表征(材料科学)
钛酸钡
材料科学
钡
纳米技术
复合材料
陶瓷
冶金
作者
Anam Shareef,Yan Zhuang,Xing Liu,Xiaoyong Wei,Zhuo Xu,Md Alshahriar Borshon,Jan Musaddiq Ullah
标识
DOI:10.1021/acs.jpcc.5c02114
摘要
In this work, a combination of experimental and computational techniques was used to investigate the structural, electronic, and optical properties of BaTiO3 ferroelectric material in its tetragonal form. The findings were carefully examined and discussed. The sol–gel combination electrospinning technique was employed to create the examined barium titanate nanofibers. The bandgap energy and structural characteristics of BT were analyzed using density functional theory (DFT) and four exchange-correlation (XC) techniques (PBE, PW91, PBEsol, and LDA). According to XRD and Raman investigations, BaTiO3 (BT) nanofibers exhibited a tetragonal phase structure, with no impurity phases detected. The direct and indirect bandgap energies of BT, measured at 3.22 and 3.01 eV, respectively, were found to be larger than the theoretically expected direct bandgap values, as determined by UV–vis study. It was demonstrated that the computed lattice constants matched the actual data, although the calculated lattice parameter c was slightly overestimated (by up to ∼1% deviation). This study provided a comprehensive understanding of BT properties, thereby highlighting its potential for versatile applications in both electronics and optoelectronics.
科研通智能强力驱动
Strongly Powered by AbleSci AI