Journal article

Influence of phenylethylammonium iodide as additive in the formamidinium tin iodide perovskite on interfacial characteristics and charge carrier dynamics


Authors listHorn, Jonas; Scholz, Mirko; Oum, Kawon; Lenzer, Thomas; Schlettwein, Derck

Publication year2019

JournalAPL Materials

Volume number7

Issue number3

ISSN2166-532X

Open access statusGold

DOI Linkhttps://doi.org/10.1063/1.5083624

PublisherAmerican Institute of Physics


Abstract

A combined electrical and time-resolved optical investigation of the perovskite formamidirdum tin iodide (FASnI(3)) and its pheriylethylamrnonium (PEA) derivative PEA(0.08)FA(0.92)SnI(3), which recently achieved a power conversion efficiency of 9%, is presented to study the specifics of contact characteristics and charge carrier dynamics. Microstructured gold electrode arrays were used to investigate the charge transport across a rnetal-perovskite interface and through micrometers of the perovsldte films. Symmetrical contact configuration enabled detailed polarization studies. Hysteresis in the current-voltage characteristics and a corresponding current-time behavior indicated limitations by charge transfer in the contacts. Hysteresis was less pronounced in PEA(0.08)FA(0.92)SnI(3) compared with FASnI(3). This is explained by a 2-dimensional interlayer at the contacts, which leads to decreased field-induced migration of ions at the contact. Carrier recombination in the bulk of FASnI(3) however, was only slightly modified by the presence of PEA. Ferntosecond broadband transient absorption experiments up to 1.5 ns provided rate constants for the Auger and bimolecular recombination processes in FASnI(3) of k(3) = 1 x 10(-29) cm(6) s(-1) and k(2) = 3.1 x 10(-1) cm(3) sal, respectively. In PEA(0.08)FA(0.92)SnI(3), no significant differences in k(2) and an only slightly increased k(3) = 2 x 10(-29) cm(6) s(-1) were measured. In extension to previous photoluminescence studies, we found efficient cooling of hot carriers by coupling to optical phonons (tau(cop), = 0.5 ps), which is even faster than in lead perovskites. 




Citation Styles

Harvard Citation styleHorn, J., Scholz, M., Oum, K., Lenzer, T. and Schlettwein, D. (2019) Influence of phenylethylammonium iodide as additive in the formamidinium tin iodide perovskite on interfacial characteristics and charge carrier dynamics, APL Materials, 7(3), Article 031112. https://doi.org/10.1063/1.5083624

APA Citation styleHorn, J., Scholz, M., Oum, K., Lenzer, T., & Schlettwein, D. (2019). Influence of phenylethylammonium iodide as additive in the formamidinium tin iodide perovskite on interfacial characteristics and charge carrier dynamics. APL Materials. 7(3), Article 031112. https://doi.org/10.1063/1.5083624



Keywords


CH3NH3PBI3HYSTERESISMETHYLAMMONIUM LEAD IODIDENMORGANIC CATIONSSOLAR-CELLS

Last updated on 2025-24-07 at 10:56