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Perspective: plasmon antennas for nanoscale chiral chemistry

Journal article
Authors Esteban Pedrueza-Villalmanzo
F. Pineider
Alexandre Dmitriev
Published in Nanophotonics
Volume 9
Issue 2
Pages 481-489
ISSN 2192-8606
Publication year 2020
Published at Department of Physics (GU)
Pages 481-489
Language en
Keywords nanoantennas, plasmonics, chirality, asymmetric reactions, enantiomeric excess, nanoparticles, fields, enantioseparation, discrimination, recognition, origin, Science & Technology - Other Topics, Materials Science, Optics, Physics
Subject categories Nano Technology, Physical Sciences


Plasmon nanoantennas are extensively used with molecular systems for chemical and biological ultra-sensing, for boosting the molecular emissive and energy transfer properties, for nanoscale catalysis, and for building advanced hybrid nanoarchitectures. In this perspective, we focus on the latest developments of using plasmon nanoantennas for nanoscale chiral chemistry and for advancing molecular magnetism. We overview the decisive role nanoplasmonics and nano-optics can play in achieving chirally selective molecular synthesis and separation and the way such processes might be precisely controlled by potentially merging chirality and magnetism at the molecular scale. We give our view on how these insights might lead to the emergence of exciting new fundamental concepts in nanoscale materials science.

Page Manager: Webmaster|Last update: 9/11/2012

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