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X-ray analysis of ZnO nanoparticles by Williamson–Hall and size–strain plot methods

TLDR
In this paper, the authors used the Williamson-Hall analysis and size-strain plot method to study the individual contributions of crystallite sizes and lattice strain on the peak broadening of ZnO-NPs.
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This article is published in Solid State Sciences.The article was published on 2011-01-01. It has received 1784 citations till now. The article focuses on the topics: Wurtzite crystal structure & Hexagonal phase.

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Direct transformation of waste printed circuit boards to nano-structured powders through mechanical alloying

TL;DR: In this paper, a solid state mechanical alloying was used to directly convert waste printed circuit boards (PCBs) to a homogenous nanostructured alloy (Cu79-Zn13-Fe3-Sn3-Ni1).
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Correlation between electrical conductivity-optical band gap energy and precursor molarities ultrasonic spray deposition of ZnO thin films

TL;DR: In this article, the authors present a new approach to the description of correlation between electrical conductivity and optical gap energy with precursor molarity of ZnO thin films, which suggests that the electrical conductivities of the films are predominantly influenced by the band gap energy and the precursor Molarity.
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SILAR-coated Mg-doped ZnO thin films for ammonia vapor sensing applications

TL;DR: In this article, a magnesium-doped zinc oxide thin films were prepared by successive ionic layer adsorption and reaction process and their room temperature ethanol sensing properties were analyzed.
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Structural, optical and magnetic properties of novel ZnFe2O4/ZrO2 mixed metal oxide nanocomposite synthesized by hydrothermal technique

TL;DR: In this article, the structural, magnetic and optical features of ZnFe2O4-ZrO2 mixed metal oxide nanocomposite with different ratios was prepared by a simple and low cost hydrothermal method.
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Effects of (Sm, Mn and Ni) co-doping on structural, optical and magnetic properties of BiFeO3 thin films fabricated by a sol-gel technique

TL;DR: In this article, all the thin films exhibit polycrystalline perovskite structures with dense and smooth microstructures and the most intense diffraction peak (110) shifts toward lower diffraction angles, which is associated with lattice strain estimated by Williamson-Hall analysis model.
References
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Book

Elements of X-ray diffraction

TL;DR: In this article, the authors present a chemical analysis of X-ray diffraction by Xray Spectrometry and phase-diagram Determination of single crystal structures and phase diagrams.
Book

Physical properties of crystals

John F. Nye
TL;DR: In this paper, the physical properties of crystals systematically in tensor notation are presented, presenting tensor properties in terms of their common mathematical basis and the thermodynamic relations between them.
Book

X-Ray Diffraction: A Practical Approach

TL;DR: In this article, X-Rays and Diffraction Lattices and Crystal Structures and Hexagonal Structures are used for X-Ray Diffraction Experimental Modules: Crystal structure determination, I: Cubic Structures Crystal Structure Determination, II: Hexagonal structures Precise Lattice Parameter Measurements Phase Diagram Determination Detection of Long-Range Ordering Determination of Crystallite Size and Lattite Strain Quantitative Analysis of Powder Mixtures Identification of an Unknown Specimen: Appendices: Plane-Spacing Equations and Unit
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