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COMSOL Inc 3d finite element method (fem) simulations
J SC as a function of spacing (S) and aspect ratio (ASP) for the SEDN, with fixed minor axis diameters (D) of ( a ) 80 nm, ( b ) 100 nm, ( c ) 120 nm, and ( d ) 140 nm, under TM <t>polarization.</t>
3d Finite Element Method (Fem) Simulations, supplied by COMSOL Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/3d+finite+element+method+simulation/finite+element+software/pmc12144203-44-6-20
Average 90 stars, based on 1 article reviews
3d finite element method (fem) simulations - by Bioz Stars, 2026-10
90/100 stars

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1) Product Images from "Enhanced absorption in organic solar cells via combined anti-reflection and Mie resonance effects in subwavelength ellipsoidal dielectric nanostructures"

Article Title: Enhanced absorption in organic solar cells via combined anti-reflection and Mie resonance effects in subwavelength ellipsoidal dielectric nanostructures

Journal: Scientific Reports

doi: 10.1038/s41598-025-04980-8

J SC as a function of spacing (S) and aspect ratio (ASP) for the SEDN, with fixed minor axis diameters (D) of ( a ) 80 nm, ( b ) 100 nm, ( c ) 120 nm, and ( d ) 140 nm, under TM polarization.
Figure Legend Snippet: J SC as a function of spacing (S) and aspect ratio (ASP) for the SEDN, with fixed minor axis diameters (D) of ( a ) 80 nm, ( b ) 100 nm, ( c ) 120 nm, and ( d ) 140 nm, under TM polarization.

Techniques Used:

J SC as a function of spacing (S) and aspect ratio (ASP) for the SEDN, with fixed minor axis diameters (D) of (a) 80 nm, (b) 100 nm, (c) 120 nm, and (d) 140 nm, under TE polarization.
Figure Legend Snippet: J SC as a function of spacing (S) and aspect ratio (ASP) for the SEDN, with fixed minor axis diameters (D) of (a) 80 nm, (b) 100 nm, (c) 120 nm, and (d) 140 nm, under TE polarization.

Techniques Used:

( a ) Absorption spectra in PM6:Y6 of planar OSCs with and without the SEDNs under TM polarization at D = 100 nm, S = 70 nm, and ASP = 2.2, and under TE polarization at D = 100 nm, S = 30 nm, and ASP = 3.6. ( b ) J SC as a function of PM6:Y6 thickness for the planar OSC compared to OSCs integrated with the SEDNs optimized for TM and TE polarizations.
Figure Legend Snippet: ( a ) Absorption spectra in PM6:Y6 of planar OSCs with and without the SEDNs under TM polarization at D = 100 nm, S = 70 nm, and ASP = 2.2, and under TE polarization at D = 100 nm, S = 30 nm, and ASP = 3.6. ( b ) J SC as a function of PM6:Y6 thickness for the planar OSC compared to OSCs integrated with the SEDNs optimized for TM and TE polarizations.

Techniques Used:

Absorption spectra in the active layer of OSCs integrated with the optimized SEDN TE at varying incident angles for (a) TM polarization and (b) TE polarization, (c) J SC as a function of incident angles for each polarization.
Figure Legend Snippet: Absorption spectra in the active layer of OSCs integrated with the optimized SEDN TE at varying incident angles for (a) TM polarization and (b) TE polarization, (c) J SC as a function of incident angles for each polarization.

Techniques Used:

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Article Snippet: The energy confinement factor α is calculated using a 3D finite element method (FEM) simulation (COMSOL Multiphysics).

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Crystallization Assay:

Article Title: A microfluidic platform for pharmaceutical salt screening
Article Snippet: We describe a microfluidic platform comprised of 48 wells to screen for pharmaceutical salts.. Solutions of pharmaceutical parent compounds (PCs) and salt formers (SFs) are mixed on-chip in a combinatorial fashion in arrays of 87.5-nanolitre wells, which constitutes a drastic reduction of the volume of PC solution needed per condition screened compared to typical high throughput pharmaceutical screening approaches.. Nucleation and growth of salt crystals is induced by diffusive and/or convective mixing of solutions containing, respectively, PCs and SFs in a variety of solvents.

Convection:

Article Title: A microfluidic platform for pharmaceutical salt screening
Article Snippet: We describe a microfluidic platform comprised of 48 wells to screen for pharmaceutical salts.. Solutions of pharmaceutical parent compounds (PCs) and salt formers (SFs) are mixed on-chip in a combinatorial fashion in arrays of 87.5-nanolitre wells, which constitutes a drastic reduction of the volume of PC solution needed per condition screened compared to typical high throughput pharmaceutical screening approaches.. Nucleation and growth of salt crystals is induced by diffusive and/or convective mixing of solutions containing, respectively, PCs and SFs in a variety of solvents.

Concentration Assay:

Article Title: A microfluidic platform for pharmaceutical salt screening
Article Snippet: We describe a microfluidic platform comprised of 48 wells to screen for pharmaceutical salts.. Solutions of pharmaceutical parent compounds (PCs) and salt formers (SFs) are mixed on-chip in a combinatorial fashion in arrays of 87.5-nanolitre wells, which constitutes a drastic reduction of the volume of PC solution needed per condition screened compared to typical high throughput pharmaceutical screening approaches.. Nucleation and growth of salt crystals is induced by diffusive and/or convective mixing of solutions containing, respectively, PCs and SFs in a variety of solvents.



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J SC as a function of spacing (S) and aspect ratio (ASP) for the SEDN, with fixed minor axis diameters (D) of ( a ) 80 nm, ( b ) 100 nm, ( c ) 120 nm, and ( d ) 140 nm, under TM polarization.

Journal: Scientific Reports

Article Title: Enhanced absorption in organic solar cells via combined anti-reflection and Mie resonance effects in subwavelength ellipsoidal dielectric nanostructures

doi: 10.1038/s41598-025-04980-8

Figure Lengend Snippet: J SC as a function of spacing (S) and aspect ratio (ASP) for the SEDN, with fixed minor axis diameters (D) of ( a ) 80 nm, ( b ) 100 nm, ( c ) 120 nm, and ( d ) 140 nm, under TM polarization.

Article Snippet: To optimize the SEDNs for each polarization, three-dimensional (3D) finite element method (FEM) simulations are conducted using the commercial software COMSOL Multiphysics.

Techniques:

J SC as a function of spacing (S) and aspect ratio (ASP) for the SEDN, with fixed minor axis diameters (D) of (a) 80 nm, (b) 100 nm, (c) 120 nm, and (d) 140 nm, under TE polarization.

Journal: Scientific Reports

Article Title: Enhanced absorption in organic solar cells via combined anti-reflection and Mie resonance effects in subwavelength ellipsoidal dielectric nanostructures

doi: 10.1038/s41598-025-04980-8

Figure Lengend Snippet: J SC as a function of spacing (S) and aspect ratio (ASP) for the SEDN, with fixed minor axis diameters (D) of (a) 80 nm, (b) 100 nm, (c) 120 nm, and (d) 140 nm, under TE polarization.

Article Snippet: To optimize the SEDNs for each polarization, three-dimensional (3D) finite element method (FEM) simulations are conducted using the commercial software COMSOL Multiphysics.

Techniques:

( a ) Absorption spectra in PM6:Y6 of planar OSCs with and without the SEDNs under TM polarization at D = 100 nm, S = 70 nm, and ASP = 2.2, and under TE polarization at D = 100 nm, S = 30 nm, and ASP = 3.6. ( b ) J SC as a function of PM6:Y6 thickness for the planar OSC compared to OSCs integrated with the SEDNs optimized for TM and TE polarizations.

Journal: Scientific Reports

Article Title: Enhanced absorption in organic solar cells via combined anti-reflection and Mie resonance effects in subwavelength ellipsoidal dielectric nanostructures

doi: 10.1038/s41598-025-04980-8

Figure Lengend Snippet: ( a ) Absorption spectra in PM6:Y6 of planar OSCs with and without the SEDNs under TM polarization at D = 100 nm, S = 70 nm, and ASP = 2.2, and under TE polarization at D = 100 nm, S = 30 nm, and ASP = 3.6. ( b ) J SC as a function of PM6:Y6 thickness for the planar OSC compared to OSCs integrated with the SEDNs optimized for TM and TE polarizations.

Article Snippet: To optimize the SEDNs for each polarization, three-dimensional (3D) finite element method (FEM) simulations are conducted using the commercial software COMSOL Multiphysics.

Techniques:

Absorption spectra in the active layer of OSCs integrated with the optimized SEDN TE at varying incident angles for (a) TM polarization and (b) TE polarization, (c) J SC as a function of incident angles for each polarization.

Journal: Scientific Reports

Article Title: Enhanced absorption in organic solar cells via combined anti-reflection and Mie resonance effects in subwavelength ellipsoidal dielectric nanostructures

doi: 10.1038/s41598-025-04980-8

Figure Lengend Snippet: Absorption spectra in the active layer of OSCs integrated with the optimized SEDN TE at varying incident angles for (a) TM polarization and (b) TE polarization, (c) J SC as a function of incident angles for each polarization.

Article Snippet: To optimize the SEDNs for each polarization, three-dimensional (3D) finite element method (FEM) simulations are conducted using the commercial software COMSOL Multiphysics.

Techniques: