Photonic Crystal Structures for Photovoltaic Applications
Фотонно-кристаллические структуры для фотоэлектрических применений
2024-03-04
SCID: 54.1/ndv6v8g5
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light trappingphotonic band gapphotonic crystalsphotovoltaic applicationsspectrum splitting
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Abstract (AI)
Photonic crystals are artificial structures with a spatial periodicity of dielectric permittivity on the wavelength scale. This feature results in a spectral region over which no light can propagate within such a material, known as the photonic band gap (PBG). It leads to a unique interaction between light and matter. A photonic crystal can redirect, concentrate, or even trap incident light. Different materials (dielectrics, semiconductors, metals, polymers, etc.) and 1D, 2D, and 3D architectures (layers, inverse opal, woodpile, etc.) of photonic crystals enable great flexibility in designing the optical response of the material. This opens an extensive range of applications, including photovoltaics. Photonic crystals can be used as anti-reflective and light-trapping surfaces, back reflectors, spectrum splitters, absorption enhancers, radiation coolers, or electron transport layers. This paper presents an overview of the developments and trends in designing photonic structures for different photovoltaic applications.
Key Findings
1
Photonic crystals can redirect, concentrate, and trap incident light, supporting enhanced light management in photovoltaics.
2
Photonic crystals use wavelength-scale periodic dielectric structures to create photonic band gaps and enable unusual light–matter interactions.
3
Potential photovoltaic functions include antireflection, light trapping, back reflection, spectrum splitting, absorption enhancement, radiation cooling, and electron transport.
4
The paper reviews developments and design trends in photonic structures for diverse photovoltaic applications.
5
Their architectures and material choices—including 1D, 2D, and 3D designs—provide substantial flexibility for tailoring optical responses in photovoltaic devices.
Research Object
Photonic crystal structures used in photovoltaic applications
Research Subject
Their optical-response design and functional roles in photovoltaics, including light redirection, trapping, reflection, spectral splitting, absorption enhancement, radiative cooling, and electron transport
Publication Details
Publication Date
2024-03-04
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