Saengdet Ploypailin Milin, Ogawa Makoto
School of Energy Science and Engineering, Vidyasirimedhi Institute of Science and Technology (VISTEC) 555 Moo 1 Payupnai, Wangchan Rayong 21210 Thailand
RSC Adv. 2021 Apr 29;11(26):15969-15976. doi: 10.1039/d1ra00827g. eCollection 2021 Apr 26.
Well-defined belt-shaped particles of octacalcium phosphate were prepared by mixing aqueous solutions of calcium acetate and that of sodium phosphate monobasic with the aid of a micro-flow reactor. Higher crystallinity and narrower particle size distribution were achieved by the micro-flow reactor if compared with the results of the batch reaction using the same solutions. The width of the belt was controlled by the mixing temperature (0.8 and 2.3 μm for the preparation at 50 and 70 °C, respectively). Post mixing aging at 50 °C, resulted in the directional growth of belt-shaped particles to obtain particles with the length of 17 μm (aspect ratio of 53). XRD and TEM analysis indicated that the micro-flow reactor could separate nucleation and growth allowing preferential growth along the -direction.
通过微流反应器将醋酸钙水溶液和磷酸二氢钠水溶液混合,制备出了形状规则的八钙磷酸盐水带状颗粒。与使用相同溶液进行间歇反应的结果相比,微流反应器实现了更高的结晶度和更窄的粒径分布。带状颗粒的宽度由混合温度控制(50℃和70℃下制备的颗粒带宽分别为0.8μm和2.3μm)。在50℃下进行混合后老化,导致带状颗粒定向生长,从而获得长度为17μm的颗粒(长径比为53)。X射线衍射(XRD)和透射电子显微镜(TEM)分析表明,微流反应器可以分离成核和生长过程,使颗粒沿特定方向优先生长。