Room temperature memory device using single-molecule magnets

Author:

Hao Hua12345,Zheng XiaoHong12345,Jia Ting12345,Zeng Zhi12345

Affiliation:

1. Key Laboratory of Materials Physics

2. Institute of Solid State Physics

3. Chinese Academy of Sciences

4. Hefei 230031

5. China

Abstract

Based on charge-state transition, a molecular memory device utilising single-molecule magnets can work at room temperature.

Publisher

Royal Society of Chemistry (RSC)

Subject

General Chemical Engineering,General Chemistry

Reference30 articles.

1. Molecular spintronics

2. Application of quantum chemistry to nanotechnology: electron and spin transport in molecular devices

3. Towards molecular spintronics

4. Molecular spintronics using single-molecule magnets

5. The blocking temperature of SMMs is defined as the temperature below which the relaxation time of the magnetization becomes much longer than the time scale of an investigation technique, or the highest temperature at which magnetic hysteresis is observed. Its value is closely associated with the energy barrier ΔE = −DS2 (D, axial zero-field splitting parameter; S, the total spin number). Generally, larger |ΔE| indicates higher blocking temperature

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