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Oxygen nonstoichiometry and electrical properties of La2–xSrxNiO4+δ (0 ≤ x ≤ 0.5)
Dang‑Hoang Hop, Roy Byung Kyu Chung, Young‑Woo Heo, Jeong‑Joo Kim, Joon‑Hyung Lee
J. Korean Ceram. Soc.. 2020;57(4):416-422.   Published online 2020 April 30    DOI:

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Electrical and Electrochemical Properties of La2xCaxNiO4 and La2xCaxNiO4–Ce0.8Sm0.2O1.9 Cathode Materials for Intermediate Temperature SOFCs
Advances in Science and Technology. 2014;93:25-30   Crossref logo

Synthesis and Triple Conductive Properties of Ba and Fe Co-Doped Sr2TiO4 Based Layered Perovskite: (BaxSr2-x) (Ti0.9Fe0.1)O4-δ (X= 0.05, 0.10)
Key Engineering Materials. 2021;888:37-42   Crossref logo

Crystal structure, thermal and electrotransport properties of NdBa1–xSrxFeCo0.5Cu0.5O5+δ (0.02 ≤ x ≤ 0.20) solid solutions
Chimica Techno Acta. 2021;8(3):20218301   Crossref logo
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Synthesis and Characterization of La4-xSrxNi3O10±δ Ruddlesden - Popper Structure
Key Engineering Materials. 2014;608:264-273   Crossref logo

Electrical Transport Properties of Perovskite La0.7Sr0.2Ba0.1Mn1-xNixO3(x = 0 and 0.1) Manganite
Materials Science Forum. 2019;966:243-248   Crossref logo

La2-xSrxNiO4+δ Ceramic Powders Prepared by Combustion Synthesis
Key Engineering Materials. 2001;206-213:155-158   Crossref logo

An Investigation of Structure and Complex Impedance Behavior of Composite (1-X)BA0.5SR0.5FE11.7MN0.15TI0.15 /XLA0.7BA0.3MNO3
Advanced Materials Research. 2013;789:16-20   Crossref logo

Effect of Copper Substitution on the Electrical Transport Properties of La0.7Ba0.1Sr0.2Mn1-xCuxO 3 (X = 0 and 0.05) Manganites
Materials Science Forum. 2019;966:331-337   Crossref logo

Crystal Structure and Electrical Properties of (1-x) (Ba0.85Sr0.15)TiO3 - x(K0.5Na0.5)NbO3 System
Materials Science Forum. 2019;966:8-13   Crossref logo

Structure and Reactivity of the La2-xSrXMnO4±δ (0.7≤ X ≤1.0) Solid Solutions in Oxidizing Condition
Key Engineering Materials. 2014;617:98-101   Crossref logo

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