The structural, magnetic and electrical transport properties of perovskite La0.67Sr0.33Mn1−x(VMn)xO3: The B-sites vacancies as a rapier

Author:

Ji Denghui1ORCID,Zhang Bin2,Yang Yong3,Wang Shuling4,Liu Yingdi1,Shi Yuanping1,Feng Shunzhen1,Zhao Cuijian1,Shi Shaohui1,Zhang Qingqing5

Affiliation:

1. College of Physics, Mechanical and Electronical College, Shijiazhuang University, Shijiazhuang City 050035, China

2. Student Affairs Department, Guizhou Qiannan Institute of Economics, Huishui City, 550600, China

3. The College of Optoelectronic and Communication Engineering, Yunnan National Defense Industry Vocational and Technical College, Yunnan Open University, Kunming City 650223, China

4. School of Mathematics and Physics, Hebei University of Engineering, Handan City 056038, China

5. The College of Physics and Communication Engineering, Cangzhou Normal University, Cangzhou City 061001, China

Abstract

The polycrystalline samples of manganites perovskite [Formula: see text] with B-sites vacancies were synthesized using the conventional solid-state reaction method. The results based on the X-Ray Diffraction (XRD) and Scanning Electron Microscope (SEM) analyses show that the samples with [Formula: see text] have a secondary phase of lanthanum oxides. It indicates there is a maximum vacancy content at the B-sites with [Formula: see text]. By X-ray Photoelectron Spectra (XPS), the ionicities of oxygen were determined to be 0.762, 0.842, and 0.886, corresponding to [Formula: see text], 0.03, and 0.05, respectively. The B-sites vacancy plays an important role in magnetic performances: (i) B-sites vacancy changes the contents and the average cant angle of Mn cations, and makes the specific saturation magnetization at 100 K and 300 K increase, and then decrease rapidly. (ii) The Curie temperature changes in a small range from 363.93 K to 366.00 K, resulting from both the double exchange interaction increasing and the double exchange path destroyed by the vacancies. (iii) The magnetoresistance (MR) at room temperature achieves 6.97% in the [Formula: see text] sample, whose value is larger than that of [Formula: see text] sample.

Funder

Shijiazhuang University Doctoral Scientific Research Startup Fund Project

Shijiazhuang Higher Education Scientific Research Project

Cooperation in Production and Education Project of the Ministry of Education

Key Research and Development Program of Cangzhou

Innovation Ability Promotion Plan Project of Hebei Province

Handan City Project

Key Project of the Education Department of Guizhou Province

Joint Funds of Department of Science and Technology of Guizhou Province

Research Foundation for Advanced Talents of LiuPanshui Normal University

Shijiazhuang University Teaching Reform Research and Practice Project

Publisher

World Scientific Pub Co Pte Lt

Subject

Condensed Matter Physics,Statistical and Nonlinear Physics

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