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Development of bioinspired damage-tolerant calcium phosphate bulk materials.
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- Science & Technology of Advanced Materials, 2023, v. 24, n. 1, p. 1, doi. 10.1080/14686996.2023.2261836
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- Article
Electrical characterizations of Al<sub>2</sub>O<sub>3</sub>/ITO grain boundary composites.
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- Journal of Asian Ceramic Societies, 2022, v. 10, n. 2, p. 482, doi. 10.1080/21870764.2022.2073646
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- Article
Examination of pyroelectric power generation over a wide temperature range by controlling the Zr:Sn composition ratio of PLZST.
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- Journal of Asian Ceramic Societies, 2022, v. 10, n. 1, p. 99, doi. 10.1080/21870764.2021.2013145
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- Article
Effect of nitrogen gas pressure during heat treatment on the morphology of silicon nitride fibers synthesized by carbothermal nitridation.
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- Journal of Asian Ceramic Societies, 2018, v. 6, n. 4, p. 401, doi. 10.1080/21870764.2018.1542969
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- Article
Carbon‐Coated Electrospun V<sub>2</sub>O<sub>5</sub> Nanofibers as Photoresponsive Cathode for Lithium‐Ion Batteries.
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- Advanced Engineering Materials, 2023, v. 25, n. 1, p. 1, doi. 10.1002/adem.202200765
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- Article
Anodic TiO nanotubes powder and its application in dye-sensitized solar cells.
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- Journal of Nanoparticle Research, 2011, v. 13, n. 12, p. 6409, doi. 10.1007/s11051-011-0393-0
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Morphology modification of TiO nanotubes by controlling the starting material crystallite size for chemical synthesis.
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- Journal of Nanoparticle Research, 2011, v. 13, n. 6, p. 2319, doi. 10.1007/s11051-010-9990-6
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- Article
Effect of synthesis temperature on the properties and photocatalytic performance of peroxo-titanate nanotubes prepared by bottom-up synthesis method.
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- Discover Materials, 2024, v. 4, n. 1, p. 1, doi. 10.1007/s43939-024-00127-0
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- Article
Effects of Cation Exchange in Rhodamine B Photocatalytic Degradation Using Peroxo-Titanate Nanotubes.
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- Nanomaterials (2079-4991), 2024, v. 14, n. 14, p. 1170, doi. 10.3390/nano14141170
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- Article
Effects of Annealing Temperature on the Crystal Structure, Morphology, and Optical Properties of Peroxo-Titanate Nanotubes Prepared by Peroxo-Titanium Complex Ion.
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- Nanomaterials (2079-4991), 2020, v. 10, n. 7, p. 1331, doi. 10.3390/nano10071331
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- Article
Comparative study on the photocatalytic properties of AgPO fabricated by different methods.
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- Research on Chemical Intermediates, 2017, v. 43, n. 9, p. 5261, doi. 10.1007/s11164-017-3055-8
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- Article
Fine Ti‐dispersed Al<sub>2</sub>O<sub>3</sub> composites and their mechanical and electrical properties.
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- Journal of the American Ceramic Society, 2018, v. 101, n. 7, p. 3181, doi. 10.1111/jace.15472
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- Article
Contact Damage of Silicon Carbide/Boron Nitride Nanocomposites.
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- Journal of the American Ceramic Society, 2007, v. 90, n. 10, p. 3341, doi. 10.1111/j.1551-2916.2007.01894.x
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- Article
Mechanical and Magnetic Properties of Novel Yttria-Stabilized Tetragonal Zirconia/Ni Nanocomposite Prepared by the Modified Internal Reduction Method.
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- Journal of the American Ceramic Society, 2005, v. 88, n. 6, p. 1468, doi. 10.1111/j.1551-2916.2005.00243.x
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Synthesis of Bismuth Sodium Titanate Nanosized Powders by Solution/Sol-Gel Process.
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- Journal of the American Ceramic Society, 2003, v. 86, n. 9, p. 1464, doi. 10.1111/j.1151-2916.2003.tb03497.x
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Solid-Solution Effects of a Small Amount of Nickel Oxide Addition on Phase Stability and Mechanical Properties of Yttria-Stabilized Tetragonal Zirconia Polycrystals.
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- Journal of the American Ceramic Society, 2003, v. 86, n. 3, p. 523, doi. 10.1111/j.1151-2916.2003.tb03334.x
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- Article
Machinability of Silicon Nitride/Boron Nitride Nanocomposites.
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- Journal of the American Ceramic Society, 2002, v. 85, n. 11, p. 2689, doi. 10.1111/j.1151-2916.2002.tb00515.x
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Fabrication and Microstructure of Silicon Nitride/Boron Nitride Nanocomposites.
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- Journal of the American Ceramic Society, 2002, v. 85, n. 11, p. 2678, doi. 10.1111/j.1151-2916.2002.tb00514.x
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Fabrication and Characterization of Cordierite/Zircon Composites by Reaction Sintering: Formation Mechanism of Zircon.
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- Journal of the American Ceramic Society, 2002, v. 85, n. 6, p. 1430, doi. 10.1111/j.1151-2916.2002.tb00292.x
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Preparation and Electric Properties of Dense Nanocrystalline Zinc Oxide Ceramics.
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- Journal of the American Ceramic Society, 2002, v. 85, n. 4, p. 1016, doi. 10.1111/j.1151-2916.2002.tb00214.x
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- Article
Effect of MgO Doping on the Phase Transformations of BaTiO<sub>3</sub>.
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- Journal of the American Ceramic Society, 2000, v. 83, n. 1, p. 12, doi. 10.1111/j.1151-2916.2000.tb01156.x
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Manufacturing Nano-Diphasic Materials from Natural Dolomite: In Situ Observation of Nanophase Formation Behavior.
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- Journal of the American Ceramic Society, 1997, v. 80, n. 11, p. 2949, doi. 10.1111/j.1151-2916.1997.tb03218.x
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Reduction and Sintering of a Nickel-Dispersed-Alumina Composite and Its Properties.
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- Journal of the American Ceramic Society, 1997, v. 80, n. 5, p. 1139, doi. 10.1111/j.1151-2916.1997.tb02956.x
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Effect of grain growth and measurement on fracture toughness of silicon nitride ceramics.
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- Journal of Materials Science, 1999, v. 34, n. 22, p. 5543, doi. 10.1023/A:1004724814778
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- Article
Effect of pure-solvents without deflocculants for finer SiC particle dispersed MgO based composite.
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- Journal of Materials Science, 1999, v. 34, n. 15, p. 3789, doi. 10.1023/A:1004696615409
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Fabrication and mechanical properties of fine-tungsten-dispersed alumina-based composites.
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- Journal of Materials Science, 1997, v. 32, n. 15, p. 3943, doi. 10.1023/A:1018668900343
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- Article
Osteogenic Activity of Titanium Surfaces with Nanonetwork Structures [Retraction].
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- International Journal of Nanomedicine, 2021, v. 16, p. 5037, doi. 10.2147/IJN.S330283
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Effect of mussel adhesive protein coating on osteogenesis in vitro and osteointegration in vivo to alkali-treated titanium with nanonetwork structures.
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- International Journal of Nanomedicine, 2019, v. 14, p. 3831, doi. 10.2147/IJN.S206313
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Effect of ultraviolet treatment on bacterial attachment and osteogenic activity to alkalitreated titanium with nanonetwork structures.
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- International Journal of Nanomedicine, 2017, v. 12, p. 4633, doi. 10.2147/IJN.S136273
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Osteogenic activity of titanium surfaces with nanonetwork structures.
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- International Journal of Nanomedicine, 2014, v. 9, p. 1741, doi. 10.2147/IJN.S58502
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Front Cover: Direct In Situ Polymer Modification of Titania Nanomaterial Surfaces via UV‐irradiated Radical Polymerization (Asian J. Org. Chem. 10/2024).
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- Asian Journal of Organic Chemistry, 2024, v. 13, n. 10, p. 1, doi. 10.1002/ajoc.202481001
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Direct In Situ Polymer Modification of Titania Nanomaterial Surfaces via UV‐irradiated Radical Polymerization.
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- Asian Journal of Organic Chemistry, 2024, v. 13, n. 10, p. 1, doi. 10.1002/ajoc.202400270
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Atomic arrangement analysis and crystal growth mechanism of HAp nanocrystal synthesized from amorphous calcium phosphate.
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- Journal of the American Ceramic Society, 2024, v. 107, n. 5, p. 2809, doi. 10.1111/jace.19631
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Fine TiC dispersed Al<sub>2</sub>O<sub>3</sub> composites fabricated via in situ reaction synthesis and conventional process.
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- Journal of the American Ceramic Society, 2021, v. 104, n. 6, p. 2753, doi. 10.1111/jace.17702
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CNT‐induced TiC toughened Al<sub>2</sub>O<sub>3</sub>/Ti composites: Mechanical, electrical, and room‐temperature crack‐healing behaviors.
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- Journal of the American Ceramic Society, 2020, v. 103, n. 8, p. 4573, doi. 10.1111/jace.17152
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Electrochemically assisted room‐temperature crack healing of ceramic‐based composites.
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- Journal of the American Ceramic Society, 2019, v. 102, n. 7, p. 4236, doi. 10.1111/jace.16264
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- Article
Crystal Growth of Thiol-Stabilized Gold Nanoparticles by Heat-Induced Coalescence.
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- Nanoscale Research Letters, 2010, v. 5, n. 5, p. 813, doi. 10.1007/s11671-010-9565-6
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Incorporation of tetracarboxylate ions into octacalcium phosphate for the development of next-generation biofriendly materials.
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- Communications Chemistry, 2021, v. 4, n. 1, p. 1, doi. 10.1038/s42004-020-00443-5
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The effects of sintering atmospheres on piezoelectric performances of Co‐doped Ba<sub>0.88</sub>Ca<sub>0.12</sub>Zr<sub>0.12</sub>Ti<sub>0.88</sub>O<sub>3</sub> ceramics.
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- International Journal of Applied Ceramic Technology, 2023, v. 20, n. 3, p. 1774, doi. 10.1111/ijac.14317
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The effects of microstructure on mechanical and electrical properties of W dispersed Al<sub>2</sub>O<sub>3</sub> ceramics.
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- International Journal of Applied Ceramic Technology, 2022, v. 19, n. 3, p. 1746, doi. 10.1111/ijac.13985
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Role of CeAl<sub>11</sub>O<sub>18</sub> in reinforcing Al<sub>2</sub>O<sub>3</sub>/Ti composites by adding CeO<sub>2</sub>.
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- International Journal of Applied Ceramic Technology, 2021, v. 18, n. 1, p. 170, doi. 10.1111/ijac.13629
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Synthesis of Ti O<sub>2− x</sub> N<sub> y</sub>/ Ag- Pb Mo O<sub>4</sub> Composite and Their Photocatalytic Activity Under Simulated Solar Light Irradiation.
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- International Journal of Applied Ceramic Technology, 2015, v. 12, n. 3, p. 577, doi. 10.1111/ijac.12245
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Synthesis and Characterization of Ti<sub>1− x</sub>Sn<sub> x</sub>O<sub>2</sub> Nanoparticles and Nanotubes and their Photovoltaic Properties as Dye-Sensitized Solar Cell Photoelectrodes.
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- International Journal of Applied Ceramic Technology, 2011, v. 8, n. 6, p. 1353, doi. 10.1111/j.1744-7402.2011.02610.x
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Wear Resistance of SiO<sub>2</sub>-Doped Y-TZP Grinding Media During Wet Milling.
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- International Journal of Applied Ceramic Technology, 2010, v. 7, n. 4, p. 502, doi. 10.1111/j.1744-7402.2009.02360.x
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- Article
Influence of the size-controlled TiO nanotubes fabricated by low-temperature chemical synthesis on the dye-sensitized solar cell properties.
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- Journal of Materials Science, 2011, v. 46, n. 6, p. 1749, doi. 10.1007/s10853-010-4994-2
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Preparation of mullite-based iron magnetic nanocomposite powders by reduction of solid solution.
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- Journal of Materials Science, 2009, v. 44, n. 10, p. 2489, doi. 10.1007/s10853-009-3319-9
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- Article
Fluorescence and physical properties of thulium and erbium co-doped dental zirconia.
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- Dental Materials Journal, 2021, v. 40, n. 5, p. 1080, doi. 10.4012/dmj.2020-387
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In vivo bioresorbability and bone formation ability of sintered highly pure calcium carbonate granules: 1202.
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- Dental Materials Journal, 2021, v. 40, n. 5, p. 1202, doi. 10.4012/dmj.2020-254
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Fluorescence of thulium-doped translucent zirconia.
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- Dental Materials Journal, 2018, v. 37, n. 6, p. 1010, doi. 10.4012/dmj.2017-384
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Translucency and low-temperature degradation of silica-doped zirconia: A pilot study.
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- Dental Materials Journal, 2016, v. 35, n. 4, p. 571, doi. 10.4012/dmj.2015-274
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