292
Views
17
CrossRef citations to date
0
Altmetric
Original Articles

Sintering and Properties of Dense Manganese-Doped Calcium Phosphate Bioceramics Prepared Using Sol-Gel Derived Nanopowders

, , , , &
Pages 908-914 | Received 03 Oct 2010, Accepted 08 Jan 2011, Published online: 27 Jun 2011

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (5)

I. Sopyan, Gunawan, Q. H. Shah & M. Mel. (2016) Fabrication and Sintering Behavior of Zinc-Doped Biphasic Calcium Phosphate Bioceramics. Materials and Manufacturing Processes 31:6, pages 713-718.
Read now
Zhi Huang, Qi Zhou, Xiaofeng Wang & Zhengchun Liu. (2016) A Biomimetic Synthesis Process for Sr2+, HPO42−, and CO32− Substituted Nanohydroxyapatite. Materials and Manufacturing Processes 31:2, pages 217-222.
Read now
Zhi Huang, Kechao Zhou & Dou Zhang. (2014) Porous Hydroxyapatite Scaffolds with Unidirectional Macrochannels Prepared via Ice/Fiber-Templated Method. Materials and Manufacturing Processes 29:1, pages 27-31.
Read now
Li-Li Wang, Xiu-Feng Wang, Xu Ding & Hong-Tao Jiang. (2013) Preparation of HA-Bioglass-Al2O3 Biological Composite. Materials and Manufacturing Processes 28:9, pages 980-983.
Read now
Wang Chao, Xue Xiangxin, Cao Xiaozhou, Zhang Lu, Zhang Jian, Yang He & Cheng Gongjin. (2013) A New Method of Fabricating AlN-TiB2 Composite Ceramics. Materials and Manufacturing Processes 28:8, pages 953-956.
Read now

Articles from other publishers (12)

Awais Nisar, Sajid Iqbal, Muhammad Atiq Ur Rehman, Asif Mahmood, Muhammad Younas, Syed Zahid Hussain, Qanita Tayyaba & Attaullah shah. (2023) Study of physico-mechanical and electrical properties of cerium doped hydroxyapatite for biomedical applications. Materials Chemistry and Physics 299, pages 127511.
Crossref
Qipeng Li, Cong Feng, Quanle Cao, Wei Wang, Zihan Ma, Yonghao Wu, Tinghan He, Yangtian Jing, Wenxuan Tan, Tongxiao Liao, Jie Xing, Xiangfeng Li, Ye Wang, Yumei Xiao, Xiangdong Zhu & Xingdong Zhang. (2023) Strategies of strengthening mechanical properties in the osteoinductive calcium phosphate bioceramics. Regenerative Biomaterials 10.
Crossref
Duarte F. Macedo, Ana F. Cunha, João F. Mano, Mariana B. Oliveira & Abílio P. Silva. (2022) Tricalcium phosphate doped with Mg2+ and combinations of Mn2+, Zn2+ and Fe3+: A DoE study on sintering, mechanical, microstructural and biological properties. Ceramics International 48:14, pages 20467-20477.
Crossref
Meenakshi Kamaraj, Uday Kiran Roopavath, Pravin Shankar Giri, Nandha Kumar Ponnusamy & Subha Narayan Rath. (2022) Modulation of 3D Printed Calcium-Deficient Apatite Constructs with Varying Mn Concentrations for Osteochondral Regeneration via Endochondral Differentiation. ACS Applied Materials & Interfaces 14:20, pages 23245-23259.
Crossref
Peifang Dee, Ha Young You, Swee-Hin Teoh & Hortense Le Ferrand. (2020) Bioinspired approaches to toughen calcium phosphate-based ceramics for bone repair.. Journal of the Mechanical Behavior of Biomedical Materials 112, pages 104078.
Crossref
Kunio Ishikawa, Edita Garskaite & Aivaras Kareiva. (2020) Sol–gel synthesis of calcium phosphate-based biomaterials—A review of environmentally benign, simple, and effective synthesis routes. Journal of Sol-Gel Science and Technology 94:3, pages 551-572.
Crossref
Tankut Ates, Sergey V. Dorozhkin, Omer Kaygili, Mustafa Kom, Ismail Ercan, Niyazi Bulut, Fatih Firdolas, Serhat Keser, N. Canan Gursoy, Ibrahim H. Ozercan, Yesari Eroksuz & Turan İnce. (2019) The effects of Mn and/or Ni dopants on the in vitro/in vivo performance, structural and magnetic properties of β-tricalcium phosphate bioceramics. Ceramics International 45:17, pages 22752-22758.
Crossref
R Lakshmi, Rajan Choudhary, Deepalekshmi Ponnamma, Kishor Kumar Sadasivuni & Sasikumar Swamiappan. (2019) Wollastonite/forsterite composite scaffolds offer better surface for hydroxyapatite formation. Bulletin of Materials Science 42:3.
Crossref
Nonita Sarin, K. J. Singh, Raminderjit Kaur, Jatinder Singh & Parminder Kaur. Evaluation of bone regeneration ability of 42SiO2-37CaO-10P2O5-6MnO-5ZnO bioceramic composition. Evaluation of bone regeneration ability of 42SiO2-37CaO-10P2O5-6MnO-5ZnO bioceramic composition.
Sima Hosseini & Hamidreza Farnoush. (2018) Characterization and in vitro bioactivity of electrophoretically deposited Mn-modified bioglass-alginate nanostructured composite coatings . Materials Research Express 6:2, pages 025404.
Crossref
Yue Luo, Donghai Li, Jinhai Zhao, Zhouyuan Yang & PengDe Kang. (2018) In vivo evaluation of porous lithium-doped hydroxyapatite scaffolds for the treatment of bone defect. Bio-Medical Materials and Engineering 29:6, pages 699-721.
Crossref
Yaping Wang, Xu Yang, Zhipeng Gu, Huanhuan Qin, Li Li, Jingwang Liu & Xixun Yu. (2016) In vitro study on the degradation of lithium-doped hydroxyapatite for bone tissue engineering scaffold. Materials Science and Engineering: C 66, pages 185-192.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.