Novel Magnet Design with Magic Mirror-like Properties

A multi-institutional Japanese team has developed new magnetic design that has magic mirror-like properties. Based on organic-inorganic hybrid perovskite type compounds, the brightness of transmitted light changes depending on whether the material is viewed from the front or the back.

The Magic mirror-like magnet. The brightness of the transmitted light from the magnet changes depending on whether the material is viewed from the front or the back.

Researchers at Tohoku University have demonstrated the designability of novel magnets with magic mirror-like characteristics in organic-inorganic hybrid perovskite (OIHP)-type compounds.

OIHP-type compounds, a type of material used to construct solar cells, possess exceptional optical properties and have recently attracted worldwide interest. Researchers are keen to harness their structural diversity.

Although the superior optical properties of OIHPs have been mainly studied for their photoelectric characteristics, several OIHP-type compounds are known to function as magnets that transmit light. Combining the excellent optical characteristics with magnetism, OIHP-type compounds are a promising platform for designing functional magneto-optical materials.

A multi-institutional Japanese team, led by Kouji Taniguchi of Tohoku University's Institute for Materials Research, developed a new magnet, in which brightness changes are determined by whether the material is viewed from the front or the back.

Taking advantage of OIHP-type compounds, they have designed low symmetry magnets, where magic mirror characteristics are expected, by introducing chiral organic molecules into layered crystal structure of inorganic magnets.

In addition, they found that the front and back of matter can be switched by a low magnetic field, which is obtainable by a ubiquitous permanent magnet.

"We hope the development of new magneto-optical materials based on the material design concept presented in this study will lead to the applications in spin photonic devices," said Taniguchi.

 

###

 

Contact:
Kouji Taniguchi
Institute for Materials Research (IMR), Tohoku University
Email: [email protected]
Website: http://www.miyasaka-lab.imr.tohoku.ac.jp/cn5/HOME-Eng.html

 

Published: 11 Jun 2021

Institution:

Contact details:

Public Relations Division

Tohoku University Public Relations Division 2-1-1, Katahira, Aoba-ku, Sendai, 980-8577

+81-22-217-6038
News topics: 
Academic discipline: 
Content type: 
Reference: 

Title: Magneto-Electric Directional Anisotropy in Polar Soft Ferromagnets of Two-Dimensional Organic-Inorganic Hybrid Perovskites
Authors: Kouji Taniguchi, Masaki Nishio, Nobuyuki Abe, Po-Jung Huang, Shojiro Kimura, Taka-hisa Arima, Hitoshi Miyasaka
Journal: Angewandte Chem International Edition
DOI: 10.1002/anie.202103121

Funding information:

Novel Magnet Design with Magic Mirror-like Properties