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Photonics Inc dssc based modules
Dssc Based Modules, supplied by Photonics Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/dsscs/based+dssc+modules/pmc13004493-51-5-1
Average 86 stars, based on 1 article reviews
dssc based modules - by Bioz Stars, 2026-10
86/100 stars

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Solvent:

Article Title: Dye-sensitized solar cell using natural dyes extracted fromMorus atba Lamfruit andStriga hermonthicaflower
Article Snippet: This study employs anthocyanin extracts from mulberry (Morus atba Lam) fruit and Akenchira (Striga hermonthica) flower as the natural dyes for a dye-sensitized solar cell (DSSC).. The electrodes, electrolyte (I∕I3), and dyes were assembled into a cell and illuminated by a light with an intensity 100 mW∕cm to measure the photoelectrochemical parameters of the prepared DSSCs.. According to the experimental results, the maximum conversion efficiency of the DSSCs prepared from anthocyanin dyes of Morus atba Lam fruit extract is 0.42%, with an open-circuit voltage (Voc) of 0.54 V, a short circuit current density (Jsc) of 1.38 mA∕cm, and a fill factor (FF) of 0.56.

Injection:

Article Title: Chlorin e6 sensitized photovoltaic cells: effect of co-adsorbents on cell performance, charge transfer resistance, and charge recombination dynamics
Article Snippet: .. The oxidation process of chlorin e6 was found to be lower than that of free-base tetraphenylporphyrin, commonly used in building DSSCs.23 Furthermore, the excited state reduction potential and free-energy change for electron injection were calculated according to Rehm–Weller approximation,24 using Eqs. (1) and (2), since these values determine the thermodynamic feasibility of photoinduced electron transfer from the excited chlorin e6 into the TiO2 conduction band Journal of Photonics for Energy 053089-4 Vol. ..



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a Schematic illustrating the preparation and mechanism of CAS-LNP. By incorporating charged lipids into clinical LNP formulation, the increased electrostatic repulsions among CAS-LNPs enhance LNP stability during nebulization. b Synthetic scheme <t>of</t> <t>DSSC-DOPE.</t> c Formulations of SM102-LNP and CAS-LNPs. d Representative size distribution of LNPs measured by DLS. e The mRNA encapsulation efficiency of LNPs. f A representative Cryo-TEM image of 2.5% CAS-LNP. g pKa of SM102-LNP and 2.5% CAS-LNP measured by 2-( p -toluidino)−6-napthalene sulfonic acid (TNS) assay. h Zeta potentials of SM102-LNP and CAS-LNPs. i Percentage of intact LNPs after nebulization in 0.3×PBS. Data are shown as mean ± standard deviation (SD) ( n = 3 technical replicates). Statistical significance was analyzed by one-way analysis of variance (ANOVA) and Tukey’s multiple comparisons test. Source data are provided as a Source Data file.
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a Schematic illustrating the preparation and mechanism of CAS-LNP. By incorporating charged lipids into clinical LNP formulation, the increased electrostatic repulsions among CAS-LNPs enhance LNP stability during nebulization. b Synthetic scheme of DSSC-DOPE. c Formulations of SM102-LNP and CAS-LNPs. d Representative size distribution of LNPs measured by DLS. e The mRNA encapsulation efficiency of LNPs. f A representative Cryo-TEM image of 2.5% CAS-LNP. g pKa of SM102-LNP and 2.5% CAS-LNP measured by 2-( p -toluidino)−6-napthalene sulfonic acid (TNS) assay. h Zeta potentials of SM102-LNP and CAS-LNPs. i Percentage of intact LNPs after nebulization in 0.3×PBS. Data are shown as mean ± standard deviation (SD) ( n = 3 technical replicates). Statistical significance was analyzed by one-way analysis of variance (ANOVA) and Tukey’s multiple comparisons test. Source data are provided as a Source Data file.

Journal: Nature Communications

Article Title: Charge-assisted stabilization of lipid nanoparticles enables inhaled mRNA delivery for mucosal vaccination

doi: 10.1038/s41467-024-53914-x

Figure Lengend Snippet: a Schematic illustrating the preparation and mechanism of CAS-LNP. By incorporating charged lipids into clinical LNP formulation, the increased electrostatic repulsions among CAS-LNPs enhance LNP stability during nebulization. b Synthetic scheme of DSSC-DOPE. c Formulations of SM102-LNP and CAS-LNPs. d Representative size distribution of LNPs measured by DLS. e The mRNA encapsulation efficiency of LNPs. f A representative Cryo-TEM image of 2.5% CAS-LNP. g pKa of SM102-LNP and 2.5% CAS-LNP measured by 2-( p -toluidino)−6-napthalene sulfonic acid (TNS) assay. h Zeta potentials of SM102-LNP and CAS-LNPs. i Percentage of intact LNPs after nebulization in 0.3×PBS. Data are shown as mean ± standard deviation (SD) ( n = 3 technical replicates). Statistical significance was analyzed by one-way analysis of variance (ANOVA) and Tukey’s multiple comparisons test. Source data are provided as a Source Data file.

Article Snippet: To synthesize DSSC-DOPE, equal moles of DSSC (GL Biochem) and PDP-DOPE were dissolved in dimethyl sulfoxide (DMSO) and mixed in a small glass vial charged with a stir bar.

Techniques: Formulation, Encapsulation, Standard Deviation

a Chemical structures of DOPA, HA, and HA-DSSC ( b ). c Zeta potentials of SM102-LNP, 2.5% DOPA-LNP, 2.5% HA-LNP, and 2.5% HA-DSSC-LNP ( n = 3 technical replicates). Data are shown as mean ± SD. d Percentage of intact LNPs after nebulization in 0.1 × PBS ( n = 3 technical replicates). Data are shown as mean ± SD. e Representative IVIS images and ( f ) quantitative analysis of luminescence in mice at 6 h post-administration ( n = 3 biologically independent samples). Data are shown as mean ± SEM. Statistical significance was analyzed by one-way ANOVA and Tukey’s multiple comparisons test. g Chemical structures of DSSC, SSSC, DDSC, and DDDC. h Isoelectric points of DSSC, SSSC, DDSC, and DDDC. i Zeta potentials of CAS-LNP, SSSC-LNP, DDSC-LNP, and DDDC-LNP ( n = 3 technical replicates). Data are shown as mean ± SD. j Percentage of intact LNPs after nebulization in 0.1 × PBS ( n = 3 technical replicates). Data are shown as mean ± SD. k Representative IVIS images of lungs and ( l ) quantitative analysis at 24 h post-administration ( n = 5 biologically independent samples). Data are shown as mean ± SEM. m Chemical structures of D E SSC-DOPE and D E SSC E -DOPE. Either one or both carboxyl groups of DSSC were converted to methyl esters. n Zeta potentials of CAS-LNP, D E SSC-LNP, and D E SSC E -LNP ( n = 3 technical replicates). Data are shown as mean ± SD. o Percentage of intact LNPs after nebulization in 0.1 × PBS ( n = 3 technical replicates). Data are shown as mean ± SD. p Representative IVIS images and ( q ) quantitative analysis of luminescence in mice treated with CAS-LNP, D E SSC-LNP, or D E SSC E -LNP at 6 h post-administration ( n = 5 biologically independent samples). Data are shown as mean ± SEM. r Representative IVIS images of major organs and ( s ) quantitative analysis of lungs at 24 h post-administration ( n = 5 biologically independent samples). Data are shown as mean ± SEM. The statistical significance of this figure was analyzed by one-way ANOVA and Tukey’s multiple comparisons test. Source data are provided as a Source Data file.

Journal: Nature Communications

Article Title: Charge-assisted stabilization of lipid nanoparticles enables inhaled mRNA delivery for mucosal vaccination

doi: 10.1038/s41467-024-53914-x

Figure Lengend Snippet: a Chemical structures of DOPA, HA, and HA-DSSC ( b ). c Zeta potentials of SM102-LNP, 2.5% DOPA-LNP, 2.5% HA-LNP, and 2.5% HA-DSSC-LNP ( n = 3 technical replicates). Data are shown as mean ± SD. d Percentage of intact LNPs after nebulization in 0.1 × PBS ( n = 3 technical replicates). Data are shown as mean ± SD. e Representative IVIS images and ( f ) quantitative analysis of luminescence in mice at 6 h post-administration ( n = 3 biologically independent samples). Data are shown as mean ± SEM. Statistical significance was analyzed by one-way ANOVA and Tukey’s multiple comparisons test. g Chemical structures of DSSC, SSSC, DDSC, and DDDC. h Isoelectric points of DSSC, SSSC, DDSC, and DDDC. i Zeta potentials of CAS-LNP, SSSC-LNP, DDSC-LNP, and DDDC-LNP ( n = 3 technical replicates). Data are shown as mean ± SD. j Percentage of intact LNPs after nebulization in 0.1 × PBS ( n = 3 technical replicates). Data are shown as mean ± SD. k Representative IVIS images of lungs and ( l ) quantitative analysis at 24 h post-administration ( n = 5 biologically independent samples). Data are shown as mean ± SEM. m Chemical structures of D E SSC-DOPE and D E SSC E -DOPE. Either one or both carboxyl groups of DSSC were converted to methyl esters. n Zeta potentials of CAS-LNP, D E SSC-LNP, and D E SSC E -LNP ( n = 3 technical replicates). Data are shown as mean ± SD. o Percentage of intact LNPs after nebulization in 0.1 × PBS ( n = 3 technical replicates). Data are shown as mean ± SD. p Representative IVIS images and ( q ) quantitative analysis of luminescence in mice treated with CAS-LNP, D E SSC-LNP, or D E SSC E -LNP at 6 h post-administration ( n = 5 biologically independent samples). Data are shown as mean ± SEM. r Representative IVIS images of major organs and ( s ) quantitative analysis of lungs at 24 h post-administration ( n = 5 biologically independent samples). Data are shown as mean ± SEM. The statistical significance of this figure was analyzed by one-way ANOVA and Tukey’s multiple comparisons test. Source data are provided as a Source Data file.

Article Snippet: To synthesize DSSC-DOPE, equal moles of DSSC (GL Biochem) and PDP-DOPE were dissolved in dimethyl sulfoxide (DMSO) and mixed in a small glass vial charged with a stir bar.

Techniques: Quantitative Luminescence