Results: 4

1.
Figure 4

Figure 4. From: Influence of electrolyte co-additives on the performance of dye-sensitized solar cells.

I-V curves for optimum DSCs (using optimum multiple layered TiO2 films) and the TBP or NMBI addition into the PMII-I2-GuNCS-PC electrolytes.

Thomas Stergiopoulos, et al. Nanoscale Res Lett. 2011;6(1):307-307.
2.
Figure 2

Figure 2. From: Influence of electrolyte co-additives on the performance of dye-sensitized solar cells.

Additive effects on J-V characteristic curves for DSCs using optimum electrolytes. (a) PMII-0.02 M I2-PC electrolyte without additive as well as in the presence of TBP additive and TBP/GuNCS co-additives. (b) PMII-0.08 M I2-PC electrolyte without additive as well as in the presence of NMBI additive and NMBI/GuNCS co-additives.

Thomas Stergiopoulos, et al. Nanoscale Res Lett. 2011;6(1):307-307.
3.
Figure 3

Figure 3. From: Influence of electrolyte co-additives on the performance of dye-sensitized solar cells.

Additive effects on electron recombination and transport properties for DSCs using optimum electrolytes. (a) Electron lifetimes (τη) versus photovoltage (Voc) and (b) electron diffusion coefficients (De) versus the short-circuit photocurrent (Jsc), for PMII-0.02 M I2-PC electrolyte without additive as well as in the presence of TBP additive and TBP/GuNCS co-additives. (c) Electron lifetimes (τη) versus Voc, and (d) electron diffusion coefficients (De) versus Jsc, for PMII-0.08 M I2-PC electrolytes without additive, with NMBI and with NMBI-GuNCS co-additives.

Thomas Stergiopoulos, et al. Nanoscale Res Lett. 2011;6(1):307-307.
4.
Figure 1

Figure 1. From: Influence of electrolyte co-additives on the performance of dye-sensitized solar cells.

Variation of the DSCs characteristic parameters as a function of the iodine concentration in the electrolyte. (a) open-circuit potential (Voc), (b) short-circuit photocurrent (Jsc), (c) fill factor (ff), and (d) overall power conversion efficiency (η). Squares correspond to the absence of additive, whereas triangles and circles to the TBP and NMBI addition, respectively.

Thomas Stergiopoulos, et al. Nanoscale Res Lett. 2011;6(1):307-307.

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