Errata

Errata: Transparent electrodes based on two-dimensional Ag nanogrids and double one-dimensional Ag nanogratings for organic photovoltaics

[+] Author Affiliations
Beibei Zeng, Zakya H. Kafafi, Filbert J. Bartoli

Lehigh University, Center for Photonics and Nanoelectronics, Department of Electrical and Computer Engineering, Bethlehem, Pennsylvania 18015, United States

J. Photon. Energy. 5(1), 059999 (Feb 23, 2015). doi:10.1117/1.JPE.5.059999
History:
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This article [J. Photon. Energy. 5, , 057005  (2014)] was originally published on 23 December 2014 with an error in Fig. 6(b). The four lines mistakenly showed the same linewidth w=30; it has been corrected to show different linewidths w of 30, 50, 70, and 90. The corrected figure appears below.

Graphic Jump Location
Fig. 6
F6 :

Total photon absorption Aphoton and its enhancement (Aphoton/Aphoton-ref1)·100% in the OPV active layers as a function of period P, (a) for different thicknesses t1 of the 2-D Ag nanogrids with the linewidths w fixed at 70 nm; and (b) for different linewidths w, with the thickness t1 fixed at 30 nm [all other geometric parameters are the same as those in Fig. 3(a)].

The paper was corrected online on 11 February 2015.

© 2015 Society of Photo-Optical Instrumentation Engineers

Citation

Beibei Zeng ; Zakya H. Kafafi and Filbert J. Bartoli
"Errata: Transparent electrodes based on two-dimensional Ag nanogrids and double one-dimensional Ag nanogratings for organic photovoltaics", J. Photon. Energy. 5(1), 059999 (Feb 23, 2015). ; http://dx.doi.org/10.1117/1.JPE.5.059999


Figures

Graphic Jump Location
Fig. 6
F6 :

Total photon absorption Aphoton and its enhancement (Aphoton/Aphoton-ref1)·100% in the OPV active layers as a function of period P, (a) for different thicknesses t1 of the 2-D Ag nanogrids with the linewidths w fixed at 70 nm; and (b) for different linewidths w, with the thickness t1 fixed at 30 nm [all other geometric parameters are the same as those in Fig. 3(a)].

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