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Dive into the research topics where Davide Moia is active.

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Featured researches published by Davide Moia.


Chemical Science | 2014

The reorganization energy of intermolecular hole hopping between dyes anchored to surfaces

Davide Moia; Valérie Vaissier; Ismael López-Duarte; Tomás Torres; Mohammad Khaja Nazeeruddin; Brian C. O'Regan; Jenny Nelson; Piers R. F. Barnes

We measured the rate of hole hopping between dye molecules on titanium dioxide nanocrystals using cyclic voltammetry. Dyes commonly used in the field of dye sensitized solar cells exhibited efficient intermolecular charge transport, showing apparent diffusion coefficient values between 10−8 up to over 10−7 cm2 s−1 at room temperature. From temperature dependent measurements, we observed that hole transport across dye monolayers is a thermally activated process with Arrhenius activation energies between about 170 and 370 meV depending on the dye. Analysis of the data in terms of non-adiabatic Marcus theory of charge transfer enabled the estimation of the reorganization energy (740–1540 meV) and of an effective electronic coupling for the different systems. The measured reorganization energies show reasonable agreement with values obtained from density functional theory based calculations, validating our computational approach. Finally, we interpret the experimental and calculated data with reference to the chemical structure of the dyes and to the packing of the dyes on the surface of the TiO2 and suggest that delocalization of the HOMO and rigidity of the conjugated molecular structure result respectively in lower outer and inner sphere reorganization energies.


Chemsuschem | 2016

The Influence of Water Vapor on the Stability and Processing of Hybrid Perovskite Solar Cells Made from Non‐Stoichiometric Precursor Mixtures

Michiel L. Petrus; Yinghong Hu; Davide Moia; Philip Calado; Aurélien M. A. Leguy; Piers R. F. Barnes; Pablo Docampo

We investigated the influence of moisture on methylammonium lead iodide perovskite (MAPbI3 ) films and solar cells derived from non-stoichiometric precursor mixtures. We followed both the structural changes under controlled air humidity through in situ X-ray diffraction, and the electronic behavior of devices prepared from these films. A small PbI2 excess in the films improved the stability of the perovskite compared to stoichiometric samples. We assign this to excess PbI2 layers at the perovskite grain boundaries or to the termination of the perovskite crystals with Pb and I. In contrast, the MAI-excess films composed of smaller perovskite crystals showed increased electronic disorder and reduced device performance owing to poor charge collection. Upon exposure to moisture followed by dehydration (so-called solvent annealing), these films recrystallized to form larger, highly oriented crystals with fewer electronic defects and a remarkable improvement in photocurrent and photovoltaic efficiency.


Scientific Reports | 2016

Evidence for photo-induced charge separation between dye molecules adsorbed to aluminium oxide surfaces

Ute B. Cappel; Davide Moia; Annalisa Bruno; Valérie Vaissier; Saif A. Haque; Piers R. F. Barnes

Excited state dynamics and photo-induced charge transfer of dye molecules have been widely studied due to their relevance for organic and dye-sensitised solar cells. Herein, we present a femtosecond transient absorption spectroscopy study of the indolene dye D131 when adsorbed to inert Al2O3 substrates for different surface concentration of the dye. Surprisingly, we find that at high surface concentrations, the first singlet excited state of the dye is converted into a new state with an efficiency of about 80%. We assign the absorption features of this state to the oxidised dye and discuss the possibility of photo-induced charge separation between neighboring dye molecules. Our study is the first to show that this process can be highly efficient without the use of donor and acceptor molecules of different chemical structures.


Chemistry of Materials | 2018

The Role of the Side Chain on the Performance of N-type Conjugated Polymers in Aqueous Electrolytes

Alexander Giovannitti; Iuliana P. Maria; David Hanifi; Mary J. Donahue; Daniel Bryant; Katrina J. Barth; Beatrice E. Makdah; Achilleas Savva; Davide Moia; Matyáš Zetek; Piers R. F. Barnes; Obadiah G. Reid; Sahika Inal; Garry Rumbles; George G. Malliaras; Jenny Nelson; Jonathan Rivnay; Iain McCulloch

We report a design strategy that allows the preparation of solution processable n-type materials from low boiling point solvents for organic electrochemical transistors (OECTs). The polymer backbone is based on NDI-T2 copolymers where a branched alkyl side chain is gradually exchanged for a linear ethylene glycol-based side chain. A series of random copolymers was prepared with glycol side chain percentages of 0, 10, 25, 50, 75, 90, and 100 with respect to the alkyl side chains. These were characterized to study the influence of the polar side chains on interaction with aqueous electrolytes, their electrochemical redox reactions, and performance in OECTs when operated in aqueous electrolytes. We observed that glycol side chain percentages of >50% are required to achieve volumetric charging, while lower glycol chain percentages show a mixed operation with high required voltages to allow for bulk charging of the organic semiconductor. A strong dependence of the electron mobility on the fraction of glycol chains was found for copolymers based on NDI-T2, with a significant drop as alkyl side chains are replaced by glycol side chains.


Journal of Physics: Condensed Matter | 2018

Exploring the validity and limitations of the Mott–Gurney law for charge-carrier mobility determination of semiconducting thin-films

Jason A. Röhr; Jenny Nelson; Davide Moia; Thomas Kirchartz; Saif A. Haque

Using drift-diffusion simulations, we investigate the voltage dependence of the dark current in single carrier devices typically used to determine charge-carrier mobilities. For both low and high voltages, the current increases linearly with the applied voltage. Whereas the linear current at low voltages is mainly due to space charge in the middle of the device, the linear current at high voltage is caused by charge-carrier saturation due to a high degree of injection. As a consequence, the current density at these voltages does not follow the classical square law derived by Mott and Gurney, and we show that for trap-free devices, only for intermediate voltages, a space-charge-limited drift current can be observed with a slope that approaches a value of two. We show that, depending on the thickness of the semiconductor layer and the size of the injection barriers, the two linear current-voltage regimes can dominate the whole voltage range, and the intermediate Mott-Gurney regime can shrink or disappear. In this case, which will especially occur for thicknesses and injection barriers typical of single-carrier devices used to probe organic semiconductors, a meaningful analysis using the Mott-Gurney law will become unachievable, because a square-law fit can no longer be achieved, resulting in the mobility being substantially underestimated. General criteria for when to expect deviations from the Mott-Gurney law when used for analysis of intrinsic semiconductors are discussed.


Solar Energy Materials and Solar Cells | 2016

In-situ, long-term operational stability of organic photovoltaics for off-grid applications in Africa

Christopher J.M. Emmott; Davide Moia; Philip Sandwell; Nicholas J. Ekins-Daukes; Markus Hösel; Lukas Lukoschek; Charith Amarasinghe; Frederik C. Krebs; Jenny Nelson


Journal of Physical Chemistry C | 2015

The Role of Hole Transport between Dyes in Solid-State Dye-Sensitized Solar Cells

Davide Moia; Ute B. Cappel; Tomas Leijtens; Xiaoe Li; Andrew M. Telford; Henry J. Snaith; B. C. Regan; Jenny Nelson; Piers R. F. Barnes


Chemistry of Materials | 2014

Effect of Molecular Fluctuations on Hole Diffusion within Dye Monolayers

Valérie Vaissier; Edoardo Mosconi; Davide Moia; Mariachiara Pastore; Jarvist M. Frost; Filippo De Angelis; Piers R. F. Barnes; Jenny Nelson


Journal of the American Chemical Society | 2016

Interdye Hole Transport Accelerates Recombination in Dye Sensitized Mesoporous Films

Davide Moia; Anna Szumska; Valérie Vaissier; Miquel Planells; Neil Robertson; B. C. Regan; Jenny Nelson; Piers R. F. Barnes


Journal of Physical Chemistry C | 2016

Consequences of Solid Electrolyte Interphase (SEI) Formation upon Aging on Charge-Transfer Processes in Dye-Sensitized Solar Cells

Miguel Flasque; Albert Nguyen Van Nhien; Davide Moia; Piers R. F. Barnes; Frédéric Sauvage

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Jenny Nelson

Imperial College London

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B. C. Regan

University of California

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Emilio Palomares

Catalan Institution for Research and Advanced Studies

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Iain McCulloch

King Abdullah University of Science and Technology

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