Szałaj Urszula, Świderska-Środa Anna, Chodara Agnieszka, Gierlotka Stanisław, Łojkowski Witold
Institute of High Pressure Physics, Polish Academy of Sciences, Sokołowska 29/37, 01-142 Warsaw, Poland.
Faculty of Materials Engineering, Warsaw University of Technology, Wołoska 41, 02-507 Warsaw, Poland.
Nanomaterials (Basel). 2019 Jul 12;9(7):1005. doi: 10.3390/nano9071005.
Handling and properties of nanoparticles strongly depend on processes that take place on their surface. Specific surface area and adsorption capacity strongly increase as the nanoparticle size decreases. A crucial factor is adsorption of water from ambient atmosphere. Considering the ever-growing number of hydroxyapatite nanoparticles applications, we decided to investigate how the size of nanoparticles and the changes in relative air humidity affect adsorption of water on their surface. Hydroxyapatite nanoparticles of two sizes: 10 and 40 nm, were tested. It was found that the nanoparticle size has a strong effect on the kinetics and efficiency of water adsorption. For the same value of water activity, the quantity of water adsorbed on the surface of 10 nm nano-hydroxyapatite was five times greater than that adsorbed on the 40 nm. Based on the adsorption isotherm fitting method, it was found that a multilayer physical adsorption mechanism was active. The number of adsorbed water layers at constant humidity strongly depends on particles size and reaches even 23 layers for the 10 nm particles. The amount of water adsorbed on these particles was surprisingly high, comparable to the amount of water absorbed by the commonly used moisture-sorbent silica gel.
纳米颗粒的处理和性质很大程度上取决于其表面发生的过程。随着纳米颗粒尺寸的减小,比表面积和吸附容量会显著增加。一个关键因素是从周围大气中吸附水分。考虑到羟基磷灰石纳米颗粒的应用数量不断增加,我们决定研究纳米颗粒的尺寸以及相对空气湿度的变化如何影响其表面的水分吸附。测试了两种尺寸的羟基磷灰石纳米颗粒:10纳米和40纳米。结果发现,纳米颗粒尺寸对水分吸附的动力学和效率有很大影响。在相同的水分活度值下,吸附在10纳米纳米羟基磷灰石表面的水量是吸附在40纳米纳米羟基磷灰石表面水量的五倍。基于吸附等温线拟合方法,发现多层物理吸附机制起作用。在恒定湿度下吸附的水层数强烈取决于颗粒尺寸,对于10纳米的颗粒甚至达到23层。这些颗粒上吸附的水量惊人地高,与常用的吸湿剂硅胶吸收的水量相当。