Bondarenko Lyubov, Illés Erzsébet, Tombácz Etelka, Dzhardimalieva Gulzhian, Golubeva Nina, Tushavina Olga, Adachi Yasuhisa, Kydralieva Kamila
Engineering Department, Moscow Aviation Institute (National Research University), 125993 Moscow, Russia.
Aerospace Department, Moscow Aviation Institute (National Research University), 125993 Moscow, Russia.
Nanomaterials (Basel). 2021 May 27;11(6):1418. doi: 10.3390/nano11061418.
Nowadays, numerous researches are being performed to formulate nontoxic multifunctional magnetic materials possessing both high colloidal stability and magnetization, but there is a demand in the prediction of chemical and colloidal stability in water solutions. Herein, a series of silica-coated magnetite nanoparticles (MNPs) has been synthesized via the sol-gel method with and without establishing an inert atmosphere, and then it was tested in terms of humic acids (HA) loading applied as a multifunctional coating agent. The influence of ambient conditions on the microstructure, colloidal stability and HA loading of different silica-coated MNPs has been established. The XRD patterns show that the content of stoichiometric FeO decreases from 78.8% to 42.4% at inert and ambient atmosphere synthesis, respectively. The most striking observation was the shift of the MNPs isoelectric point from pH ~7 to 3, with an increasing HA reaching up to the reversal of the zeta potential sign as it was covered completely by HA molecules. The zeta potential data of MNPs can be used to predict the loading capacity for HA polyanions. The data help to understand the way for materials' development with the complexation ability of humic acids and with the insolubility of silica gel to pave the way to develop a novel, efficient and magnetically separable adsorbent for contaminant removal.
如今,人们正在进行大量研究以制备兼具高胶体稳定性和磁化强度的无毒多功能磁性材料,但对水溶液中的化学稳定性和胶体稳定性进行预测仍有需求。在此,通过溶胶 - 凝胶法在有无惰性气氛的条件下合成了一系列二氧化硅包覆的磁铁矿纳米颗粒(MNPs),然后以腐殖酸(HA)作为多功能包覆剂进行负载测试。研究了环境条件对不同二氧化硅包覆MNPs的微观结构、胶体稳定性和HA负载量的影响。XRD图谱表明,在惰性气氛和环境气氛合成条件下,化学计量比的FeO含量分别从78.8%降至42.4%。最显著的观察结果是MNPs的等电点从pH约7移至3,随着HA负载量增加,当HA分子完全覆盖MNPs时,ζ电位符号发生反转。MNPs的ζ电位数据可用于预测对HA聚阴离子的负载能力。这些数据有助于理解利用腐殖酸的络合能力和硅胶的不溶性来开发材料的方法,为开发一种新型、高效且可磁分离的用于去除污染物的吸附剂铺平道路。