A 20-resolved hadox study of BaTiO3
Author:
Publisher
Informa UK Limited
Subject
General Materials Science,Instrumentation
Link
http://www.tandfonline.com/doi/pdf/10.1080/01411599008207931
Reference5 articles.
1. High-resolution X-ray diffraction study of the cubic-to-tetragonal transition in BaTiO3
2. Improvement of high-angle double-crystal X-ray diffractometry (HADOX) for measuring temperature dependence of lattice constants. II. Practice
3. Examination of X-ray diffraction pattern of BaTiO3
4. An explanation of the “martensite start”-“martensite finish” temperature interval
5. Improvement of high-angle double-crystal X-ray diffractometry (HADOX) for measuring temperature dependence of lattice constants. I. Theory
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1. Precise determination of crystal lattice parameters;Physics-Uspekhi;2020-09-01
2. Ultra-high-angle double-crystal X-ray diffractometry (U-HADOX) for determining a change in the lattice spacing: theory;Acta Crystallographica Section A Foundations of Crystallography;2001-10-26
3. Effect of uniaxial stress on the lattice spacing of silicon at low temperatures;Il Nuovo Cimento D;1997-02
4. Structural relaxation in silicon at low temperatures;Materials Science and Engineering: B;1995-11
5. The structural phase transition in BaTiO3 in a static electric field;Phase Transitions;1995-09
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