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Luminescent concentrators enable highly efficient and
luminescent solar concentrators. Adv. Energy Mater. 11, 2002883 (2021). 4. Portnoi, M. et al. Bandwidth limits o f luminescent solar concentrators as detectors in free-space optical communication
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· When the Au NPs concentration is 2 × 10⁻⁴ wt%, the optimal external quantum efficiency, optical conversion efficiency, and power conversion efficiency of the PLSC reach 1.58%, 2.90%, and 0.
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· Highly efficient large-area colourless luminescent solar concentrators using heavy-metal-free colloidal quantum dots Nat. Nanotechnol. , 10 ( 2015 ) , pp. 878-885 CrossRef View in Scopus Google Scholar
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Highly efficient multifunctional frosted luminescent solar concentrators
Luminescent solar concentrators (LSCs) are receiving increasing attention as photovoltaic (PV) modules to replace glass for seamless integration into the urban architectural landscape. Glass facades exhibiting different transparencies are highly demanded, however, LSCs with similar features of frosted glass
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· We report refractive index-engineered laminated LSCs based on CdSe/CdS QDs. • The optical efficiency strongly depends on the refractive index configuration. As a large-area solar radiation collector, luminescent solar concentrators (LSCs) can be used as power generation units in semitransparent solar windows, modernized agricultural
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· Highly efficient luminescent solar concentrators based on earth-abundant indirect-bandgap silicon quantum dots Nat. Photonics , 11 ( 3 ) ( 2017 ) , pp. 177-185 CrossRef View in Scopus Google Scholar
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High-loading of organosilane-grafted carbon dots in high-performance luminescent solar concentrators
DOI: 10.1016/j.nanoen.2023.108674 Corpus ID: 259724501 High-loading of organosilane-grafted carbon dots in high-performance luminescent solar concentrators with ultrahigh transparency @article{Li2023HighloadingOO, title={High-loading of organosilane-grafted
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· A highly efficient thin-film luminescent solar concentrator (LSC) utilizing two π-conjugated polymers as antennae for small amounts of the valued perylene bisimide Lumogen F Red 305 is presented.
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· Conventional perovskite quantum dots (PQDs) suffer long-term stability, further limiting practical application of luminescent solar concentrators (LSCs). In this work, novel dendritic CsPbBr 3 @SiO 2 particles with bright solid-state green light emission and 46 % of photoluminescence quantum yield (PLQY) have first been synthesized via one-step
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:Luminescent Solar ConcentratorsColloidal Quantum Dots
Highly efficient tandem luminescent solar concentrators based on
Luminescent solar concentrators (LSCs) have been widely considered to be promising large-scale sunlight collectors for photovoltaics (PV) due to their low cost and
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· We used N-doped carbon dots and TPFE-Rho aggregation-induced emission (AIE) fluorescent materials to fabricate tandem luminescent solar concentrators. The fluorescence quantum yields of N-CDs and TPFE-Rho are 79.65% and 34.88%, respectively. High-performance tandem LSCs can be obtained. We used N-doped
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· Highly efficient and stable tandem luminescent solar concentrators based on carbon dots and CuInSe 2−x S x /ZnS quantum dots L. Wang, Y. Chen, Y. Lai, X. Zhao, K. Zheng, R. Wang and Y. Zhou, Nanoscale , 2024, 16 , 188 DOI: 10.1039/D3NR05471C
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· Moving on from 1D to 2D, Bauser et al. demonstrated a luminescent solar converter with more than 90% light-trapping efficiency by using 2D PC slab consisting of a high index dielectric rod and
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:Luminescent Solar ConcentratorsZnse Quantum Dots · Luminescent solar concentrators (LSC) allow to obtain renewable energy from building integrated photovoltaic systems. As promising efficient and long-term stable LSC fluorophores
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:Luminescent Solar ConcentratorsStokes ShiftSilicon Quantum Dots · Abstract. Building-integrated photovoltaics is gaining consensus as a renewable energy technology for producing electricity at the point of use. Luminescent
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· Eco-friendly CGAS core and CGAS/ZnS core/shell QDs were synthesized based on a previously reported one-pot method with some modifications (details are described in Supporting Information and Scheme S1) [35].Fig. S1 a shows a typical transmission electron microscope (TEM) image of CGAS core QDs, exhibiting a quasi
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Role of refractive index in highly efficient laminated luminescent solar concentrators
Luminescent solar concentrators (LSCs) have attracted great atten-tion as large-area sunlight collectors for photovoltaics (PVs) because of their light-weight, simple architecture and cost-effective fabrication [1–5]. A typical luminescent solar concentrator
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Near Infrared, Highly Efficient Luminescent Solar Concentrators
Near Infrared, Highly Effi cient Luminescent Solar Concentrators ufeng Y Zhou , Daniele Benetti , Zhiyuan an , F Haiguang Zhao , * Do ngling Ma ,
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Efficient luminescent solar concentrators based on self
Semantic Scholar extracted view of "Efficient luminescent solar concentrators based on self-absorption free, Tm2+ doped halides" by O. M. T. Kate et al. DOI: 10.1016/J.SOLMAT.2015.04.002 Corpus ID: 96756107 Efficient luminescent solar concentrators based on
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· Highly efficient large-area luminescent solar concentrators (LSCs) were demonstrated using colloidal C-dots. The large-area LSC (225 cm ² ) exhibited an external optical efficiency of 2.2% (under
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:Luminescent Solar ConcentratorsSolar EnergySilicon Quantum Dots
Highly Efficient and Stable Luminescent Solar Concentrator Based
4 · The energy transfer (ET) and funneling efficiency in these dots/rods LSCs exceed 90% with escape cone losses potentially below 8%. As the nanoparticles used
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· High PLQY Mn-PL (λ 2 ) is due to the efficient energy transfer from PQDs. Figures-available via license: Creative Commons Attribution 4.0 International Content may be subject to copyright.
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· Meinardi, F. et al. Highly efficient large-area colourless luminescent solar concentrators using heavy-metal-free colloidal quantum dots. Nat. Nanotechnol. 10 , 878–885 (2015).
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Products-Hy-G Concentrators
The Placer Series by Hy-G provides exceptional recovery of fine gold and other minerals and metals. The Hy-G concentrator continuously concentrates up to 24 hours before clean-out is required. The Placer Gold Series includes lightweight and portable concentrators, perfect for testing, upgrading, and clean-up, like The Little G and P12 along with mid and
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:LSCsLuminescent Solar Concentrator · Here, we use CISeS quantum dots coated with ZnS to realize the first highly efficient large-area infrared QD-LSC with reduced reabsorption losses and extended coverage of the solar spectrum.
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:Luminescent Solar ConcentratorsPublish Year:2020 · This value of the PCE is among the best reported in the literature for devices of a similar lateral size. 88, 118, 119 Very recently, Zhao et al. reported the development of highly efficient large
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Centrifugal Concentrators | Gold Concentrators | DOVE
DOVE Gold Concentrator is highly efficient gold separator, designed for highest ratio of fine gold and other heavy minerals recovery. DOVE Centrifugal Gold Concentrator is a type of Gravity separation device, designed for 100% separation and recovery of free Gold, Silver and Platinum group of metals, replacing Amalgamation and use of Mercury.
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· Solar concentrators: improving energy efficiency. A solar concentrator is a device designed to focus and concentrate solar radiation, and its application can be both in the generation of solar thermal energy and in the generation of solar photovoltaic energy. Its operation is based on the use of reflective surfaces, typically formed by a series
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· Luminescent solar concentrators (LSCs) can be used to concentrate direct and diffused sunlight, which are crucial ingredients for photovoltaic windows. Recently, efficient LSCs based on heavy-metal colloidal quantum dots (CQDs) have been demonstrated by designing their heterostructures. Eco-friendly thoilate-stabilized gold
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:Luminescent Solar ConcentratorsSolar EnergyCarbon DotsStokes Shift · As a proof-of-concept, the Ba-CDs are employed as fluorophores for high-efficiency luminescent solar concentrator (LSC) fabrication. The Ba-CDs@PVP-based
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