The Synthesis and Characterisation of the High-Hardness Magnetic Material Mn2N0.86

Author:

Zhang Shoufeng,Zhou Chao,Wang Xin,Bao Kuo,Zhao Xingbin,Zhu Jinming,Tao QiangORCID,Ge Yufei,Yu Zekun,Zhu Pinwen,Zhao Wei,Cheng Jia’en,Ma Teng,Ma Shuailing,Cui Tian

Abstract

High-quality P6322 Mn2N0.86 samples were synthesised using a high-pressure metathesis reaction, and the properties of the material were investigated. The measurements revealed that the Vickers hardness was 7.47 GPa, which is less than that predicted by commonly used theoretical models. At low air pressure, Mn2N0.86 and MnO coexist at 500 to 600 °C, and by excluding air, we succeeded in producing Mn4N by heating Mn2N0.86 in nitrogen atmosphere; we carefully studied this process with thermogravimetry and differential scanning calorimetry (TG-DSC). This gives a hint that to control temperature, air pressure and gas concentration might be an effective way to prepare fine Mn-N-O catalysis. Magnetic measurements indicated that ferromagnetism and antiferromagnetism coexist within Mn2N0.86 at room temperature and that these magnetic properties are induced by nitrogen vacancies. Ab intio simulation was used to probe the nature of the magnetism in greater detail. The research contributes to the available data and the understanding of Mn2N0.86 and suggests ways to control the formation of materials based on Mn2N0.86.

Funder

National Key R&D Program of China

National Natural Science Foundation of China

Program for Changjiang Scholars and Innovative Research Team in University

High Performance Computing Center (HPCC) of Jilin University

Publisher

MDPI AG

Subject

General Materials Science

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