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Main Authors: Gupta, Ritu, Balo, Anujit, Garg, Rabia, Mondal, Amit Kumar, Ghosh, Koyel Banerjee, Mondal, Prakash Chandra
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2409.10036
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author Gupta, Ritu
Balo, Anujit
Garg, Rabia
Mondal, Amit Kumar
Ghosh, Koyel Banerjee
Mondal, Prakash Chandra
author_facet Gupta, Ritu
Balo, Anujit
Garg, Rabia
Mondal, Amit Kumar
Ghosh, Koyel Banerjee
Mondal, Prakash Chandra
contents The chirality-induced spin selectivity (CISS) effect has garnered significant interest in the field of molecular spintronics due to its potential for creating spin-polarized electrons without the need for a magnet. Recent studies devoted to CISS effects in various chiral materials demonstrate exciting prospects for spintronics, chiral recognition, and quantum information applications. Several experimental studies have confirmed the applicability of chiral molecules towards spin-filtering properties, influencing spin-polarized electron transport, and photoemission. Researchers aim to predict CISS phenomena and apply this concept to practical applications by compiling experimental results and enhancing understanding of the CISS effect. To expand the possibilities of spin manipulation and create new opportunities for spin-based technologies, researchers are diligently exploring different chiral organic and inorganic materials for probing the CISS effect. This ongoing research holds promise for developing novel spin-based technologies and advancing the understanding of the intricate relationship between chirality and electron spin. This review showcases the remarkable CISS effect and its impact on spintronics, as well as its relevance in various other scientific areas.
format Preprint
id arxiv_https___arxiv_org_abs_2409_10036
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Spin-controlled Electron transport in Chiral Molecular Assemblies for Various Applications
Gupta, Ritu
Balo, Anujit
Garg, Rabia
Mondal, Amit Kumar
Ghosh, Koyel Banerjee
Mondal, Prakash Chandra
Materials Science
The chirality-induced spin selectivity (CISS) effect has garnered significant interest in the field of molecular spintronics due to its potential for creating spin-polarized electrons without the need for a magnet. Recent studies devoted to CISS effects in various chiral materials demonstrate exciting prospects for spintronics, chiral recognition, and quantum information applications. Several experimental studies have confirmed the applicability of chiral molecules towards spin-filtering properties, influencing spin-polarized electron transport, and photoemission. Researchers aim to predict CISS phenomena and apply this concept to practical applications by compiling experimental results and enhancing understanding of the CISS effect. To expand the possibilities of spin manipulation and create new opportunities for spin-based technologies, researchers are diligently exploring different chiral organic and inorganic materials for probing the CISS effect. This ongoing research holds promise for developing novel spin-based technologies and advancing the understanding of the intricate relationship between chirality and electron spin. This review showcases the remarkable CISS effect and its impact on spintronics, as well as its relevance in various other scientific areas.
title Spin-controlled Electron transport in Chiral Molecular Assemblies for Various Applications
topic Materials Science
url https://arxiv.org/abs/2409.10036