Article citationsMore>>
Tan, S., Yavuz, I., Weber, M.H., Huang, T., Chen, C.-H., Wang, R., Wang, H.-C., Ko, J.H., Nuryyeva, S., Xue, J., Zhao, Y., Wei, K.-H., Lee, J.-W. and Yang, Y. (2020) Shallow Iodine Defects Accelerate the Degradation of α-Phase Formamidinium Perovskite. Joule, 4, 2426-2442.
https://doi.org/10.1016/j.joule.2020.08.016
has been cited by the following article:
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TITLE:
Focused-Ion-Beam Induced Paramagnetic Defects in FAMn:PbI3 Perovskite Films
AUTHORS:
Nam Joong Jeon, Jangwon Seo, Yanghee Kim, Ji Yeong Lee, Sugyeong Hong, Sun Hee Kim, Jung-Keun Lee
KEYWORDS:
Perovskite Manganites, FIB, Paramagnetic Spins
JOURNAL NAME:
Advances in Chemical Engineering and Science,
Vol.12 No.2,
March
24,
2022
ABSTRACT: FAMn:PbI3 perovskite films were synthesized and probed mainly through
electron spin resonance (ESR) spectroscopy. FAMn:PbI3 with low (~1%)
Mn concentration showed a hyperfine sextet line originated from Mn++ ions. FAMn:PbI3 with high (10%) Mn concentration showed broad
resonance (~500 G peak-to-peak linewidth).
However, after bombardment of FAMn:PbI3 with high Mn
concentration by focused ion beams (FIB), a sharp ESR peak appeared. The
peak-to-peak linewidth (ΔHpp) was ~8 G regardless of the
temperature. The FIB-induced defect showed Curie behavior at low temperatures (5 K -
50 K), which indicates the presence of localized electrons at the defect sites
at low temperatures. The g-value increased from g = 2.0002 to 2.0016 as the
temperature increased from 5 K to 50 K. Together with the ongoing search for
electron spin echo (ESE), this could potentially provide a platform for realizing
magnetic bits, information storage, and increased manipulation speed.