2022
DOI: 10.1038/s41598-022-13038-y
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Functional optical design of thickness-optimized transparent conductive dielectric-metal-dielectric plasmonic structure

Abstract: Dielectric/metal/dielectric plasmonic transparent structures play an important role in tailoring the high-optical performance of various optoelectronic devices. Though these structures are in significant demand in applications, including modification of the optical properties, average visible transmittance (AVT) and colour render index (CRI) and correlated colour temperature (CCT), obtaining optimal ones require precise thickness optimization. The overall objective of this study is the estimation of the optima… Show more

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Cited by 11 publications
(29 citation statements)
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References 54 publications
(77 reference statements)
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“…For d Ag > 4 nm, the R sh decreases and becomes around 4 Ωsq −1 in d Ag = 6 nm 34 . Therefore, the MoO 3 /Ag/MO 3 (10/6/30 nm) also has very convenient contact properties for electrical performance 15 .…”
Section: Resultsmentioning
confidence: 99%
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“…For d Ag > 4 nm, the R sh decreases and becomes around 4 Ωsq −1 in d Ag = 6 nm 34 . Therefore, the MoO 3 /Ag/MO 3 (10/6/30 nm) also has very convenient contact properties for electrical performance 15 .…”
Section: Resultsmentioning
confidence: 99%
“…In addition, developing high-conductivity transparent contact systems to reduce absorption and reflection in visible light without disturbing the selective transport and band arrangement is a critical parameter in designing high-performance ST-OSCs 13 . In OSCs, opaque metal electrodes such as Ag, Au, and Al, generally thick and highly reflective in VR, are used as contact material 1 , 15 17 . To achieve the aim of semi-transparency in the ST-OSC design, a thin metal material is sandwiched between two anti-reflective dielectrics as the top contact, and a dielectric/metal/dielectric (DMD) structure is formed 1 , 15 .…”
Section: Introductionmentioning
confidence: 99%
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“…Optical spectra such as absorption, reflection and transmittance of the CdTe-based SC in which the 4 period MgF2/MoO3 photonic crystals examined in the study were integrated were calculated using the Transfer Matrix Method. TMM is a very effective method that examines the propagation of electromagnetic waves in multilayer material systems and is used to calculate the optical properties of the structure (Nguyen et al, 2012;Li et al, 2014;Wang et al, 2014;Çetinkaya et al, 2022). The application of TMM to the SC structure is achieved by connecting the electric and magnetic field components of the electromagnetic wave to each other with a transfer matrix in each layer.…”
Section: Methodsmentioning
confidence: 99%