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    updated on 20 August, 2026

PV devices of new conception with hybrid organic-inorganic materials

 
   16 Sept. clessidra che gira 11:30 - 13:00
ROOM 8
MICRO & NANOFABRICATION
MICRO & NANOFABRICATION
02 ADVANCED MATERIALS
ADVANCED MATERIALS 
TT.II - Technical Parallel Track Sessions
PV devices of new conception with hybrid organic-inorganic materials
Co-organised with Sapienza University of Rome
Chair: Giulia GRANCINI, University of Pavia

Hybrid materials for photovoltaics consist in the combinations of organic molecules and inorganic semiconductors as photoactive materials to harvest photons in a spectrally selective manner with adoption of a multilayer configuration. Such an approach brings about as advantages: 1) the attainment of controllable incident photon-to-electrical current conversion spectra thanks to the molecular design of organic absorbers and the development of synthetic procedures for the production of nanostructured inorganic materials also in the configuration of thin film; 2) adoption of low-cost solution-processing procedures for thin-film deposition; 3) possibility of using flexible substrates; 4) exploitation of the high charge mobility typical of inorganic semiconductors; 5) versatility in defining the PV cell configuration especially in terms of interface engineering (n-i-p/p-i-n schemes, bulk heterojunctions, semiconductor/electrolyte interfaces). In the class of hybrid systems for photovoltaics excel metal-halide perovskites and dye-sensitized nanostructured semiconductors of the metal-oxide type. This session aims to gather all young experts that are involved in the development of materials/configurations for hybrid photovoltaics. The efforts dedicated to the increase of the PV cell conversion efficiencies (either in the single- or multi-junction configurations), and to the improvement in terms of durability and temporal stability of the hybrid photovoltaic systems constitute paradigmatic aspects in this session.

The symposium is part of FE.I
TT.II.F.1
FE.I.3.1
Introductive Keynote
Aldo DI CARLO
CNR-ISM
Title in definition
DI CARLO Aldo  
TT.II.F.2
FE.I.3.2
Elham GHAVIDEL - CV
University of Rome "Tor Vergata"
Effects of Ultrathin Seed Layers in Thermally Evaporated Perovskite Solar Cells
GHAVIDEL Elham  
TT.II.F.3
FE.I.3.3
Elisa NONNI
University of Rome "Tor Vergata"
Title in definition
NONNI Elisa  
TT.II.F.4
FE.I.3.4
Simone FILIPPI - CV
University of Pavia
Static Antisolvent Processing for Scalable and Sustainable Perovskite Photovoltaics
FILIPPI Simone  
TT.II.F.5
FE.I.3.5
Riccardo PALLOTTA - CV
Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU)
From Single Crystals to Functional Devices: Metal Halide Perovskite Materials and Junctions
PALLOTTA Riccardo  
 

 

 
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