View : 538 Download: 0

A highly efficient and transparent luminescent solar concentrator based on a nanosized metal cluster luminophore anchored on polymers

Title
A highly efficient and transparent luminescent solar concentrator based on a nanosized metal cluster luminophore anchored on polymers
Authors
Choi J.Nguyen D.Gi E.Brylev K.A.Yu J.W.Kim D.Lee W.B.Kim D.H.Chung I.Kim K.K.Kim S.-J.
Ewha Authors
김성진김동하김경곤
SCOPUS Author ID
김성진scopus; 김동하scopus; 김경곤scopus
Issue Date
2022
Journal Title
Journal of Materials Chemistry C
ISSN
2050-7526JCR Link
Citation
Journal of Materials Chemistry C vol. 10, no. 11, pp. 4402 - 4410
Publisher
Royal Society of Chemistry
Indexed
SCOPUS WOS scopus
Document Type
Article
Abstract
A highly efficient luminescent solar concentrator (LSC) composed of a nanosized metal-cluster as a molecular luminophore copolymerized with poly(methyl methacrylate) (PMMA) was fabricated through a simple solution process. Organic-inorganic salts such as (dMDAEMA)2[Mo6Cl14] and (dMDAEMA)2[Mo6I14] (where dMDAEMA is 2-(methacryloyloxy)ethyl dimethyldodecylammonium) were copolymerized with PMMA to generate a highly effective, transparent, and robust LSC waveguide. This hybrid luminophore enabled the development of a highly efficient UV-vis sunlight harvesting device due to strong absorption at UV-vis wavelengths up to ∼500 nm and a large downshift of luminescence at near-infrared wavelengths (∼850 nm). Si photovoltaic cells were placed at the edge of the LSC waveguide plate to collect the concentrated luminescence by internal reflection. LSCs fabricated with a 2.0 × 2.0 × 0.3 mm3 size had the highest observed power conversion efficiency (PCE) of 1.24% and a transparency of ∼85%, which were much higher than those of LSCs made from other luminophores with the same Si photovoltaic cell. Our LSC with chemical/physical durability, robustness, and solution processability for any desirable plate size and thickness suggests a practical future direction for smart windows of urban buildings where traditional Si photovoltaic cells cannot be directly employed. © 2022 The Royal Society of Chemistry.
DOI
10.1039/d1tc05396e
Appears in Collections:
자연과학대학 > 화학·나노과학전공 > Journal papers
Files in This Item:
There are no files associated with this item.
Export
RIS (EndNote)
XLS (Excel)
XML


qrcode

BROWSE