Khairy Mohamed, Algethami Faisal K, Alotaibi Abdullah N, Almufarij Rasmiah S, Abdulkhair Babiker Y
Chemistry Department, College of Science, Imam Mohammad Ibn Saud Islamic University (IMSIU), Riyadh 11623, Saudi Arabia.
Chemistry Department, Faculty of Science, Benha University, Benha 13518, Egypt.
Molecules. 2024 May 1;29(9):2082. doi: 10.3390/molecules29092082.
Activated carbon/BiOI nanocomposites were successfully synthesized through a simplistic method. The produced composites were then characterized using XRD, TEM, SEM-EDX, and XPS. The results showed that BiOI with a tetragonal crystal structure had been formed. The interaction between activated carbon and BiOI was confirmed via all the mentioned tools. The obtained nanocomposites' electrical conductivity, dielectric properties, and Ac impedance were studied at 59 KHz-1.29 MHz. AC and dc conductivities were studied at temperatures between 303 and 573 K within the frequency range of 59 KHz-1.29 MHz. The 10% activated carbon/BiOI nanocomposite possessed dc and AC conductivity values of 5.56 × 10 and 2.86 × 10 Ω.cm, respectively, which were higher than BiOI and the other nanocomposites. Every sample exhibited increased electrical conductivity values as the temperature and frequency rose, suggesting that all samples had semiconducting behavior. The loss and dielectric constants (ε' and ε″) also dropped as the frequency increased, leading to higher dielectric loss. The Nyquist plot unraveled single semicircle arcs and a decreased bulk resistance, indicating decreased grain boundary resistance. Consequently, the electrical characteristics of BiOI, 1C/BiOI, 5C/BiOI, and 10C/BiOI implied their applicability as dielectric absorbers, charge-stored capacitors, and high-frequency microwave devices.
通过一种简单的方法成功合成了活性炭/BiOI纳米复合材料。然后使用XRD、TEM、SEM-EDX和XPS对所制备的复合材料进行了表征。结果表明,已形成具有四方晶体结构的BiOI。通过所有上述工具证实了活性炭与BiOI之间的相互作用。在59 KHz - 1.29 MHz频率下研究了所得纳米复合材料的电导率、介电性能和交流阻抗。在303至573 K的温度范围内,在59 KHz - 1.29 MHz的频率范围内研究了交流和直流电导率。10%的活性炭/BiOI纳米复合材料的直流电导率和交流电导率值分别为5.56×10和2.86×10 Ω·cm,高于BiOI和其他纳米复合材料。随着温度和频率的升高,每个样品的电导率值都增加,这表明所有样品都具有半导体行为。损耗和介电常数(ε'和ε″)也随着频率的增加而下降,导致更高的介电损耗。奈奎斯特图显示出单个半圆弧形和降低的体电阻,表明晶界电阻降低。因此,BiOI、1C/BiOI、5C/BiOI和10C/BiOI的电学特性表明它们可作为介电吸收器、电荷存储电容器和高频微波器件。