Keywords
calcium pyrophosphate
electron microscopy
IR spectroscopy
solid-state synthesis
X-ray diffraction
α-tricalcium phosphate
β-tricalcium phosphate
Abstract
The solid-state reaction of CaHPO4 with CaCO3 in a ratio > 2: 1 at 1350°C led to the formation of α-tricalcium phosphate, the subsequent sintering of which at 850°C gave a homogeneous phase of β-tricalcium phosphate, which does not contain crystalline impurities.
References
1.
Liu B., Lun D.
Orthopaedic surgery,
2012
2.
Dorozhkin S.V.
Ceramics International,
2015
3.
Ariizumi T., Kawashima H., Hatano H., Yamagishi T., Oike N., Sasaki T., Umezu H., Xu Y., Endo N., Ogose A.
Journal of Biomaterials and Nanobiotechnology,
2019
4.
Bohner M., Santoni B.L., Döbelin N.
Acta Biomaterialia,
2020
5.
Kwon S., Jun Y., Hong S., Kim H.
Journal of the European Ceramic Society,
2003
6.
Gao P., Zhang H., Liu Y., Fan B., Li X., Xiao X., Lan P., Li M., Geng L., Liu D., Yuan Y., Lian Q., Lu J., Guo Z., Wang Z., et. al.
Scientific Reports,
2016
7.
Jeong J., Kim J.H., Shim J.H., Hwang N.S., Heo C.Y.
Biomaterials Research,
2019
8.
Besprozvannykh V.K., Nifant’ev I.E., Tavtorkin A.N., Levin I.S., Shlyakhtin A.V., Ivchenko P.V.
Mendeleev Communications,
2021
9.
Palmer L.C., Newcomb C.J., Kaltz S.R., Spoerke E.D., Stupp S.I.
Chemical Reviews,
2008
10.
Lee S., Yoon Y., Lee M., Oh N.
Materials Letters,
2007
11.
Li B., Liu Z., Yang J., Yi Z., Xiao W., Liu X., Yang X., Xu W., Liao X.
Materials Science and Engineering C,
2017
12.
Habraken W., Habibovic P., Epple M., Bohner M.
Materials Today,
2016
13.
Sabchyshyn V., Konon I., Ryan L.M., Rosenthal A.K.
Seminars in Arthritis and Rheumatism,
2018
14.
McCarthy G.M., Dunne A.
Nature reviews. Rheumatology,
2018
15.
Wang Y., Wei J., Zeng C., Xie D., Li H., Yang T., Ding X., Cui Y., Xiong Y., Li J., Lei G.
International Journal of Rheumatic Diseases,
2019
16.
Sinusaite L., Grigoraviciute-Puroniene I., Popov A., Ishikawa K., Kareiva A., Zarkov A.
Ceramics International,
2019
17.
Du L., Wang Y.J., Lu Y.C., Luo G.S.
Chemical Engineering Journal,
2013
18.
Fatima A., Mostafa E., Mohamed I., Bahia E.O., Mohamed J., Nawal M., Zineb H.
Mediterranean Journal of Chemistry,
2017
19.
Chaair H., Labjar H., Britel O.
Morphologie,
2017
20.
Sha L., Liu Y., Zhang Q., Hu M., Jiang Y.
Materials Chemistry and Physics,
2011
21.
Bigi A.
Journal of Inorganic Biochemistry,
1997
22.
Liu X., Zhang Y., Xiong K., Yan M.
Journal of Nanoscience and Nanotechnology,
2017
23.
Chabchoub S., Rogez J., Saïd H.
Thermochimica Acta,
2008
24.
10.1016/j.mencom.2021.04.032_bib0120
Gbureck
J. Mater. Sci.: Mater. Med.,
2008
25.
Carrodeguas R.G., De Aza S.
Acta Biomaterialia,
2011
26.
Chemical Transformations of Calcium Phosphates during Production of Ceramic Materials on Their Basis
Putlyaev V.I., Safronova T.V.
Inorganic Materials,
2019
27.
Galea L., Alexeev D., Bohner M., Doebelin N., Studart A.R., Aneziris C.G., Graule T.
Biomaterials,
2015
28.
Raymond S., Maazouz Y., Montufar E.B., Perez R.A., González B., Konka J., Kaiser J., Ginebra M.
Acta Biomaterialia,
2018
29.
Serghini Idrissi M., Rghioui L., Nejjar R., Benarafa L., Saidi Idrissi M., Lorriaux A., Wallart F.
Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy,
2004
30.
Gras P., Teychené S., Rey C., Charvillat C., Biscans B., Sarda S., Combes C.
CrystEngComm,
2013
31.
10.1016/j.mencom.2021.04.032_bib0155
Evdokimov
Nanosyst.: Phys., Chem., Math,
2013
32.
Ryu H., Youn H., Sun Hong K., Chang B., Lee C., Chung S.
Biomaterials,
2002
33.
Safronova T.V., Kiselev A.S., Shatalova T.B., Filippov Y.Y., Gavlina O.T.
Russian Chemical Bulletin,
2020