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A molecularly engineered hole-transporting material for efficient perovskite solar cells

Additive-Free Transparent Triarylamine-Based Polymeric Hole-Transport Materials for Stable Perovskite Solar Cells

artículo científico publicado en 2016

Cesium-containing triple cation perovskite solar cells: improved stability, reproducibility and high efficiency

artículo científico publicado en 2016

Compositional Engineering for Thermally Stable, Highly Efficient Perovskite Solar Cells Exceeding 20% Power Conversion Efficiency with 85 °C/85% 1000 h Stability

scientific article published on 11 January 2019

Enhanced electronic properties in mesoporous TiO2 via lithium doping for high-efficiency perovskite solar cells

artículo científico publicado en 2016

Highly efficient planar perovskite solar cells through band alignment engineering

article by Juan-Pablo Correa-Baena et al published 2015 in Energy and Environmental Science

Incorporation of rubidium cations into perovskite solar cells improves photovoltaic performance

artículo científico publicado en 2016

Inside Back Cover: Additive-Free Transparent Triarylamine-Based Polymeric Hole-Transport Materials for Stable Perovskite Solar Cells (ChemSusChem 18/2016)

Ionic Liquid Control Crystal Growth to Enhance Planar Perovskite Solar Cells Efficiency

Migration of cations induces reversible performance losses over day/night cycling in perovskite solar cells

article

Room-Temperature Formation of Highly Crystalline Multication Perovskites for Efficient, Low-Cost Solar Cells.

artículo científico publicado en 2017

Silolothiophene-linked triphenylamines as stable hole transporting materials for high efficiency perovskite solar cells

Solar Cells: Ionic Liquid Control Crystal Growth to Enhance Planar Perovskite Solar Cells Efficiency (Adv. Energy Mater. 20/2016)

artículo científico publicado en 2016