Michele De Bastiani
Istituto Italiano di Tecnologia
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Publication
Featured researches published by Michele De Bastiani.
Journal of the American Chemical Society | 2014
Valerio D’Innocenzo; Ajay Ram Srimath Kandada; Michele De Bastiani; Marina Gandini; Annamaria Petrozza
We report about the relationship between the morphology and luminescence properties of methylammonium lead trihalide perovskite thin films. By tuning the average crystallite dimension in the film from tens of nanometers to a few micrometers, we are able to tune the optical band gap of the material along with its photoluminescence lifetime. We demonstrate that larger crystallites present smaller band gap and longer lifetime, which correlates to a smaller radiative bimolecular recombination coefficient. We also show that they present a higher optical gain, becoming preferred candidates for the realization of CW lasing devices.
Materials horizons | 2015
Ye Zhang; Mingzhen Liu; Giles E. Eperon; Tomas Leijtens; David P. McMeekin; Michael Saliba; Wei Zhang; Michele De Bastiani; Annamaria Petrozza; Laura M. Herz; Michael B. Johnston; Hong Lin; Henry J. Snaith
High-efficiency perovskite solar cells typically employ an organic–inorganic metal halide perovskite material as light absorber and charge transporter, sandwiched between a p-type electron-blocking organic hole-transporting layer and an n-type hole-blocking electron collection titania compact layer. Some device configurations also include a thin mesoporous layer of TiO2 or Al2O3 which is infiltrated and capped with the perovskite absorber. Herein, we demonstrate that it is possible to fabricate planar and mesoporous perovskite solar cells devoid of an electron selective hole-blocking titania compact layer, which momentarily exhibit power conversion efficiencies (PCEs) of over 13%. This performance is however not sustained and is related to the previously observed anomalous hysteresis in perovskite solar cells. The “compact layer-free” meso-superstructured perovskite devices yield a stabilised PCE of only 2.7% while the compact layer-free planar heterojunction devices display no measurable steady state power output when devoid of an electron selective contact. In contrast, devices including the titania compact layer exhibit stabilised efficiency close to that derived from the current voltage measurements. We propose that under forward bias the perovskite diode becomes polarised, providing a beneficial field, allowing accumulation of positive and negative space charge near the contacts, which enables more efficient charge extraction. This provides the required built-in potential and selective charge extraction at each contact to temporarily enable efficient operation of the perovskite solar cells even in the absence of charge selective n- and p-type contact layers. The polarisation of the material is consistent with long range migration and accumulation of ionic species within the perovskite to the regions near the contacts. When the external field is reduced under working conditions, the ions can slowly diffuse away from the contacts redistributing throughout the film, reducing the field asymmetry and the effectiveness of the operation of the solar cells. We note that in light of recent publications showing high efficiency in devices devoid of charge selective contacts, this work reaffirms the absolute necessity to measure and report the stabilised power output under load when characterizing perovskite solar cells.
Energy and Environmental Science | 2015
Chen Tao; Stefanie Neutzner; Letizia Colella; Sergio Marras; Ajay Ram Srimath Kandada; Marina Gandini; Michele De Bastiani; Giuseppina Pace; Liberato Manna; Mario Caironi; Chiara Bertarelli; Annamaria Petrozza
We present here a planar perovskite solar cell with a stabilized power conversion efficiency (PCE) of 17.6% at the maximum power point and a PCE of 17% extracted from quasi-static J–V with an open-circuit voltage of 1.11 V. Such excellent figures of merit can be achieved by engineering a solution-processed electron buffer layer that does not require high temperature steps. A compact thin film of perovskite absorber is grown onto a PCBM-based electron extraction layer by implementing a novel two-step procedure which preserves the soluble organic interlayer during the deposition of successive layers. We demonstrate that efficient charge extraction is the key for high steady state efficiency in perovskite solar cells with a highly integrable architecture.
Journal of Physical Chemistry Letters | 2014
Giulia Grancini; Sergio Marras; Mirko Prato; Cinzia Giannini; Claudio Quarti; Filippo De Angelis; Michele De Bastiani; Giles E. Eperon; Henry J. Snaith; Liberato Manna; Annamaria Petrozza
We investigate the relationship between structural and optical properties of organo-lead mixed halide perovskite films as a function of the crystallization mechanism. For methylammonium lead tri-iodide, the organic cations rearrange within the inorganic cage, moving from crystals grown in a mesoporous scaffold to larger, oriented crystals grown on a flat substrate. This reduces the strain felt by the bonds forming the cage and affects the motion of the organic cation in it, influencing the electronic transition at the onset of the optical absorption spectrum of the semiconductor. Moreover, we demonstrate that in mixed-halide perovskite, though Cl(-) ions are not present in a detectable concentration in the unit cell, they drive the crystallization dynamics. This induces a preferential order during crystallization, from a molecular, i.e., organic-inorganic moieties arrangement, to a nano-mesoscopic level, i.e., larger crystals with anisotropic shape. Finally, we show that while Cl is mainly expelled from flat films made of large crystals, in the presence of an oxide mesoporous scaffold they are partially retained in the composite.
Nature Photonics | 2015
Giulia Grancini; Ajay Ram Srimath Kandada; Jarvist M. Frost; Alex J. Barker; Michele De Bastiani; Marina Gandini; Sergio Marras; Guglielmo Lanzani; Aron Walsh; Annamaria Petrozza
Solar cells based on hybrid inorganic-organic halide perovskites have demonstrated high power conversion efficiencies in a range of architectures. The existence and stability of bound electron-hole pairs in these materials, and their role in the exceptional performance of optoelectronic devices, remains a controversial issue. Here we demonstrate, through a combination of optical spectroscopy and multiscale modeling as a function of the degree of polycrystallinity and temperature, that the electron-hole interaction is sensitive to the microstructure of the material. The long-range order is disrupted by polycrystalline disorder and the variations in electrostatic potential found for smaller crystals suppress exciton formation, while larger crystals of the same composition demonstrate an unambiguous excitonic state. We conclude that fabrication procedures and morphology strongly influence perovskite behaviour, with both free carrier and excitonic regimes possible, with strong implications for optoelectronic devices.
APL Materials | 2014
Michele De Bastiani; Valerio D’Innocenzo; Samuel D. Stranks; Henry J. Snaith; Annamaria Petrozza
We have fabricated CH3NH3PbI3−xClx perovskite thin films crystallized in situ on substrates of different natures (e.g., porosity, wettability) and investigated their photoluminescence properties. We observe that the crystallization time and thin film structure are strongly influenced by the chemical nature and porosity of the substrate. Moreover, we find that the mesoporous scaffold can tune the emissive properties of the semiconducting compound both in terms of spectral region and dynamics. In particular, perovskite crystallites grown in the nanometre size porous scaffold present a shorter-living and blue-shifted emission with respect to the perovskite crystals which are free to grow without any constraints.
Journal of Physical Chemistry Letters | 2017
Alberto Privitera; Marcello Righetto; Michele De Bastiani; Francesco Carraro; Marzio Rancan; Lidia Armelao; Gaetano Granozzi; Renato Bozio; Lorenzo Franco
Hybrid organic/inorganic perovskite nanoparticles (NPs) have garnered remarkable research attention because of their promising photophysical properties. New and interesting properties emerge after combining perovskite NPs with semiconducting materials. Here, we report the synthesis and investigation of a composite material obtained by mixing CH3NH3PbBr3 nanocrystals with the semiconducting polymer poly(3-hexylthiophene) (P3HT). By the combination of structural techniques and optical and magnetic spectroscopies we observed multiple effects of the perovskite NPs on the P3HT: (i) an enlargement of P3HT crystalline domains, (ii) a strong p-doping of the P3HT, and (iii) an enhancement of interchain order typical of H-aggregates. These observations open a new avenue toward innovative perovskite NP-based applications.
Advanced Energy Materials | 2015
Tomas Leijtens; Eric T. Hoke; Giulia Grancini; Daniel J. Slotcavage; Giles E. Eperon; James M. Ball; Michele De Bastiani; Andrea R. Bowring; Nicola Martino; Konrad Wojciechowski; Michael D. McGehee; Henry J. Snaith; Annamaria Petrozza
Advanced Energy Materials | 2016
Michele De Bastiani; Giorgio Dell'Erba; Marina Gandini; Valerio D'Innocenzo; Stefanie Neutzner; Ajay Ram Srimath Kandada; Giulia Grancini; Maddalena Binda; Mirko Prato; James M. Ball; Mario Caironi; Annamaria Petrozza
Journal of the American Chemical Society | 2018
Jun Pan; Yuequn Shang; Jun Yin; Michele De Bastiani; Wei Peng; Ibrahim Dursun; Lutfan Sinatra; Ahmed M. El-Zohry; Mohamed N. Hedhili; Abdul-Hamid Emwas; Omar F. Mohammed; Zhijun Ning; Osman M. Bakr