Exact(1)
Open-circuit voltage is represented as V oc ≈ nkT q · ln J sc J 0 from the general one-diode model [31], and between the two conditions of the NP/NS = 5 5 and 3 7, the difference in Jsc (i.e., ln Jsc) is not enough to impact Voc.
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Key parameters in close connection with the open-circuit photovoltage (Voc) and the short-circuit current density (Jsc), including (i) light harvesting efficiency (LHE); (ii) injection driving force (ΔGinject).; (iii) reorganization energy (λreorg); (iv) number of photoinjected electrons (nc,inj); (v) the extent of charge recombination, and (vi) vertical dipole moment (μnormal), were discussed.
At x p n - InGaN InGaN ‒ t o ‒ S i, the Jsc of the InGaN subcell is equal to that of the Si subcell such that an InGaN/Si tandem cell reaches the current matching condition to operate at the maximum power point.
At x n - InGaN InGaN ‒ t o ‒ S i, the Jsc of the InGaN subcell is equal to that of the Si subcell such that the current-matching condition is obtained for the InGaN/Si tandem cell operating at the maximum power point.
At x p - InGaN InGaN ‒ t o ‒ S i, the Jsc of the InGaN subcell is equal to that of the Si subcell such that the InGaN/Si tandem cell reaches the current matching condition to operate at the maximum power point.
Therefore, the enhanced light-harvesting capability (i.e., Jsc) by the mixed scattering layer is attributed to efficient light scattering and increased surface area.
Through a systematical optimization on the lattice constant, nanohole diameters, and depths of top and bottom NHs, the DNH photovoltaic system is designed to show a much improved ultimate efficiency up to 30.72% (i.e., Jsc = 27.93 mA/cm2), which is 17.39% (26.17%) higher than the best SNHs (SNHs with an identical Si volume).
Comparing the polymer-based solar cells with the fabricated CQD devices we find a significantly larger enhancement of Voc and Jsc in the P3HT cells (i. e., 19% and 44% versus 8%and25%5% for Voc and Jsc, respectively), even though the Nb2O5 interlayer was of identical thickness in both device architectures.
The DSSCs based on a TNP/TNA multilayer photoelectrode showed a better photovoltaic performance (i.e., higher JSC and FF) than the cell made purely of TiO2 nanoparticles.
Figure 3 I-V characteristics and Jsc, Voc, FF, and PCE of pristine and composition mixture of P3HT/CIGS NCs.
I-V characteristics show that Jsc in NW solar cells can be increased due to light absorption enhancement, while Voc is degenerated because of more serious recombination induced by QDs.
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