Kang Minsung, Kim Jungmo, Lim Hongjin, Ko Jaehyoung, Kim Hong-Sik, Joo Yongho, Moon Se Youn, Jang Se Gyu, Lee Eunji, Ahn Seokhoon
Institute of Advanced Composite Materials, Korea Institute of Science and Technology (KIST), Jeonbuk 55324, Republic of Korea.
School of Materials Science and Engineering, Gwangju Institute of Science and Technology (GIST), Gwangju 61005, Republic of Korea.
Nanomaterials (Basel). 2023 Sep 19;13(18):2593. doi: 10.3390/nano13182593.
Boron nitride nanotubes (BNNTs) were purified without the use of a dispersant by controlling the surface tension and steric repulsion of solvent molecules. This method effectively enhanced the difference in solubilities of impurities and BNNTs. The purification process involved optimizing the alkyl-chains of alcohol solvents and adjusting the concentration of alcohol solvent in water to regulate surface tension and steric repulsion. Among the solvents tested, a 70 wt% t-butylalcohol in water mixture exhibited the highest selective isolation of BNNTs from impurities based on differences in solubilities. This favorable outcome was attributed to the surface tension matching with BNNTs, steric repulsion from bulky alkyl chain structures, and differences in interfacial energy between BNNT-liquid and impurity-liquid interfaces. Through this optimized purification process, impurities were removed to an extent of up to 93.3%. Additionally, the purified BNNTs exhibited a distinct liquid crystal phase, which was not observed in the unpurified BNNTs.
通过控制溶剂分子的表面张力和空间排斥力,在不使用分散剂的情况下对氮化硼纳米管(BNNTs)进行了纯化。该方法有效地提高了杂质与BNNTs在溶解度上的差异。纯化过程包括优化醇类溶剂的烷基链,并调整醇类溶剂在水中的浓度以调节表面张力和空间排斥力。在所测试的溶剂中,70 wt%叔丁醇与水的混合物基于溶解度差异,对BNNTs与杂质表现出最高的选择性分离。这一良好结果归因于与BNNTs匹配的表面张力、庞大烷基链结构产生的空间排斥力,以及BNNT-液体和杂质-液体界面之间界面能的差异。通过这种优化的纯化过程,杂质去除率高达93.3%。此外,纯化后的BNNTs呈现出独特的液晶相,而未纯化的BNNTs中未观察到这种现象。