CVD-graphene/graphene flakes dual-films as advanced DSSC counter electrodes
Andrea Capasso, Sebastiano Bellani, Alessandro Lorenzo Palma, Leyla, Najafi1, Antonio Esa\`u Del Rio Castillo, Nicola Curreli1, Lucio Cin\`a,, Vaidotas Miseikis, Camilla Coletti, Giuseppe Calogero, Vittorio Pellegrini,, Aldo Di Carlo, Francesco Bonaccorso

TL;DR
This study develops a novel, platinum-free graphene-based counter electrode for dye-sensitized solar cells by combining CVD-graphene and liquid-exfoliated graphene flakes, achieving high efficiency and promising outdoor and indoor application potential.
Contribution
It introduces a dual-graphene film counter electrode combining CVD-graphene and FLG flakes, offering an effective alternative to traditional materials in DSSCs.
Findings
Achieved 2.1% efficiency with I3-/I- electrolyte.
Achieved 5.09% efficiency with Co+2/+3 electrolyte.
Reached 6.87% efficiency at 0.1 SUN illumination.
Abstract
The use of graphene-based electrodes is burgeoning in a wide range of applications, including solar cells, light emitting diodes, touch screens, field-effect transistors, photodetectors, sensors and energy storage systems. The success of such electrodes strongly depends on the implementation of effective production and processing methods for graphene. In this work, we take advantage of two different graphene production methods to design an advanced, conductive oxide- and platinum-free, graphene-based counter electrode for dye-sensitized solar cells (DSSCs). In particular, we exploit the combination of a graphene film, produced by chemical vapor deposition (CVD) (CVD-graphene), with few-layer graphene (FLG) flakes, produced by liquid phase exfoliation. The CVD-graphene is used as charge collector, while the FLG flakes, deposited atop by spray coating, act as catalyst for the reduction of…
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