scholarly journals Vibrational relaxation dynamics in layered perovskite quantum wells

2021 ◽  
Vol 118 (25) ◽  
pp. e2104425118
Author(s):  
Li Na Quan ◽  
Yoonjae Park ◽  
Peijun Guo ◽  
Mengyu Gao ◽  
Jianbo Jin ◽  
...  

Organic–inorganic layered perovskites, or Ruddlesden–Popper perovskites, are two-dimensional quantum wells with layers of lead-halide octahedra stacked between organic ligand barriers. The combination of their dielectric confinement and ionic sublattice results in excitonic excitations with substantial binding energies that are strongly coupled to the surrounding soft, polar lattice. However, the ligand environment in layered perovskites can significantly alter their optical properties due to the complex dynamic disorder of the soft perovskite lattice. Here, we infer dynamic disorder through phonon dephasing lifetimes initiated by resonant impulsive stimulated Raman photoexcitation followed by transient absorption probing for a variety of ligand substitutions. We demonstrate that vibrational relaxation in layered perovskite formed from flexible alkyl-amines as organic barriers is fast and relatively independent of the lattice temperature. Relaxation in layered perovskites spaced by aromatic amines is slower, although still fast relative to bulk inorganic lead bromide lattices, with a rate that is temperature dependent. Using molecular dynamics simulations, we explain the fast rates of relaxation by quantifying the large anharmonic coupling of the optical modes with the ligand layers and rationalize the temperature independence due to their amorphous packing. This work provides a molecular and time-domain depiction of the relaxation of nascent optical excitations and opens opportunities to understand how they couple to the complex layered perovskite lattice, elucidating design principles for optoelectronic devices.

Author(s):  
Lorenzo Maserati ◽  
Sivan Refaely-Abramson ◽  
Christoph Kastl ◽  
Christopher T. Chen ◽  
Nicholas J. Borys ◽  
...  

Hybrid layered metal chalcogenide crystalline polymer hosts strongly anisotropic two-dimensional excitons with large binding energies.


1992 ◽  
Vol 12 (4) ◽  
pp. 447-451 ◽  
Author(s):  
S.R. Jackson ◽  
J.E. Nicholls ◽  
W.E. Hagston ◽  
T.J. Gregory ◽  
P. Harrison ◽  
...  

1995 ◽  
Vol 17 (11-12) ◽  
pp. 1493-1498 ◽  
Author(s):  
O. Heller ◽  
J. Tignon ◽  
J. Martinez-Pastor ◽  
Ph. Roussignol ◽  
G. Bastard ◽  
...  

2002 ◽  
Vol 229 (2) ◽  
pp. 643-646 ◽  
Author(s):  
M. Schmidt ◽  
H. Priller ◽  
B. Dal Don ◽  
M. Dremel ◽  
M. Gr�n ◽  
...  

2021 ◽  
Vol 888 ◽  
pp. 37-42
Author(s):  
Yutaro Yagi ◽  
Isao Kagomiya ◽  
Ken-ichi Kakimoto

This study investigated the effects of Ba substitution on protonic conductive properties in the Fe doped Sr2TiO4 layered perovskite. We synthesized sintered samples of (BaxSr2-x)(Ti0.90Fe0.10)O4-δ (x= 0.05, 0.10) (BSTF05, BSTF10). The result of X-ray diffraction suggests that solid solute limitation of Ba is between x= 0.05 and 0.10. BSTF05 at 600 °C shows proton and oxide-ion conductivities as well as elecronic conductivity. It means that BSTF05 is a triple conductor at 600 °C under oxidation atmosphere. The proton conductivities in BSTF05 are lower than that in Ba un-doped Sr2(Ti0.9Fe0.1)O4-δ evaluated in our previous work, suggesting that the effect of the Ba substitution on proton defect generation is small. The redox reaction of Fe ions is more important for creation of proton defects in the layered perovskites.


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