Enhanced Efficiency of Carbon-Based Mesoscopic Perovskite Solar Cells through a Tungsten Oxide Nanoparticle Additive in the Carbon Electrode

This paper presents perovskite solar cells employed with WO 3 nanoparticles embedded carbon top electrode. WO 3 nanoparticles works as an inorganic hole-transport material (HTM) to promote the hole-extraction in the perovskite/carbon interface as revealed by efficiency, electrochemical impedance and...

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Veröffentlicht in:Scientific reports 2019-06, Vol.9 (1), p.8778-8, Article 8778
Hauptverfasser: Zhou, Lin, Zuo, Yuhua, Mallick, Tapas Kumar, Sundaram, Senthilarasu
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Sprache:eng
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Zusammenfassung:This paper presents perovskite solar cells employed with WO 3 nanoparticles embedded carbon top electrode. WO 3 nanoparticles works as an inorganic hole-transport material (HTM) to promote the hole-extraction in the perovskite/carbon interface as revealed by efficiency, electrochemical impedance and external quantum efficiency measurements. As a result, a 40% enhancement of energy conversion efficiency has been achieved compared to the reference devices with the energy conversion efficiency of 10.77% under standard conditions. In addition, the Li-TFSI can modify the interface between electron-transport material (ETM) and perovskite, which may inhibit the recombination at the ETM/perovskite interface. The V OC of devices upon the modification of Li-TFSI is increased from 887.9 to 934.2 mV. This work highlights about the enlightenment of the effective performance of carbon-based mesoscopic PSCs by the introduction of HTM and the modification of interfaces.
ISSN:2045-2322
2045-2322
DOI:10.1038/s41598-019-45374-x