Timakwe Sapokazi, Silwana Bongiwe, Matoetoe Mangaka C
Cape Peninsula University of Technology, Chemistry Department P.O. Box 1906, Symphony Way Bellville 7535 South Africa
RSC Adv. 2023 Jan 11;13(3):2123-2130. doi: 10.1039/d2ra06549e. eCollection 2023 Jan 6.
Three different fractions of nanoclay (nanomer 1.44P) were functionalised with Ag forming silver nanoclay composites (Ag/nanomer 1.44P). The optical and electrochemical properties of the functionalised nanoclay were studied. Optical, morphology, and electrochemical techniques were used for the characterisation of the synthesised Ag/nanomer 1.44P nanocly composites. The presence and the absence of functional groups observed in the FTIR spectrum of Ag/nanomer 1.44P, compared with those found in the spectra of silver and pure nanomer 1.44P prove that a reaction occurred, thus a successful functionalisation of nanomer 1.44P nanoclay with silver. The XRD data of all composites showed four diffraction peaks within the silver spectrum range, with the intensity of silver decreasing with increasing concentration of nanomer 1.44P. SEM represented well-dispersed particles of different shapes with average particle sizes of 2.5, 27.5, and 5 nm with the enhanced concentration of nanomer 1.44P nanoclay. The decrease in diffusion coefficient values from 4.26 × 10, 2.50 × 10 , 1.40 × 10 cm s and electron transfer rates of 1.50 × 10, 3.94 × 10, 2.86 × 10 cm s are respectively proportional to an increase in nanomer 1.44P concentration depicting changes in nanocomposites sizes.
将三种不同的纳米粘土级分(纳米单体1.44P)用银进行功能化处理,形成银纳米粘土复合材料(Ag/纳米单体1.44P)。对功能化纳米粘土的光学和电化学性质进行了研究。采用光学、形态学和电化学技术对合成的Ag/纳米单体1.44P纳米粘土复合材料进行表征。与银和纯纳米单体1.44P光谱中观察到的官能团相比,在Ag/纳米单体1.44P的傅里叶变换红外光谱中观察到官能团的存在和缺失,证明发生了反应,从而成功地用银对纳米单体1.44P纳米粘土进行了功能化。所有复合材料的X射线衍射数据在银光谱范围内显示出四个衍射峰,随着纳米单体1.44P浓度的增加,银的强度降低。扫描电子显微镜显示,随着纳米单体1.44P纳米粘土浓度的增加,不同形状的颗粒分散良好,平均粒径分别为2.5、27.5和5nm。扩散系数值从4.26×10、2.50×10、1.40×10 cm²/s下降,电子转移速率从1.50×10、3.94×10、2.86×10 cm²/s分别与纳米单体1.44P浓度的增加成正比,描述了纳米复合材料尺寸的变化。