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The rise and current status of polaritonic photochemistry and photophysics
The interaction between molecular electronic transitions and electromagnetic fields can be
enlarged to the point where distinct hybrid light–matter states, polaritons, emerge. The …
enlarged to the point where distinct hybrid light–matter states, polaritons, emerge. The …
Control, modulation, and analytical descriptions of vibrational strong coupling
Here, we review the design of optical cavities, transient and modulated responses, and
theoretical models relevant to vibrational strong coupling (VSC). While planar Fabry–Perot …
theoretical models relevant to vibrational strong coupling (VSC). While planar Fabry–Perot …
Cavity-enhanced energy transport in molecular systems
Molecules are the building blocks of all of nature's functional components, serving as the
machinery that captures, stores and releases energy or converts it into useful work …
machinery that captures, stores and releases energy or converts it into useful work …
Directed assembly of nanomaterials for making nanoscale devices and structures: Mechanisms and applications
Nanofabrication has been utilized to manufacture one-, two-, and three-dimensional
functional nanostructures for applications such as electronics, sensors, and photonic …
functional nanostructures for applications such as electronics, sensors, and photonic …
Thermoplasmonics in solar energy conversion: materials, nanostructured designs, and applications
B Yang, C Li, Z Wang, Q Dai - Advanced Materials, 2022 - Wiley Online Library
The indispensable requirement for sustainable development of human society has forced
almost all countries to seek highly efficient and cost‐effective ways to harvest and convert …
almost all countries to seek highly efficient and cost‐effective ways to harvest and convert …
Light–matter interactions in hybrid material metasurfaces
This Review focuses on the integration of plasmonic and dielectric metasurfaces with
emissive or stimuli-responsive materials for manipulating light–matter interactions at the …
emissive or stimuli-responsive materials for manipulating light–matter interactions at the …
Bound states in the continuum in anisotropic plasmonic metasurfaces
The concept of optical bound states in the continuum (BICs) currently drives the field of
dielectric resonant nanophotonics, providing an important physical mechanism for …
dielectric resonant nanophotonics, providing an important physical mechanism for …
Metallic plasmonic array structures: principles, fabrications, properties, and applications
The vast development of nanofabrication has spurred recent progress for the manipulation
of light down to a region much smaller than the wavelength. Metallic plasmonic array …
of light down to a region much smaller than the wavelength. Metallic plasmonic array …
Engineering van der Waals materials for advanced metaphotonics
The outstanding chemical and physical properties of 2D materials, together with their
atomically thin nature, make them ideal candidates for metaphotonic device integration and …
atomically thin nature, make them ideal candidates for metaphotonic device integration and …
A review of 2D and 3D plasmonic nanostructure array patterns: fabrication, light management and sensing applications
This review article discusses progress in surface plasmon resonance (SPR) of two-
dimensional (2D) and three-dimensional (3D) chip-based nanostructure array patterns …
dimensional (2D) and three-dimensional (3D) chip-based nanostructure array patterns …