Tserengombo Baasandulam, Jeong Hyomin, Dolgor Erdenechimeg, Delgado Antonio, Kim Sedong
Department of Energy and Mechanical Engineering, Graduate School, Gyeongsang National University, Jinju 53064, Korea.
Department of Energy and Mechanical Engineering, Institute of Marine Industry, Gyeongsang National University, Cheondaegukchi-Gil 38, Tongyeong 53064, Korea.
Nanomaterials (Basel). 2021 May 18;11(5):1323. doi: 10.3390/nano11051323.
In this work, the effects of a functionalization method involving different conditions and milling processes on the dispersion and thermal and electrical conductivity of multiwalled carbon nanotubes were studied. The surfaces of MWCNTs were modified using a mixture of sulfuric and nitric acid as an acid treatment and potassium persulfate and sodium hydroxide as an alkaline treatment to achieve more hydrophilic MWCNTs. The morphological and structural investigations were carried out using transmission electron microscopy and Fourier transform infrared spectroscopy. Furthermore, the dispersion characteristics and thermal and electrical conductivity of the as-prepared water-based nanofluids were measured. As a result, the dispersion characteristics revealed that the best dispersion and stability results were obtained for alkaline-treated MWCNTs using potassium persulfate and sodium hydroxide. The thermophysical study using a thermal conductivity analyzer exhibited that the thermal conductivity of the pristine MWCNT nanofluid (0.1 wt%) was enhanced from 603.5 to 610.4 mW/m·K and the electrical conductivity of the raw MWCNT nanofluid was increased from 16.2 to 125.8 μS/cm at 25 °C after alkaline treatment and milling processes, which were performed using planetary ball milling. Regarding the overall results, the milling process and mild alkaline oxidation process are more environmentally friendly, effective, and convenient for the functionalization of CNTs, without requiring any organic solvents or strong acids.
在本研究中,考察了一种涉及不同条件和研磨工艺的功能化方法对多壁碳纳米管分散性以及热导率和电导率的影响。采用硫酸和硝酸的混合酸处理以及过硫酸钾和氢氧化钠的碱处理对多壁碳纳米管的表面进行改性,以获得亲水性更强的多壁碳纳米管。利用透射电子显微镜和傅里叶变换红外光谱进行了形态和结构研究。此外,还测量了所制备的水基纳米流体的分散特性以及热导率和电导率。结果表明,分散特性显示,使用过硫酸钾和氢氧化钠进行碱处理的多壁碳纳米管获得了最佳的分散和稳定性结果。使用热导率分析仪进行的热物理研究表明,经过碱处理和研磨工艺(采用行星球磨)后,原始多壁碳纳米管纳米流体(0.1 wt%)在25℃下的热导率从603.5提高到610.4 mW/m·K,原始多壁碳纳米管纳米流体的电导率从16.2提高到125.8 μS/cm。综合研究结果来看,研磨工艺和温和的碱氧化工艺对碳纳米管进行功能化处理时更环保、有效且便捷,无需任何有机溶剂或强酸。