Theory of Circular Dichroism of Nanomaterials Comprising Chiral Molecules and Nanocrystals: Plasmon Enhancement, Dipole Interactions, and Dielectric Effects
Ohio University · Wright-Patterson Air Force Base · +1 more institution
Abstract
Our calculations show that a nonchiral nanocrystal is able to dramatically change the circular dichroism (CD) of a chiral molecule when the nanocrystal and molecule form a complex and couple via dipole and multipole Coulomb interactions. Plasmon resonances of metal nanocrystals in the nanocrystal−molecule complex result in both the resonant enhancement of CD signals of molecules and the appearance of new spectral structures. Two mechanisms, in which a nanocrystal can influence the CD effect, have been identified. The first mechanism is the plasmon-induced change in the electromagnetic field inside the chiral molecule. The second is the optical absorption of the nanocrystal−molecule complex due to the chiral…
Citation impact
- FWCI
- 13.02
- Percentile
- 100%
- References
- 41
Authors
5Topics & keywords
- Nanocrystal
- Plasmon
- Circular dichroism
- Materials science
- Molecule
- Chemical physics
- Nanotechnology
- Chemistry