Nanoscale chirality in metal and semiconductor nanoparticles

Наномасштабная хиральность в металлических и полупроводниковых наночастицах
Jatish Kumar, K. George Thomas, Luis M. Liz‐Marzán
2016-01-01

chiroptical nanomaterialsmetal nanoparticlesnanoscale chiralityplasmonic chiralitysemiconductor quantum dots
The field of chirality has recently seen a rejuvenation due to the observation of chirality in inorganic nanomaterials. The advancements in understanding the origin of nanoscale chirality and the potential applications of chiroptical nanomaterials in the areas of optics, catalysis and biosensing, among others, have opened up new avenues toward new concepts and design of novel materials. In this article, we review the concept of nanoscale chirality in metal nanoclusters and semiconductor quantum dots, then focus on recent experimental and theoretical advances in chiral metal nanoparticles and plasmonic chirality. Selected examples of potential applications and an outlook on the research on chiral nanomaterials are additionally provided.
1
Chirality has been observed in inorganic nanomaterials, revitalizing research into nanoscale chiral structures.
2
Chiroptical nanomaterials show potential applications in optics, catalysis, and biosensing.
3
Recent experimental and theoretical advances have established chiral metal nanoparticles and plasmonic chirality as important research directions.
4
The review examines nanoscale chirality in metal nanoclusters and semiconductor quantum dots, including its underlying concepts.
5
Understanding nanoscale chirality enables new concepts and design strategies for novel chiral materials.

chiral metal and semiconductor nanomaterials, including metal nanoclusters, semiconductor quantum dots, and chiral metal nanoparticles

the origins, experimental and theoretical characterization, plasmonic manifestations, and potential applications of nanoscale chirality in these nanomaterials

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2016-01-01
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Jatish Kumar
K. George Thomas
Luis M. Liz‐Marzán
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