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1
Nanodimensional and Nanocrystalline Apatites and Other Calcium Orthophosphates in Biomedical Engineering, Biology and Medicine
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Nanodimensional and Nanocrystalline Apatites and Other Calcium Orthophosphates in Biomedical Engineering, Biology and Medicine

Dorozhkin, Sergey V.

Materials, 2009-11, Vol.2 (4), p.1975-2045 [Periódico revisado por pares]

Basel: MDPI AG

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2
Biologically Inspired Collagen/Apatite Composite Biomaterials for Potential Use in Bone Tissue Regeneration-A Review
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Biologically Inspired Collagen/Apatite Composite Biomaterials for Potential Use in Bone Tissue Regeneration-A Review

Kołodziejska, Barbara ; Kaflak, Agnieszka ; Kolmas, Joanna

Materials, 2020-04, Vol.13 (7), p.1748 [Periódico revisado por pares]

Switzerland: MDPI AG

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3
Bone apatite anisotropic structure control via designing fibrous scaffolds
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Bone apatite anisotropic structure control via designing fibrous scaffolds

Lee, Sungho ; Nagata, Fukue ; Kato, Katsuya ; Nakano, Takayoshi

RSC advances, 2020-04, Vol.10 (23), p.13500-13506 [Periódico revisado por pares]

England: Royal Society of Chemistry

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4
A study of bioactive glass-ceramic's mechanical properties, apatite formation, and medical applications
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A study of bioactive glass-ceramic's mechanical properties, apatite formation, and medical applications

Workie, Andualem Belachew ; Shih, Shao-Ju

RSC advances, 2022-08, Vol.12 (36), p.23143-23152 [Periódico revisado por pares]

England: Royal Society of Chemistry

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5
Iron oxide encapsulated by copper-apatite: an efficient magnetic nanocatalyst for N -arylation of imidazole with boronic acid
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Iron oxide encapsulated by copper-apatite: an efficient magnetic nanocatalyst for N -arylation of imidazole with boronic acid

Amadine, Othmane ; Essamlali, Younes ; Amedlous, Abdallah ; Zahouily, Mohamed

RSC advances, 2019-11, Vol.9 (62), p.36471-36478 [Periódico revisado por pares]

England: Royal Society of Chemistry

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6
The solid-state proton NMR study of bone using a dipolar filter: apatite hydroxyl content versus animal age
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The solid-state proton NMR study of bone using a dipolar filter: apatite hydroxyl content versus animal age

Kaflak, Agnieszka ; Moskalewski, Stanisław ; Kolodziejski, Waclaw

RSC advances, 2019-05, Vol.9 (29), p.16909-16918 [Periódico revisado por pares]

England: Royal Society of Chemistry

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7
Development and Research of Inorganic Energy Conversion Materials and Devices —The Effect of Carbonate Ions on the Ionic Conduction of B-type Carbonated Apatite
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Development and Research of Inorganic Energy Conversion Materials and Devices —The Effect of Carbonate Ions on the Ionic Conduction of B-type Carbonated Apatite

TANAKA, Yumi ; YATSUGI, Shigeyuki ; IWASAKI, Suguru

Electrochemistry, 2023/12/28, Vol.91(12), pp.121001-121001 [Periódico revisado por pares]

Tokyo: The Electrochemical Society of Japan

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8
Synergistic Effect of Carbonate Apatite and Autogenous Bone on Osteogenesis
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Synergistic Effect of Carbonate Apatite and Autogenous Bone on Osteogenesis

Atsuta, Ikiru ; Mizokami, Tokihisa ; Jinno, Yohei ; Ji, Bin ; Xie, Tingyu ; Ayukawa, Yasunori

Materials, 2022-11, Vol.15 (22), p.8100 [Periódico revisado por pares]

Switzerland: MDPI AG

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9
Solid-State NMR and Raman Spectroscopic Investigation of Fluoride-Substituted Apatites Obtained in Various Thermal Conditions
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Solid-State NMR and Raman Spectroscopic Investigation of Fluoride-Substituted Apatites Obtained in Various Thermal Conditions

Pajchel, Lukasz ; Borkowski, Leszek

Materials, 2021-11, Vol.14 (22), p.6936 [Periódico revisado por pares]

Basel: MDPI AG

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10
Preparation and Application of Apatite–TiO2 Composite Opacifier: Preventing Titanium Glaze Yellowing through Pre-Combination
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Preparation and Application of Apatite–TiO2 Composite Opacifier: Preventing Titanium Glaze Yellowing through Pre-Combination

Bai, Xuefeng ; Zhang, Han ; Tu, Yu ; Sun, Sijia ; Li, Yangzi ; Ding, Hao ; Bai, Ming ; Chang, Liang ; Zhang, Jianmeng

Materials, 2024-02, Vol.17 (5), p.1056 [Periódico revisado por pares]

Basel: MDPI AG

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