نتایج جستجو برای: plasmonic solar cell

تعداد نتایج: 1798188  

2016
Yinan Zhang Boyuan Cai Baohua Jia

Plasmonic metal nanoparticles supporting localized surface plasmon resonances have attracted a great deal of interest in boosting the light absorption in solar cells. Among the various plasmonic materials, the aluminium nanoparticles recently have become a rising star due to their unique ultraviolet plasmonic resonances, low cost, earth-abundance and high compatibility with the complementary me...

Journal: :Nano letters 2011
Jeremy N Munday Harry A Atwater

We describe an ultrathin solar cell architecture that combines the benefits of both plasmonic photovoltaics and traditional antireflection coatings. Spatially resolved electron generation rates are used to determine the total integrated current improvement under AM1.5G solar illumination, which can reach a factor of 1.8. The frequency-dependent absorption is found to strongly correlate with the...

Journal: :Optics express 2011
Wei E I Sha Wallace C H Choy Yongpin P Chen Weng Cho Chew

We propose a novel optical design of organic solar cell with a hybrid plasmonic system, which comprises a plasmonic cavity coupled with a dielectric core-metal shell nanosphere. From a rigorous solution of Maxwell's equations, called volume integral equation method, optical absorption of the active polymer material has a four-fold increase. The significant enhancement mainly attributes to the c...

Journal: :Nanotechnology 2016
Jiayong Gan Bharath Bangalore Rajeeva Zilong Wu Daniel Penley Chaolun Liang Yexiang Tong Yuebing Zheng

Conversion of solar irradiation into chemical fuels such as hydrogen with the use of a photoelectrochemical (PEC) cell is an attractive strategy for green energy. The promising technique of incorporating metal nanoparticles (NPs) in the photoelectrodes is being explored to enhance the performance of the photoelectrodes. In this work, we developed Au-NPs-functionalized nanoporous BiVO4 photoanod...

Journal: :Journal of visualized experiments : JoVE 2012
Sergey Varlamov Jing Rao Thomas Soderstrom

One of major approaches to cheaper solar cells is reducing the amount of semiconductor material used for their fabrication and making cells thinner. To compensate for lower light absorption such physically thin devices have to incorporate light-trapping which increases their optical thickness. Light scattering by textured surfaces is a common technique but it cannot be universally applied to al...

Journal: :Engineering and technology journal 2023

Organic solar cells (OSCs) have attracted considerable research interest due to their satisfactory properties including light-weight, low-cost, low-temperature fabrication process, semi-transparency and mechanical flexibility. Recent advances in OSCs demonstrated above 10% efficiency single-junction cells, indicating a strong competitiveness when compared with the commercial silicon photovoltai...

Journal: :Nano letters 2013
Hyosung Choi Jung-Pil Lee Seo-Jin Ko Jae-Woo Jung Hyungmin Park Seungmin Yoo Okji Park Jong-Ryul Jeong Soojin Park Jin Young Kim

We demonstrate high-performance polymer solar cells using the plasmonic effect of multipositional silica-coated silver nanoparticles. The location of the nanoparticles is critical for increasing light absorption and scattering via enhanced electric field distribution. The device incorporating nanoparticles between the hole transport layer and the active layer achieves a power conversion efficie...

Journal: :Optics express 2012
Ricky B Dunbar Thomas Pfadler Lukas Schmidt-Mende

Plasmonic light trapping in thin film solar cells is investigated using full-wave electromagnetic simulations. Light absorption in the semiconductor layer with three standard plasmonic solar cell geometries is compared to absorption in a flat layer. We identify near-field absorption enhancement due to the excitation of localized surface plasmons but find that it is not necessary for strong ligh...

Journal: :Nanoscale 2015
Sabastine Ezugwu Hanyang Ye Giovanni Fanchini

In order to investigate the suitability of random arrays of nanoparticles for plasmonic enhancement in the visible-near infrared range, we introduced three-dimensional scanning near-field optical microscopy (3D-SNOM) imaging as a useful technique to probe the intensity of near-field radiation scattered by random systems of nanoparticles at heights up to several hundred nm from their surface. We...

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