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Chem. Mat. cover picture: "Fully Inorganic Mixed Cation Lead Halide Perovskite Nanoparticles: A Study at the Atomic Level"

The atomic resolution of a mixed cation rubidium–cesium lead halide perovskite nanoparticle is presented. © Adva Shpatz Dayan
Abstract Mixed cation perovskites are currently the most efficient (...)

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H2020 Grant for perovskite-based lighting, wearables and fabric devices with LiFi and photovoltaic capability has been approved and started April 1st 2020

The EU H2020-funded project PeroCUBE aims at developing flexible, lightweight perovskite-based electronics, creating new commercial opportunities for the lighting, energy and telecom industries. (...)

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The dark exciton ground state promotes photon-pair emission in individual perovskite nanocrystals

Perovskite quantum dots (QDs) are promising nanostructures for optoelectronics, especially for the application to light emitting devices or single photon sources. CsPbX3 inorganic QDs or FAPbX3 (...)

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Semiconductor physics of organic–inorganic 2D halide perovskites

(Nature Nanotechnology 2020) In this Review, we discuss the current understanding in the structure and physical properties of 2DPKs from the monolayers to assemblies, and present a comprehensive comparison with conventional semiconductors. (...)

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Highly efficient photoelectric effect in halide perovskites for regenerative electron sources

We report efficient, regenerative and low-cost electron sources based on solution-processed halide perovskites thin films when they are excited with light with energy equal to or above their (...)

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Launch of a COST European project

About the European COST action OPERA The European network COST OPERA "European Network for Innovative and Advanced Epitaxy" which was funded by Europe, and started in November 2021, aims to (...)

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Light-activated interlayer contraction in 2D perovskites for high-efficiency solar cells

(Nature Nanotechnology 2021) In this Review, a high enhancement of photovoltaic efficiency of 2D perovskite solar cells is presented. (...)

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Solar hydrogen production achieved with a new class of materials developed in Rennes

(Advanced Science 2021) In the work which has just been published in the prestigious journal “ Advanced Science ”, the Rennes team proposes to use a new family of materials with quite astonishing photoelectric properties to produce solar hydrogen efficiently, at low cost and with a low environmental impact. This proposal is accompanied by several demonstrations of photoelectrodes operating under solar illumination. (...)

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Unveiling the invisible by photoelectrochemistry

In a recent collaborative work, a team of researchers from ISCR (Rennes), FOTON (Rennes), and ISM (Bordeaux) has shown that infrared light, invisible to the human eye, can be converted into (...)

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International Conference EMLEM 2022 : Best Oral Contribution Award

Marios ZACHARIAS, Post-doctoral researcher of FOTON-OHM (INSA) CNRS laboratory, received the award for the best oral contribution to EMLEM 2022 (International Conference on Emerging Light (...)

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