Consolidation and Expansion of Perovskite Solar Cell Research
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http://dx.doi.org/10.1021/acs.jpclett.6b00284 |
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Title
Consolidation and Expansion of Perovskite Solar Cell ResearchAuthor (s)
Date
2016-03Publisher
American Chemical SocietyType
info:eu-repo/semantics/articlePublisher version
http://pubs.acs.org/doi/abs/10.1021/acs.jpclett.6b00284Version
info:eu-repo/semantics/publishedVersionSubject
Abstract
Hysteresis, band transport, polaron transport, balanced
charge transport, diffusion length, vacancies, ion
migration, defects, doping, traps, exciton binding energy,
luminescence, hot carrier cooling, lasing, ... [+]
Hysteresis, band transport, polaron transport, balanced
charge transport, diffusion length, vacancies, ion
migration, defects, doping, traps, exciton binding energy,
luminescence, hot carrier cooling, lasing, ampli
fied spontaneous emission,
fluorescence intermittency, semitransparent, colored,
band gap tuning, precursors, sequential deposition, composi-
tional engineering, solvent engineering, aging, pinholes, organic
contacts, stabilization with cesium, crystallization control, grain
boundaries, moisture, degradation, ecotoxicity, ferroelectric,
phase transitions, glassy dynamics, dielectric constant, dipoles,
cage tilting, giant capacitance, single crystals, nanowires,
nanoplatelets, nanoclusters, quantum dots, plasmonic particles,
flexible, upscaling, tandem...
These are just a fraction of possible keywords that show
active research topics in hybrid organic−inorganic perovskite
solar cells. [-]
Is part of
J. Phys. Chem. Lett., 2016, 7 (5), pp 775–775Rights
Copyright © 2016 American Chemical Society
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