4.8 Article

Voltage output of efficient perovskite solar cells with high open-circuit voltage and fill factor

Journal

ENERGY & ENVIRONMENTAL SCIENCE
Volume 7, Issue 8, Pages 2614-2618

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c4ee00762j

Keywords

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Funding

  1. Global Research Laboratory (GRL) Program
  2. Global Frontier R&D Program on Center for Multiscale Energy System - National Research Foundation in Korea
  3. Korea Research Institute of Chemical Technology (KRICT), Republic of Korea
  4. National Research Foundation of Korea [2007-00091, 2011-0031565] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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Besides the generated photocurrent as a key factor that impacts the efficiency of solar cells, the produced photovoltage and fill factor are also of critical importance. Therefore, understanding and optimization of the open-circuit voltage (V-oc) of perovskite solar cells, especially with an architecture consisting of mesoporous (mp)-TiO2/perovskite/ hole transporting materials (HTMs), are required to further improve the conversion efficiency. In this work, we study the effects of the energy level between CH3NH3(= MA)Pbl(3) and MAPbBr(3) and a series of triarylamine polymer derivatives containing fluorene and indenofluorene, which have different highest occupied molecular orbital (HOMO) levels, in terms of the photovoltaic behaviour. The voltage output of the device is found to be dependent on the higher energy level of perovskite solar absorbers as well as the HOMO level of the HTMs. The combination of MAPbBr(3) and a deep-HOMO HTM leads to a high photovoltage of 1.40 V, with a fill factor of 79% and an energy conversion efficiency of up to 6.7%, which is the highest value reported to date for MAPbBr(3) perovskite solar cells.

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