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1

Asif Mammadov, Asif Mammadov, Gunel Pashazade, Afarida Gasymova, and Ulviya Sharifova. "Production of Iron, Titanium Dioxide Modofocations and Titanium." Chemistry and Chemical Technology 14, no. 2 (2020): 227–33. http://dx.doi.org/10.23939/chcht14.02.227.

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2

Ota, Akinori, Masahiro Yamazaki, and Hiroshi Izui. "Effects of Raw Powder Morphology and Size on Tensile Properties of SPS-Consolidated TiB/Ti Composites." Key Engineering Materials 520 (August 2012): 276–80. http://dx.doi.org/10.4028/www.scientific.net/kem.520.276.

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Titanium matrix composites (TMC) exhibit excellent specific strength and corrosion resistance. TiB whiskers can be formed in titanium by solid-state reaction between titanium and TiB2 powders. The formation of TiB whiskers results in the improvement of tensile strength, Young's modulus and Vickers hardness. In this study, TiB reinforced pulverized or gas atomized pure titaniums were fabricated by spark plasma sintering. We focus on the effects of the powder morphology and size on the tensile properties of TiB/Ti composites. We will investigate the sintering performance and microstructures of T
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3

El Khalloufi, Mohammed, Olivier Drevelle, and Gervais Soucy. "Titanium: An Overview of Resources and Production Methods." Minerals 11, no. 12 (2021): 1425. http://dx.doi.org/10.3390/min11121425.

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For several decades, the metallurgical industry and the research community worldwide have been challenged to develop energy-efficient and low-cost titanium production processes. The expensive and energy-consuming Kroll process produces titanium metal commercially, which is highly matured and optimized. Titanium’s strong affinity for oxygen implies that conventional Ti metal production processes are energy-intensive. Over the past several decades, research and development have been focusing on new processes to replace the Kroll process. Two fundamental groups are categorized for these methods:
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4

Mitrofanova, Galina, Valentina Marchevskaya, and Anastasiya Taran. "Flotation separation of titanite concentrate from apatite-nepheline-titanite ores of anomalous zones of the Khibiny deposits." Записки Горного института 256 (November 10, 2022): 560–66. http://dx.doi.org/10.31897/pmi.2022.81.

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Titanium raw materials are widely used for the synthesis of various functional materials – sorbents of radionuclides and rare earth elements, various additives, filler pigments, etc. Since most of titanium concentrates are imported, in line with the import substitution program, production of titanite concentrate from apatite-nepheline ores of the Khibiny deposits is a promising trend for supplying national industry with titanium raw materials. The article presents the results of laboratory studies of flotation separation of titanite concentrate from apatite-nepheline-titanite ores extracted fr
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Lacki, Piotr, and Konrad Adamus. "Numerical Simulation of Welding Thin Titanium Sheets." Key Engineering Materials 549 (April 2013): 407–14. http://dx.doi.org/10.4028/www.scientific.net/kem.549.407.

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Different titanium grades are used in aircraft construction because of titaniums unique properties. These materials are mostly joined by different welding methods. Electron beam welding technology is often used in the aircraft industry to join structural elements made of titanium alloys. The goal of the work is a numerical analysis of the electron beam welding process applied to joining thin titanium sheets. The analysis was performed using finite element method, FEM. Temperature distribution, size of heat affected zone (HAZ), depth and width of fusion zone were determined for the assumed heat
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Tsyryatieva, A. V. "Effect of titanosilicate additives on the strength of a self-cleaning cement stone." Transaction Kola Science Centre 11, no. 3-2020 (2020): 209–14. http://dx.doi.org/10.37614/2307-5252.2020.3.4.045.

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The possibility of modifying cement composite by titanosilicate additive, consisting of the mixture of silicon and titanium oxides (TSP —titanosilicate precipitate), obtained by coprecipitation during the interaction of titanite with hydrochloric acid was studied. The properties of the modified TSP cement composite and mechanically prepared mixtures of titanium dioxide (anatase) with silica and titanium dioxide (rutile) with silica are compared. It has been shown that titanosilicate additives in cement compositions increase the compressive strength and give the surface self-cleaning properties
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Stanec, Zlatko, Jasna Halambek, Krešimir Maldini, et al. "Titanium Ions Release from an Innovative Titanium-Magnesium Composite: an in Vitro Study." Acta Stomatologica Croatica 50, no. 1 (2016): 40–48. http://dx.doi.org/10.15644/asc50/1/6.

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8

Vasylyeva, H., M. Tsyba, Yu Kylivnyk, and V. Yakovlev. "The Influence of Chemical Modificate of Surface of Titanium Phosphate on its Ability to Sorb Strontium Ions From Aqueous Solutions." Фізика і хімія твердого тіла 17, no. 4 (2019): 548–51. http://dx.doi.org/10.15330/pcss.17.4.548-551.

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The influence of chemical modificate of surface of titanium phosphate on its ability to sorb of strontium ions from aqueous solutions was investigated. The samples of titanium phosphate were modificated by NH4OH solution and irradiate by Bremsstrahlung gamma rays. It was shown, that phosphate titanium’s ability to sorb of strontium ions from aqueous solutions is increasing after modificated.
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Rocha-Rangel, Enrique, David Hernández-Silva, Eduardo Terrés-Rojas, and Enrique Martínez-Franco. "Alumina-based composites strengthened with titanium and titanium carbide dispersions." Epitoanyag - Journal of Silicate Based and Composite Materials 62, no. 3 (2010): 75–78. http://dx.doi.org/10.14382/epitoanyag-jsbcm.2010.15.

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10

Xu, Guoyin, and Purong Wang. "Study on the Mineral Characteristics and Upgrading of Titanium Iron Ore Concentrate in the Panxi Region of China." E3S Web of Conferences 617 (2025): 01017. https://doi.org/10.1051/e3sconf/202561701017.

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By conducting sieve analysis and MLA process mineralogy automated analysis system research on a titanium iron ore concentrate sample from the Panxi region, this study found that the main metallic mineral in the Anning titanium concentrate is ilmenite, which is the primary target mineral for recovery in this study. In addition, there are minor metallic minerals such as titanomagnetite and hematite, as well as gangue minerals including chlorite, hornblende, sphene, and diopside. Ilmenite accounts for 89.42% of the total mineral mass, and its liberation degree has reached 95.26%, indicating that
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11

Bachoura, Abdo, Ruriko Yoshida, Christian Lattermann, and Srinath Kamineni. "Late Removal of Titanium Hardware from the Elbow Is Problematic." ISRN Orthopedics 2012 (February 6, 2012): 1–4. http://dx.doi.org/10.5402/2012/256239.

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A retrospective review of 21 patients that underwent bone screw removal from the elbow was studied in relation to the type of metal, duration of implantation, and the location of the screws about the elbow. Screw failure during extraction was the dependent variable. Five of 21 patients experienced hardware failure during extraction. Fourteen patients had titanium alloy implants. In four cases, titanium screws broke during extraction. Compared to stainless steel, titanium screw failure during removal was not statistically significant (P=0.61). Screw removal 12 months after surgery was more like
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12

Saber, Osama, Hicham Mahfoz Kotb, Mostafa Osama, and Hassan A. Khater. "An Effective Photocatalytic Degradation of Industrial Pollutants through Converting Titanium Oxide to Magnetic Nanotubes and Hollow Nanorods by Kirkendall Effect." Nanomaterials 12, no. 3 (2022): 440. http://dx.doi.org/10.3390/nano12030440.

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Controlling of morphology from nanoparticles to magnetic nanotubes and hollow nanorods are interesting for developing the photo-active materials and their applications in the field of photocatalysis and decontamination of aquatic effluents. In the current study, titanium dioxide nanoparticles and nanocomposites were prepared by different techniques to produce various morphologies. The nanoparticles of pure titanium dioxide were prepared by sol-gel technique. Magnetic nanotubes and hollow nanorods were prepared by combining titanium with di- and tri-valent iron through two stages: urea hydrolys
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13

Withers, J. C., V. Shapovalov, R. Storm, and R. O. Loutfy. "There is Low Cost Titanium Componentry Today." Key Engineering Materials 551 (May 2013): 11–15. http://dx.doi.org/10.4028/www.scientific.net/kem.551.11.

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In spite of titanium’s excellent combinations of lightweight, mechanical properties, and corrosion resistance it has been excluded from many applications because of its high cost in fabricated componentry. The major cost to produce a titanium alloy component is the processing of the sponge into alloy plus the several processing steps for fabricating the final finished component. If low cost titanium is to become a reality, the cost of post sponge processing to final finished components must be dramatically reduced. Processing to convert sponge directly in one step to an alloyed near net shape
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14

Khabas, Tamara, Ekaterina Kulinich, Victor Merkulov, Сhristoph Roesli, and Mihail Martusevich. "Development of Radioactive Sources on the Basis of Bioinert Ceramic Materials for Medical Applications and their Pre-Clinical Testing." Advanced Materials Research 1040 (September 2014): 286–91. http://dx.doi.org/10.4028/www.scientific.net/amr.1040.286.

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In this article, both the composition and composite properties of radioactive sources for medical applications are worked out and studied. The bases of these sources are bioinert ceramic solids and radionuclides. The active source is constituted from dispersed radioactive yttriа oxide or strontium oxide monolithically encapsulated with bioinert glass flux. The thermal expansion properties of the analyzed composites are highly similar to the ones of both titanium metal and titanum alloys. Therefore, the developed radioactive sources can be mounted on titanium holder. Importantly, all utilized e
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15

Li, A. H., T. Li, X. G. Chen, W. B. Guo, H. T. Xue, and C. X. Chen. "Effect of copper interlayer to the microstructure and strength of alumina/304 stainless steel joint brazed with silver‐copper‐titanium filler." Materialwissenschaft und Werkstofftechnik 54, no. 12 (2023): 1717–27. http://dx.doi.org/10.1002/mawe.202300082.

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AbstractAlumina and 304 stainless steel were brazed with silver‐copper‐titanium filler+copper foil. The effect of adding copper foil to the filler on the microstructure of the alumina/304 joint was studied, and the reasons for the effect of adding copper foil with different thicknesses on the joint performance were also analyzed. The standard microstructure of alumina/304 joint with silver‐copper‐titanium+copper foil filler is alumina ceramic/copper compound with titanium and oxygen (3 : 3 : 1) (Cu3Ti3O) continuous layer+copper titanide (TiCu)/silver solid solution+copper solid solution/titani
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16

Goenharto, Sianiwati, and Achmad Sjafei. "Breket titanium (Titanium bracket)." Dental Journal (Majalah Kedokteran Gigi) 38, no. 3 (2005): 120. http://dx.doi.org/10.20473/j.djmkg.v38.i3.p120-123.

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17

Gerasimova, Lidia G., Anatoly I. Nikolaev, Ekaterina S. Shchukina, and Marina V. Maslova. "Titanite-Containing Mineral Compositions and Their Chemical Treatment with Preparation of Functional Materials." Materials 13, no. 7 (2020): 1599. http://dx.doi.org/10.3390/ma13071599.

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The waste of apatite-nepheline ore processing was chosen as the material of study for the present investigation. The chemical and phase compositions have been analyzed and the route of the new technology has been developed. Treatment of the waste with diluted hydrochloric acid enables to separate apatite, nepheline, titano-magnetite minerals from titanite (CaSiTiO5). The obtained titanite concentrate contains 30–32% of titanium dioxide. Interaction of titanite with hydrochloric acid under heating and stirring conditions results in calcium leaching. The titanite decomposition is accompanied by
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18

Maksimkin, Aleksey V., Fedor S. Senatov, Kirill Niaza, Tarek Dayyoub, and Sergey D. Kaloshkin. "Ultra-High Molecular Weight Polyethylene/Titanium-Hybrid Implant for Bone-Defect Replacement." Materials 13, no. 13 (2020): 3010. http://dx.doi.org/10.3390/ma13133010.

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A hybrid implant with a structure mimicking that of natural bone was developed. Titanium alloy Ti–6Al–4V prepared with three-dimensional (3D)-printing technology was used to simulate the cortical-bone layer. The mismatch in the mechanical properties of bone and titanium alloy was solved by creating special perforations in the titanium’s surface. Porous ultra-high molecular weight polyethylene (UHMWPE) with high osteogenous properties was used to simulate the cancellous-bone tissue. A method for creating a porous UHMWPE structure inside the titanium reinforcement is proposed. The porous UHMWPE
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19

Blassan, Samuel, Pathak Madhvesh, and Jin Kim Kap. "Synthesis and characterization of new heteroleptic derivatives of titanium(IV) derived from 2-hydroxy-4-methoxy-benzophenone : A new precursors for the synthesis of nano sized titania." Journal of Indian Chemical Society Vol. 92, May 2015 (2015): 780–83. https://doi.org/10.5281/zenodo.5704112.

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Materials Chemistry Division, School of Advanced Sciences, VIT University, Vellore-632 014, Tamilnadu, India <em>E-mail</em> : madhveshpathak@vit.ac.in Department of Advanced Materials Engineering for Information and Electronics, College of Engineering, Kyung Hee University, 1732, Deogyeong-daero, Giheung-gu, Yongin-si, Gyeonggi-do 446-701, South Korea <em>E-mail</em> : kjkim@khu.ac.kr A few new titanium(IV) complexes have been synthesized by the reaction among precursor (Bp)<sub>2</sub>Ti(OPr<sup>i</sup>)<sub>2</sub> with different alkoxyalkanols and phenols/substituted phenols in 1 : 1 : 1 m
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Ana, Sofia de Sousa Moreira. "Titanium Allergy: Is Zirconia a Viable Alternative?" Journal of Dental Problems and Solutions 4, no. 2 (2017): 031–35. https://doi.org/10.17352/2394-8418.000044.

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<strong>Purpose:</strong>&nbsp;Highlight and discuss the properties of zirconia compared to titanium, in the case of titanium allergies. <strong>Materials and methods:&nbsp;</strong>The research was divided into 3 themes: Titanium Allergies: clinical cases reported, with the key-words: Titanium allergy; Dental Implants, in the databases MEDLINE / PubMed, Google Scholar and the archives of the library of the Faculty of Dental Medicine, University of Porto.&nbsp; <strong>Results:&nbsp;</strong>Dental implants are a good approach for replacement of lost teeth. Titanium and titanium alloys are the
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Salman, Awham Jumah, Dhuha Albusalih, Talib Abdulameer Jasim, Nabaa Sattar Radhi, Zainab Al-Khafaji, and Mayadah Falah. "Identify in Vitro Behaviour of Composite Coating Hydroxyapatite-Nano Silver on Titanium Substrate by Electrophoretic Technic for Biomedical Applications." Journal of Advanced Research in Micro and Nano Engineering 28, no. 1 (2024): 14–29. https://doi.org/10.37934/armne.28.1.1429.

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To develop Titanium implants that are biocompatible, non-toxic and exhibit antibacterial properties, it is imperative to apply biomaterial coatings that meet the stringent standards required for biomedical applications. Hydroxyapatite (HA) is extensively used as a coating for bone implants due to its exceptional biocompatibility. However, Titanium's vulnerability to corrosion and bacterial colonization within the physiological environment poses significant challenges that can undermine the long-term success of implants. This study explores the in vitro behaviour of a composite coating composed
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Duncan, Austin, Baviththira Suganthan, Hamid Asadi, Or Zolti, and Ramaraja Ramasamy. "Evaluation of Microbiologically Induced Corrosion in the Presence of Streptococcus Mutans." ECS Meeting Abstracts MA2022-02, no. 10 (2022): 700. http://dx.doi.org/10.1149/ma2022-0210700mtgabs.

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Titanium and titanium alloys are used in biomedical implants such as dental screws due to their excellent mechanical strength and high resistance to corrosion. The corrosion resistance of these alloys is largely due to the formation of a passive oxide layer on the titanium surface when in contact with oxygen. For the application of use in dental implants, titanium’s ability to withstand corrosion in the presence of oral bacteria is of utmost importance, specifically in the presence of Streptococcus mutans, the most common plaque causing oral bacteria. Previous literature has explored the effec
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Golubeva, I. I., A. S. Shuisky, V. N. Filippov, et al. "New data on titanium mineralization in fenitized precambrian carbonate rocks of Middle Timan bystrinskaya series." Vestnik of Geosciences 6 (2021): 38–48. http://dx.doi.org/10.19110/geov.2021.6.4.

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Fenitized Precambrian carbonate rocks (Middle Timan) are parent rocks for bauxite — phosphate weathering crusts. Therefore, the mineral composition of fenites, characterized by rich and varied mineralization, is of great interest. Titanium minerals especially attract attention, since their high concentrations are noted in bauxite-phosphate weathering crusts. For example, in the bauxites of the Verkhne-Shchugorsk area, the amount of rutile may reach 6000—7000 g/t. Titanium mineralization is represented by titanite, rutile, anatase, and cassite.
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Cavalcanti, Yuri Wanderley, Rodrigo Villamarim Soares, Marina Araújo Leite Assis, Elton Gonçalves Zenóbio, and Francisco Mauro da Silva Girundi. "Titanium Surface Roughing Treatments contribute to Higher Interaction with Salivary Proteins MG2 and Lactoferrin." Journal of Contemporary Dental Practice 16, no. 2 (2015): 141–46. http://dx.doi.org/10.5005/jp-journals-10024-1651.

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ABSTRACT Some surface treatments performed on titanium can alter the composition of salivary pellicle formed on this abiotic surface. Such treatments modify the titanium's surface properties and can promote higher adsorption of proteins, which allow better integration of titanium to the biotic system. Purpose This study aimed to evaluate the interactions between salivary proteins and titanium disks with different surface treatments. Materials and methods Machined titanium disks (n = 48) were divided into four experimental groups (n = 12), according to their surface treatments: surface polishin
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KINO, Keisuke. "Titanium Anodizing - Color Titanium Method." Journal of The Surface Finishing Society of Japan 73, no. 1 (2022): 38–40. http://dx.doi.org/10.4139/sfj.73.38.

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Suzuki, R. O., Y. Yashima, N. Suzuki, E. Ahmadi, S. Natsui, and T. Kikuchi. "Titanium Production via Titanium Sulfide." MATEC Web of Conferences 321 (2020): 07003. http://dx.doi.org/10.1051/matecconf/202032107003.

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A new metallurgical process via titanium sulfide from ilmenite is proposed and experimentally approved: It consists of several stages; 1) The ilmenite ore is exposed to gaseous CS2 to selectively sulfurize to FeS, which is wet-chemically removed. 2) The residual oxide is again exposed to CS2 to form TiS2. 3) TiS2 is electrochemically reduced to metallic Ti using molten CaCl2-CaS as an application of OS process. TiFeO3 was exposed to Ar-CS2 mixed gas flow at 1173 K to form the mixture of FeS+TiO2. FeS was easily separated by immersing in H2SO4 solution at 313 K. After recovery of TiO2, it was c
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Firstov, S. A., S. V. Tkachenko, and N. N. Kuz’menko. "Titanium “irons” and titanium “steels”." Metal Science and Heat Treatment 51, no. 1-2 (2009): 12–18. http://dx.doi.org/10.1007/s11041-009-9119-7.

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Morsi, K. "Review: titanium–titanium boride composites." Journal of Materials Science 54, no. 9 (2019): 6753–71. http://dx.doi.org/10.1007/s10853-018-03283-w.

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Pribytkov, Gennady A., Anton V. Baranovskiy, Victoria V. Korzhova, Irina A. Firsina, Kirill O. Akimov, and Vladimir P. Krivopalov. "Study of synthesis products in mechanically activated mixtures of copper titanides with carbon." Himičeskaâ fizika i mezoskopiâ 26, no. 1 (2024): 103–11. http://dx.doi.org/10.62669/17270227.2024.1.10.

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Metal matrix composites reinforced with dispersed carbide particles have an optimal combination of strength and wear resistance. The composites are used as structural materials, wear-resistant materials and coatings as well as functional materials. Copper matrix composites for electrical purposes are strengthened with particles of refractory compounds (carbides, borides, silicides). They are used to manufacture breaking electrical contacts which have increased resistance to erosion under the electric arc exposure. The highest arc erosion resistance is achieved by composites with a structure, i
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P., D. KICHAMBARE, and B. KHARAT R. "Photoelectrochemical Studies on Titanium Molybdate." J. Indian Chem. Soc. Vol. 66, Jul 1989 (1989): 441–44. https://doi.org/10.5281/zenodo.5959563.

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Department oi Chemistry, Institute oi Science, Nagpur -440 001 <em>Manuscript received 9&nbsp;September&nbsp;1988, revised&nbsp;17 April&nbsp;1989, accepted 15 May 1989</em> Titanium molybdate was prepared from solution&nbsp;phase. lts&nbsp;chemical composition&nbsp;was determined by estimating the metal contents. Tile material was characterised by&nbsp;X-ray diffraction, electrical conductivity&nbsp;and diffuse reflectance spectroscopy.&nbsp;The phototoelectrochemical properties of titanium molybdate are reported. The flat-band&nbsp;potential Is located at - 0.53 V vs SCE. The conversion effi
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Kováčik, Peter, Vladimír Šimanský, Pavel Ryant, Marek Renčo, and Jozef Hudec. "Determination of the Titanium Contents in the Winter Oilseed Rape Plants (Brassica napus L.) by the Application of Fertilizer Containing Titanium." Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis 64, no. 1 (2016): 81–90. http://dx.doi.org/10.11118/actaun201664010081.

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In order to obtain the information about changes of titanium contents in the phytomass during the growing season of winter oilseed rape and about the titanium contents drawn by the rape yield during two farming years the small plot field trial was established. In the trial the fertilizer Mg-Titanit (MgTi) containing 8.5 g of titanium in 1 liter was used. The experiment consisted of 5 treatments. 0 – control treatment without MgTi fertilizer; 2xTi0.2 – two applications of MgTi in the dose of 0.2 l/ha; 3xTi0.2 – three applications of MgTi in the dose of 0.2 l/ha; 2xTi0.4 – two applications of Mg
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Savargaonkar, Aniruddha Vijay, Emma Holloway, Liszt Y. C. Madruga, Bruno L. Pereira, Paulo Soares, and Ketul C. Popat. "Anti-Bacterial Properties and Hemocompatibility of Alkali Treated Nano-Structured Micro-Porous Titanium Surfaces." Biomimetics 10, no. 2 (2025): 115. https://doi.org/10.3390/biomimetics10020115.

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Titanium and its alloys have been the material of choice for orthopedic implants due to their excellent physical properties as well as biocompatibility. However, titanium is not able to integrate with bone due to the mismatch of mechanical properties. Additionally, bone has a micro–nano hierarchy, which is absent on titanium’s surface. A potential solution to the former is to make the surfaces porous to bring the mechanical properties closer to that of the bone, and a solution for the latter is to fabricate nanostructures. In this study, micro-porous titanium surfaces were hydrothermally treat
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Debajyoti, Datta, Nandi Ranjita, Goel Preeti, Das Samiran, Majumdar Sayan, and Roy Shubhabrata. "Ultraviolet photofunctionalization: A review." Journal of Orofacial Rehabilitation 4, no. 1 (2024): 17–21. https://doi.org/10.5281/zenodo.11045896.

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<strong>Abstract</strong> <strong>Objective</strong>: Greater biologic capabilities in implant surfaces are required to address the challenges and rising expectations in implant therapy. <strong>Background:</strong> The results of current in vitro and in vivo investigations on titanium's ultraviolet (UV) photofunctionalization are compiled in this article. <strong>Method:</strong> The term "UV photofunctionalization" describes a comprehensive phenomenon of surface alteration of titanium after exposure to UV light, encompassing modifications to physicochemical properties and enhancements to bio
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Sooknoi, Tawan, Siriya Jiamesakul, Sitthisuntron Supothina, Angkhana Jaroenworaluck, Thammarat Panyathanmaporn, and Kannikar Juengsuwattananon. "G-1 Metal-loaded Titanium Dioxide Nanoparticles as Oxidation Catalyst(Session: Titanium Oxide)." Proceedings of the Asian Symposium on Materials and Processing 2006 (2006): 126–27. http://dx.doi.org/10.1299/jsmeasmp.2006.126.

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Najafova, Lamia, and Hüseyin Mehmet Kurtulmuş. "Protetik Diş Tedavisinde Titanyum Alerjisi Titanium Allergy In Prosthodontics." AYDIN DENTAL 6, no. 2 (2015): 97–103. http://dx.doi.org/10.17932/iau.dental.2015.009/dental_v06i2006.

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Francis, J. A. "Titanium." Materials Science and Technology 35, no. 3 (2019): 247. http://dx.doi.org/10.1080/02670836.2019.1573031.

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Peacock, David. "Titanium:." Anti-Corrosion Methods and Materials 39, no. 12 (1992): 4–12. http://dx.doi.org/10.1108/eb007316.

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CONNELLY, THOMAS M. "TITANIUM." Chemical & Engineering News 81, no. 36 (2003): 70. http://dx.doi.org/10.1021/cen-v081n036.p070.

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39

Lynam, Mary. "Titanium." Coordination Chemistry Reviews 127, no. 1-2 (1993): 39–64. http://dx.doi.org/10.1016/0010-8545(93)80054-9.

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40

DeMaris, Rose. "Titanium." New England Review 44, no. 1 (2023): 184. http://dx.doi.org/10.1353/ner.2023.0021.

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41

Yonesawa, K. "Welding of titanium and titanium alloys." Welding International 1, no. 12 (1987): 1131–42. http://dx.doi.org/10.1080/09507118709452163.

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42

Goren, S. D., C. Korn, H. Riesemeier, E. Rössler, and K. Lüders. "Titanium Knight shift in titanium hydride." Physical Review B 34, no. 10 (1986): 6917–23. http://dx.doi.org/10.1103/physrevb.34.6917.

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43

Alivov, Yahya, Z. Y. Fan, and D. Johnstone. "Titanium nanotubes grown by titanium anodization." Journal of Applied Physics 106, no. 3 (2009): 034314. http://dx.doi.org/10.1063/1.3187927.

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44

Tepper, T., D. Shechtman, D. van Heerden, and D. Josell. "fcc titanium in titanium/silver multilayers." Materials Letters 33, no. 3-4 (1997): 181–84. http://dx.doi.org/10.1016/s0167-577x(97)00095-5.

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45

Miralami, Raheleh, Laura Koepsell, Thyagaseely Premaraj, et al. "Comparing Biocompatibility of Nanocrystalline Titanium and Titanium-Oxide with Microcrystalline Titanium." MRS Proceedings 1569 (2013): 91–96. http://dx.doi.org/10.1557/opl.2013.804.

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Abstract (sommario):
ABSTRACTTitanium (Ti) is the material of choice for orthopaedic applications because it is biocompatible and encourages osteoblast ingrowth. It was shown that the biocompatibility of Ti metal is due to the presence of a thin native sub-stoichiometric titanium oxide layer which enhances the adsorption of mediating proteins on the surface [1]. The present studies were devised to evaluate the adhesion, survival, and growth of cells on the surface of new engineered nano-crystal films of titanium and titanium oxides and compare them with orthopaedic-grade titanium with microcrystals. The engineered
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46

M, Saktheesh, and Dr Boopathi R. "Deformation Behaviour and Microstructure Evolution of Titanium Alloys with Hot Working Process." International Journal for Research in Applied Science and Engineering Technology 11, no. 8 (2023): 340–44. http://dx.doi.org/10.22214/ijraset.2023.55131.

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Abstract (sommario):
Abstract: The behaviour of the high-temperature deformation mechanism of titanium alloys at different temperatures and strain rates and the associated changes in the microstructure have been studied. In addition to good heat transfer properties, titanium has a low density, can be reinforced with alloys, and can be deformed and formed to increase strength. Titanium is nonmagnetic and a good conductor of heat. Its coefficient of thermal expansion is slightly lower than that of steel and less than half that of aluminium. Titanium's combination of mechanical and physical properties, as well as its
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47

Andrii, Gonchar, Troshchylo Viktor, Brodskyy Andriy, Yarovynskyi Volodymyr, and Chukhmanov Oleksandr. "Development of a technology to produce titanium powder with a low carbon footprint." Eastern-European Journal of Enterprise Technologies 2, no. 12 (122) (2023): 42–54. https://doi.org/10.15587/1729-4061.2023.276746.

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Abstract (sommario):
This paper reports the analysis of modern technologies for the production of titanium from oxide raw materials. It has been established that current industrial methods for producing titanium require the use of carbon as a reducing agent and, accordingly, cannot decrease carbon emissions without changing the technology. That is why devising a technology for producing titanium with a reduction in emissions of carbon components is a relevant task. So, the object of research is the technology of obtaining titanium from its oxide without the use of carbon components. It was found that an integrated
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48

Benea, Lidia, Iulian Bounegru, Alexandra Forray, Elena Roxana Axente, and Daniela Laura Buruiana. "Preclinical EIS Study of the Inflammatory Response Evolution of Pure Titanium Implant in Hank’s Biological Solution." Molecules 28, no. 12 (2023): 4837. http://dx.doi.org/10.3390/molecules28124837.

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Abstract (sommario):
Pure titanium (Ti) is investigated in a pre-clinical study in Hank’s biological solution using electrochemical methods, open circuit potential, and electrochemical impedance spectroscopy to highlight the time effect in extreme body conditions, such as inflammatory diseases, on degradability due to corrosion processes occurring on the titanium implant. Electrochemical impedance spectroscopy (EIS) data are presented as Nyquist and Bode plots. The results show the increasing reactivity of titanium implants in the presence of hydrogen peroxide, which is an oxygen-reactive compound that describes i
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49

Watazu, Akira, Kay Teraoka, Hirofumi Kido, et al. "Formation of Titanium Oxide/Titanium/Plastic Composites." Key Engineering Materials 361-363 (November 2007): 487–90. http://dx.doi.org/10.4028/www.scientific.net/kem.361-363.487.

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Abstract (sommario):
Titanium oxide/ titanium/ plastic composite implants were formed by coating commercially pure titanium thin films on the surfaces of plastic cylinders by DC magnetron sputtering method. The composite is uniformly formed and the surface of the composite implant is smooth. The implants in rat tibias were not broken and the films on the surfaces of the samples did not decompose. The samples with bone were able to cut by diamond knife and observations between bone and titanium oxide on titanium by TEM succeeded. Therefore, the composite is useful for implants or observations the interactions betwe
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50

DAI, J. J., and S. Q. HOU. "LASER GAS NITRIDING OF TITANIUM AND TITANIUM ALLOYS." Surface Review and Letters 16, no. 06 (2009): 789–96. http://dx.doi.org/10.1142/s0218625x09013311.

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Abstract (sommario):
Titanium and titanium alloys are widely used in many fields due to some of their characteristics such as light density, high strength, and excellent corrosion resistance. However, poor mechanical performances limit their practical applications. Laser gas nitriding is a promising method used to improve the surface properties of components. Recent developments on laser gas nitriding of titanium and titanium alloys are reviewed. The processing parameters have important effects on the resulting characteristics of titanium and titanium alloys. The resulting microstructure and properties of laser ga
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