role of Mg in the Crystallization Process". Coatings 9, n.º 3 (4 de marzo de 2019): 169. http://dx.doi.org/10.3390/coatings9030169.
Texto completoIsaicheva, Lyudmila Anatol'evna, Natal'ya Mikhailovna Trepak, Arlen Leonidovich L'vov y Ivan Alekseevich Kazarinov. "Corrosion and Еlectrochemical Behaviour of Magnesium and Magnesium-Lithium Alloys in Phosphoric Acid Media". Electrochemical Energetics 12, n.º 3 (2012): 124–28. http://dx.doi.org/10.18500/1608-4039-2012-12-3-124-128.
Texto completoYoshida, Katsumi, Hideki Hyuga, Naoki Kondo y Hideki Kita. "Improvement of Oxidation Resistance of Graphite Powder Treated with Phosphate". Key Engineering Materials 352 (agosto de 2007): 133–36. http://dx.doi.org/10.4028/www.scientific.net/kem.352.133.
Texto completoKazakova, G. K., T. V. Safronova y T. B. Shatalova. "Ceramics based on powders synthesized from ammonium hydrophosphate and acetates of calcium and magnesium". Materials Science, n.º 4 (20 de abril de 2021): 33–40. http://dx.doi.org/10.31044/1684-579x-2021-0-04-33-40.
Texto completoDing, Zhu, Ming Zhang, Bi Qin Dong, Wei Liu y Han Lu. "Phosphate Bonding: A New Method for Using Large Volume of Fly Ash". Key Engineering Materials 539 (enero de 2013): 225–29. http://dx.doi.org/10.4028/www.scientific.net/kem.539.225.
Texto completoDriessens, F. C. M., M. G. Boltong, R. Wenz y J. Meyer. "Calcium Phosphates as Fillers in Struvite Cements". Key Engineering Materials 284-286 (abril de 2005): 161–64. http://dx.doi.org/10.4028/www.scientific.net/kem.284-286.161.
Texto completoNabiyouni, Maryam, Yufu Ren y Sarit B. Bhaduri. "Magnesium substitution in the structure of orthopedic nanoparticles: A comparison between amorphous magnesium phosphates, calcium magnesium phosphates, and hydroxyapatites". Materials Science and Engineering: C 52 (julio de 2015): 11–17. http://dx.doi.org/10.1016/j.msec.2015.03.032.
Texto completoSeel, F., K. P. Klos, D. Recktenwald y J. Schuh. "Zur Frage der nicht-enzymatischen Bildung von kondensierten Phosphaten unter präbiotischen Bedingungen/ Non-Enzymatic Formation of Condensed Phosphates under Prebiotic Conditions". Zeitschrift für Naturforschung B 41, n.º 7 (1 de julio de 1986): 815–24. http://dx.doi.org/10.1515/znb-1986-0704.
Texto completoTesis sobre el tema "Magnesium phosphates"
Sun, Zehra Pinar. "Structural And Mechanical Investigations Of Magnesium And Fluoride Doped Nano Calcium Phosphates". Master's thesis, METU, 2009. http://etd.lib.metu.edu.tr/upload/2/12610764/index.pdf.
Texto completoC for 1 hour. High densities were achieved except for the 7.5 % mole Mg doped samples. Microstructure of the CaPs were investigated by X- ray diffraction (XRD), Fourier Transform Infrared Spectroscopy (FTIR) and Scanning Electron Microscopy (SEM). Due to the Mg substitution, &
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-TCP phase was detected besides HAp, resulting in the formation of HAp/ &
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-TCP biphasic composites with different compositions. The substitutions of the ions have been verified by the decrease in the hexagonal unit cell volumes of the doped CaPs. FTIR spectra revealed the characteristic absorption bands of HAp, &
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-TCP and the ones that were resulted from the F-OH bonds and substitution of the Mg2+ ions. The SEM results revealed the grain sizes in the range of ~197 nm-740 nm. In general, the micro hardness and diametral tensile strength tests revealed that Mg2+ ions in large amounts (7.5 % mole) had negative effects on the mechanical properties of the samples, while substitution of the F- ions had a positive effect on their mechanical properties.
Felker, Daniel L. "Studies of oxide-free phosphates film surfaces on magnesium, zinc, and manganese by X-ray photoelectron spectroscopy /". Search for this dissertation online, 2005. http://wwwlib.umi.com/cr/ksu/main.
Texto completoDos, Santos Tavares Débora. "Avaliação in vitro do comportamento de células osteoprogenitoras e macrófagos humanos em pastilhas de fosfato tricálcico com e sem magnésio". Phd thesis, Université de Haute Alsace - Mulhouse, 2012. http://tel.archives-ouvertes.fr/tel-00720079.
Texto completoNabiyouni, Maryam. "Biomedical Applications of Magnesium Phosphate Nanoparticles". University of Toledo / OhioLINK, 2014. http://rave.ohiolink.edu/etdc/view?acc_num=toledo1418327070.
Texto completoClavier, Batiste. "Synthèse, caractérisations et évaluation de l'activité bactéricide de composés inorganiques à base de cuivre". Thesis, Le Mans, 2019. http://cyberdoc-int.univ-lemans.fr/Theses/2019/2019LEMA1041.pdf.
Texto completoBacterial pathogens causing healthcare-associated-infections pose ongoing and increasing challenges to care facilities. In France, Escherichia coli and Staphylococcus aureus are responsible for more than 40% of these infections. Due to the permanent adaptation of these bacteria to new antibiotics placed on the market, complementary solutions must be found. One of these solutions proposed in this thesis work aims to exacerbate performances of known bactericidal materials (synergistic effect) or to provide bactericidal properties to non-active compounds by partially substituting magnesium ions by cupric ones or vice versa. New solid solutions were thus highlighted. Solid state reaction, co-precipitation, hydrothermal routes or mechanosynthesis were employed to synthesize micrometer-sized or nanometer-sized particles of those desired compounds. When obtained, X-Ray Diffraction, electron microscopies, dinitrogen adsorption, IR/UV-visible spectroscopies, ThermoGravimetric Analysis-Mass Spectrometry and Atomic Emission Spectroscopy are used to determine the nature, composition and size of those particles as well as their stability in water or CO2 rich atmosphere. The evaluation of bactericidal properties in water and at 20°C showed that the partial substitution of magnesium by copper enhances the activity of compounds both in terms of magnitude and kinetics. These increased performances are not necessarily related to the copper content in the active compound
Rostami, Niloufar. "Development of Novel Magnesium Phosphate Bone Cement". University of Toledo / OhioLINK, 2015. http://rave.ohiolink.edu/etdc/view?acc_num=toledo1418326907.
Texto completoIbasco, Suzette. "Magnesium phosphate precipitates and coatings for biomedical applications". Thesis, McGill University, 2009. http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=40691.
Texto completoLes métaux sont largement utilisés comme matériaux dans la conception d’implants orthopédiques et dentaires et plusieurs études ont montré qu’un revêtement de leurs surfaces améliore leur propriété d’ostéoconduction et leur capacité de liaison au tissu osseux. Les techniques de précipitation aqueuse à basse température sont plus élaborées comparées aux autres techniques de revêtement car elles permettent l’incorporation de composés thermiquement instables. Bien que certains phosphates de magnésium soient bien tolérés au sein du tissu osseux [Zimmermann 2006], ils sont relativement peu étudiés comme biocéramiques. La première partie de ce projet de recherche était de déterminer les conditions de précipitations auxquelles les différentes phases des phosphates de magnésium se forment. L’objectif majeur de cette étude était d’explorer une nouvelle méthode, à basse température, pour produire des revêtements de phosphate de magnésium par la réaction de substrats revêtus par pulvérisation avec des métaux magnésiens, dans une solution aqueuse de phosphate.La diffraction des rayons X et la microscopie électronique à balayage, couplée à la spectrométrie par dispersion d’énergie, furent utilisées pour caractériser et identifier les précipités de phosphates de magnésium. La microscopie électronique à balayage a révélé que les revêtements produits par la réaction d’un métal magnésiun avec un phosphate diacide d’ammonium forment un revêtement continu de cristaux de struvite. Ce revêtement présentait également la caractéristique majeure de résister au test d’arrachage. Les tests de biocompatibilité ont montré que les précipités de phosphates de magnésium ainsi que les revêtements de surface étaient non toxiques et amélioraient la viabilité cellulaire. Cette étude démontre la possibilité de former un éventail de revêtements potentiellement biocompatibles à la surface d’un$
Berg, Camilla. "Influence of Magnesium in theFormation of Phosphate Spheres : A simple method for the fabrication of sphericalparticles of calcium and magnesium phosphate". Thesis, Uppsala universitet, Oorganisk kemi, 2017. http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-326255.
Texto completoBarj, Mohamed. "Etude de la structure statique et dynamique de quelques matériaux à mobilité ionique par spectroscopie de vibration et par diffusion de neutrons". Paris 13, 1987. http://www.theses.fr/1987PA132024.
Texto completoYun, Joanne W. 1970. "Modelling studies of magnesium-dependent phosphate ester processing enzymes". Thesis, Massachusetts Institute of Technology, 1996. http://hdl.handle.net/1721.1/38776.
Texto completoLibros sobre el tema "Magnesium phosphates"
International Workshop on Phosphate and Other Minerals (7th 1985 Marseille, France). Phosphate and mineral homeostasis. New York: Plenum Press, 1986.
Buscar texto completoDampney, P. M. R. Phosphate, potash and magnesium for grassland. London: Agricultural Development and Advisory Services, 1991.
Buscar texto completoHansen, J. P. Removal of magnesia from dolomitic southern Florida phosphate concentrates by aqueous SO₂ leaching. Pittsburgh, Pa: U.S. Dept. of the Interior, Bureau of Mines, 1985.
Buscar texto completoMichael, Strong. Calcium phosphate deposition on a magnesium alloy substrate using a simple chemistry technique. Sudbury, Ont: Laurentian University, 2005.
Buscar texto completoRitz, Eberhard, Shaul G. Massry y Michel Olmer. Phosphate and Mineral Homeostasis. Springer London, Limited, 2013.
Buscar texto completoPhosphate and Mineral Homeostasis. Springer London, Limited, 2012.
Buscar texto completoMassry, Shaul G. Phosphate and Mineral Metabolism. Springer, 2012.
Buscar texto completo(Editor), Shaul G. Massry, Michel Olmer (Editor) y Eberhard Ritz (Editor), eds. Phosphate and Mineral Homeostasis (Advances in Experimental Medicine and Biology). Springer, 1987.
Buscar texto completoKonrad, Martin y Karl P. Schlingmann. Approach to the patient with hypomagnesaemia. Editado por Robert Unwin. Oxford University Press, 2015. http://dx.doi.org/10.1093/med/9780199592548.003.0040.
Texto completoShotliffe, Dr Kevin, Dr Annabel Fountain, Dr Mike Jones, Dr Jennifer Gray, Dr Richard Leach, Dr Richard Leach, Mr Neil Morton, Dr Anthony Toft, Professor John S. Bevan y Dr Louella Vaughan. Endocrinology and metabolic disorders. Oxford University Press, 2016. http://dx.doi.org/10.1093/med/9780199565979.003.00010.
Texto completoCapítulos de libros sobre el tema "Magnesium phosphates"
Ostrowski, Nicole, Vidisha Sharma, Abhijit Roy y Prashant N. Kumta. "Exploration of Amorphous and Crystalline Tri-Magnesium Phosphates for Bone Cements". En Ceramic Transactions Series, 33–46. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2015. http://dx.doi.org/10.1002/9781119190134.ch4.
Texto completoBährle-Rapp, Marina. "Magnesium Ascorbyl Phosphate". En Springer Lexikon Kosmetik und Körperpflege, 335. Berlin, Heidelberg: Springer Berlin Heidelberg, 2007. http://dx.doi.org/10.1007/978-3-540-71095-0_6190.
Texto completoGooch, Jan W. "Magnesium Phosphate, Dibase". En Encyclopedic Dictionary of Polymers, 440. New York, NY: Springer New York, 2011. http://dx.doi.org/10.1007/978-1-4419-6247-8_7120.
Texto completoGooch, Jan W. "Magnesium Phosphate, Monobasic". En Encyclopedic Dictionary of Polymers, 440. New York, NY: Springer New York, 2011. http://dx.doi.org/10.1007/978-1-4419-6247-8_7121.
Texto completoGooch, Jan W. "Magnesium Phosphate, Tribasic". En Encyclopedic Dictionary of Polymers, 441. New York, NY: Springer New York, 2011. http://dx.doi.org/10.1007/978-1-4419-6247-8_7122.
Texto completoDirks, John H. y Norman L. M. Wong. "Renal Magnesium Wasting Disorders". En Phosphate and Mineral Homeostasis, 193–97. Boston, MA: Springer US, 1986. http://dx.doi.org/10.1007/978-1-4684-5206-8_23.
Texto completoKuz’mina, Mariya A., Anton M. Nikolaev y Olga V. Frank-Kamenetskaya. "The Formation of Calcium and Magnesium Phosphates of the Renal Stones Depending on the Composition of the Crystallization Medium". En Lecture Notes in Earth System Sciences, 107–18. Cham: Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-21614-6_6.
Texto completoGooch, Jan W. "Magnesium Hydrogen Phosphate Trihydrate". En Encyclopedic Dictionary of Polymers, 440. New York, NY: Springer New York, 2011. http://dx.doi.org/10.1007/978-1-4419-6247-8_7116.
Texto completoBährle-Rapp, Marina. "Silver Magnesium Aluminum Phosphate". En Springer Lexikon Kosmetik und Körperpflege, 504. Berlin, Heidelberg: Springer Berlin Heidelberg, 2007. http://dx.doi.org/10.1007/978-3-540-71095-0_9377.
Texto completoSankara Narayanan, T. S. N. "Phosphate Conversion". En Conversion Coatings for Magnesium and its Alloys, 73–112. Cham: Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-030-89976-9_4.
Texto completoActas de conferencias sobre el tema "Magnesium phosphates"
Taheri, B., A. Munoz F., R. C. Powell, D. H. Blackburn y D. C. Cranmer. "Effect of structure and composition of the thermal lensing and permanent laser-induced refractive-index changes in glasses". En OSA Annual Meeting. Washington, D.C.: Optica Publishing Group, 1991. http://dx.doi.org/10.1364/oam.1991.mc3.
Texto completoSappok, Alexander, Sean Munnis y Victor W. Wong. "Individual and Synergistic Effects of Lubricant Additive Components on Diesel Particulate Filter Ash Accumulation and Performance". En ASME 2012 Internal Combustion Engine Division Spring Technical Conference. American Society of Mechanical Engineers, 2012. http://dx.doi.org/10.1115/ices2012-81237.
Texto completoSmith, M., J. A. Ware, E. T. Fossel y E. W. Salzman. "MEASUREMENT OF CYTOPLASMIC [MG++] IN PLATELETS BY NMR AND NULL-POINT TITRATION WITH ATOMIC ABSORPTION SPECTROSCOPY". En XIth International Congress on Thrombosis and Haemostasis. Schattauer GmbH, 1987. http://dx.doi.org/10.1055/s-0038-1642818.
Texto completo"New Applications of Magnesium Phosphate Cements Magnesium Phosphate Cements". En SP-179: Fourth CANMET/ACI/JCI Conference: Advances in Concrete Technology. American Concrete Institute, 1998. http://dx.doi.org/10.14359/6030.
Texto completoAnhua Zou, Jianjun Tang, Tichang Sun, Baozhu Wu, Ting Jia y Jingyu Wang. "Study on crystallization behavior of magnesium ammonium phosphate". En 2011 Second International Conference on Mechanic Automation and Control Engineering (MACE). IEEE, 2011. http://dx.doi.org/10.1109/mace.2011.5987743.
Texto completoAlfocea-Roig, Anna, Sergio Huete-Hernandez, Alex Maldonado-Alameda, Jessica Giro-Paloma, Josep Maria Chimenos-Ribera y Joan Formosa-Mitjans. "Development of Animal Fibres Composites for Construction Applications". En 4th International Conference on Bio-Based Building Materials. Switzerland: Trans Tech Publications Ltd, 2022. http://dx.doi.org/10.4028/www.scientific.net/cta.1.750.
Texto completoAdhikari, Udhab, Nava P. Rijal, Shalil Khanal, Devdas Pai, Jagannathan Sankar y Narayan Bhattarai. "Magnesium and Calcium-Containing Scaffolds for Bone Tissue Regeneration". En ASME 2016 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2016. http://dx.doi.org/10.1115/imece2016-66835.
Texto completoAnhua Zou y Jianjun Tang. "Progress in the study of magnesium ammonium phosphate crystallization reactor". En 2011 International Conference on Business Management and Electronic Information (BMEI). IEEE, 2011. http://dx.doi.org/10.1109/icbmei.2011.5921080.
Texto completoAkbar, Imam y Sukyoung Kim. "Characteristic of magnesium substituted octacalcium phosphate prepared by precipitation method". En SECOND INTERNATIONAL CONFERENCE OF MATHEMATICS (SICME2019). Author(s), 2019. http://dx.doi.org/10.1063/1.5096677.
Texto completoIskandar, Maria E., Jaclyn Y. Lock, Arash Aslani y Huinan Liu. "Controlling the Biodegradation of Magnesium Implants Through Nanostructured Coatings". En ASME 2011 International Mechanical Engineering Congress and Exposition. ASMEDC, 2011. http://dx.doi.org/10.1115/imece2011-65901.
Texto completoInformes sobre el tema "Magnesium phosphates"
Langton, C. y D. Stefanko. MAGNESIUM MONO POTASSIUM PHOSPHATE GROUT FOR P-REACTOR VESSEL IN-SITU DECOMISSIONING. Office of Scientific and Technical Information (OSTI), enero de 2011. http://dx.doi.org/10.2172/1011325.
Texto completoWagh, A. S., D. Singh y S. Y. Jeong. Stabilization of hazardous ash waste with newberyite-rich chemically bonded magnesium phosphate ceramic. Office of Scientific and Technical Information (OSTI), noviembre de 1995. http://dx.doi.org/10.2172/510298.
Texto completoRamsey, Monica, Dylan Scott, Charles Weiss y Jeb Tingle. Effects of boric acid and water content on fundamental properties of proprietary magnesium phosphate cement (MPC) products. Engineer Research and Development Center (U.S.), abril de 2020. http://dx.doi.org/10.21079/11681/36393.
Texto completoRamsey, Monica, Dylan Scott, Charles Weiss y Jeb Tingle. Development of magnesium phosphate cement (MPC) concrete mixture proportioning for airfield pavements : laboratory and field validation MPC test report. Engineer Research and Development Center (U.S.), febrero de 2020. http://dx.doi.org/10.21079/11681/35475.
Texto completoPokrzywinski, Kaytee, Cliff Morgan, Scott Bourne, Molly Reif, Kenneth Matheson y Shea Hammond. A novel laboratory method for the detection and identification of cyanobacteria using hyperspectral imaging : hyperspectral imaging for cyanobacteria detection. Engineer Research and Development Center (U.S.), junio de 2021. http://dx.doi.org/10.21079/11681/40966.
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