Institute of Chemistry, Vilnius University, Naugarduko 24, LT-03225 Vilnius, Lithuania.
Department of Chemistry, Georgetown University, 37th and O Streets NW, Washington, D.C. 20057, United States.
ACS Biomater Sci Eng. 2021 Aug 9;7(8):3586-3593. doi: 10.1021/acsbiomaterials.1c00335. Epub 2021 Jul 28.
In the present work, a series of zinc whitlockite (CaZn(HPO)(PO)) powders was synthesized by a low-temperature dissolution-precipitation process for the first time. The phase conversion from calcium hydroxyapatite to zinc whitlockite occurred in an acidic medium in the presence of Zn ions. Variable chemical composition of the synthesis products was achieved by changing Ca-to-Zn molar ratio in the reaction mixture. Investigation of the phase evolution as a function of time demonstrated that phase-pure zinc whitlockite powders can be synthesized in just 3 h. It is also demonstrated that single-phase products can be obtained when the Ca-to-Zn ratio in the reaction medium is in the range from 9 to 30. With higher or lower ratios, neighboring crystal phases such as scholzite or calcium hydroxyapatite were obtained. The morphology of the synthesized powders was found to be dependent on the chemical composition, transforming from hexagonal to rhombohedral plates with the increase of Zn content. Thermal stability studies revealed that the synthesized compounds were thermally unstable and decomposed upon heat treatment.
在本工作中,首次通过低温溶解-沉淀法合成了一系列锌白磷矿(CaZn(HPO)(PO))粉末。在存在 Zn 离子的酸性介质中,钙羟基磷灰石向锌白磷矿发生相转变。通过改变反应混合物中 Ca 与 Zn 的摩尔比,可以实现合成产物的可变化学成分。研究表明,相纯的锌白磷矿粉末可以在短短 3 小时内合成。还证明了当反应介质中的 Ca 与 Zn 比值在 9 至 30 之间时,可以获得单相产物。当比值较高或较低时,会获得相邻的晶体相,如锌尖晶石或钙羟基磷灰石。发现合成粉末的形态取决于化学成分,随着 Zn 含量的增加,从六方板转变为菱面体板。热稳定性研究表明,合成化合物热不稳定,经热处理会分解。