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2篇 您的检索式:作者名="S.Bhalla"
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1Theory, simulation and experiment of optical properties of cobalt ferrite(CoFe2O4) nanoparticles显示文摘Optical properties of cobalt ferrite(CoFe2O4) nanoparticles are modeled and simulated employing finite element analysis(FEA) and density functional theory(DFT) for different particle sizes. The simulated absorption maxima of electronic excitations is red-shifted from 330 nm to 410 nm using finite element analysis and from 331.27 nm to 409.07 nm using quantum mechanical method, with increasing particle sizes from 40 nm to 50 nm. The measured absorption maxima matched the simulated results reasonably well and red-shifted to longer wavelengths from 315.59 nm to 426.73 nm with the increase in particle sizes from 30 nm to 50 nm. The DFT simulated, FEA simulated and experimentally derived optical band gap energies, Eg, were also acquired and compared. The simulated Egvalues decreased from 3.228 to 2.478 e V and from 3.266 to 2.456 e V, while the experimental Egvalue decreased from 3.473 to 2.697 e V, with increasing the particle sizes. The research demonstrated that the optical absorption of CoFe2O4 nanoparticles can be described with high accuracy using the quantum mechanical interpretation based on DFT. FEA based simulations have shown limitations for smaller(< 40 nm) nanoparticles likely due to the increased surface scattering that prevented a stable solution for simulations beyond the quasistatic limit. The DFT computational tool developed by this study can enable both the low cost computation and highly reliable prediction of optical absorption properties and optical band edges, and thus contribute to understanding and design of CoFe2O4 nanoparticle properties prior to fabrication and functionalization of them, for a wide range of applications especially for sensing and photonic wave modulations.Elham Gharibshahi Brandon D.Young Amar S.Bhalla Ruyan Guo 2020Journal of Materials Science & Technology2020,54,22:0
2印度热带地区竹混凝土复合结构的概念发展显示文摘本文介绍了印度安得拉邦坎曼地区哈瑞沙生态学院对竹子混凝土复合材料开展了大量的研究.并将这种材料用于房屋修建,其研究重点是可作为房屋承载构件的竹弓。本文具体介绍了他们所做的研究。这项研究工作历时18年,寻找能在4-6年间生成的、可用于建筑材料的竹子。竹弓由1个水平拉杆和2个横木组成,这个概念是哈瑞沙生态学院的学生的实验中逐渐衍生出来的。牡竹是利用广泛的竹种.O.Sudhakar S.Gupta S.Bhalla C.Kordke S.Satya 2009世界竹藤通讯2009,7,6:0
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