【正文】
因?yàn)橛腥毕莸?BO 電子結(jié)構(gòu)占據(jù)了 HAP 中 易失去 OH和 PO43的位置 。 參考文獻(xiàn) [1] SONG Yunjiang, WEN Shulin. Preparation and physicochemical process of nanosized hydroxyapatite powders with high purity [J]. Journal of Inanic Materials, 2021, 17(5): 985?991. [2] GUO Lianfeng, ZHANG Wenguang, WANG Chengtao. Synthesis of nanoparticle hydroxyapatite and crystallization control [J]. Chinese Journal of Inanic Chemistry, 2021, 20(3): 291?295. (in Chinese) [3] HAN Yingchao, WANG Xinyu, LI Shipu, YAN Yuhua. Nanosized HAP powders prepared by autobustion methods [J]. Journal of the Chinese Ceramic Society, 2021, 30(3): 38?44. (in Chinese) [4] LIU Lei, LI Shengwei, TIAN Weidong. A clinical study on immediate implantation of particulate hydroxyapatite artificial bone after teeth extraction [J]. West China Journal of Stomatology, 2021, 20(1): 42?44. (in Chinese) [5] FENG Linyun, LI Shipu, YAN Yuhua. Inhibition of HAP nanoparticles on W256 sara of rats in vivo [J]. Chinese Journal of Biomedical Engineering, 2021, 10(7): 302?306. (in Chinese) [6] KEYKHOSRAVANI M., HARVEY A. Comprehensive identification of posttranslational modifications of rat bone osteopontin by mass spectrometry [J]. Biochemistry, 2021, 44:6990?7003. [7] MILEV A., KANNANGARA G. S. K, NISSAN B. B. Morphological stability of hydroxyapatite precursor [J]. Materials Letters, 2021, 57:1960?1965. [8] KIM H W, KONG Y M, KOH Y H. Pressureless sintering and mechanical and biological properties of fluorhydroxyapatite posite with zirconia [J]. Journal of American Ceramic Society,2021, 86(12): 2019?2026. [9] YE Bin, CUI Kai, FENG Qingling. Synthesis and high temperature resistance properties of sil