Bis(Butylammonium) lead iodide: photoluminescence peak position

Photoluminescence peak position
Origin: experimental (T = 298.0 K)
Photoluminescence peak position

Crystal system: orthorhombic

Photoluminescence peak position, nm
Fixed parameters:
  • temperature = 298.0 K
L. G. Bonato, J. C. Germino, W. X. Coelho Oliveira, R. Kamat, J. Xu, C. J. Tassone, S. D. Stranks, M. F. Toney, and A. F. Nogueira, Synthesis of Polycrystalline Ruddlesden–Popper Organic Lead Halides and Their Growth Dynamics, Chemistry of Materials 31, 9472‑9479 (2019). doi: 10.1021/acs.chemmater.9b03439.
System description
Dimensionality: 2D n: 1
Sample type: powder
Related data
This data set is directly linked to other data sets: See all related data

Starting materials: PbI2, toluene, butyric acid, butylamine, butylammonium iodide

Product: Powder film on glass substrate

Description: PbI2, butyric acid, toluene, and butylamine were mixed in a capped flask. Separately, butylammonium iodide was dissolved in toluene with butylamine and butyric acid. The two solutions were combined and stirred until an insoluble yellow solid precipitated. The solid was removed by centrifuging at 6000 rpm for 3 minutes. The yellow solid was redispersed in toluene and centrifuged a second time, to produce the final products. The paintlike paste was then deposited on a glass substrate. A Pasteur pipette was used to spread the paste over the surface and was then allowed to dry.

Method: Photoluminescence spectra

Description: A Horiba-Jobin Yvon Fluorolog-3 instrument was used on the powder films to measure photoluminescence spectra. Excitation was perpendicular to the sample and emission was collected at an angle of ~15 degrees. The data was corrected according to the lamp and detector details by using algorithms from the equipment software.

L. G. Bonato, J. C. Germino, W. X. Coelho Oliveira, R. Kamat, J. Xu, C. J. Tassone, S. D. Stranks, M. F. Toney, and A. F. Nogueira, Synthesis of Polycrystalline Ruddlesden–Popper Organic Lead Halides and Their Growth Dynamics, Chemistry of Materials 31, 9472‑9479 (2019). doi: 10.1021/acs.chemmater.9b03439.

Extraction method: Engauge digitizer
Entry added on: April 5, 2022, 3:42 p.m.
Entry added by: Rayan C Duke University
Last updated on: April 7, 2022, 1:22 p.m.
Last updated by: Rayan C Duke University

Download data
Data set ID: 1950 Did you find any mistakes or inconsistencies about this data? Send us a note and we'll have a look at it and send you a reply. Thanks!


License

All data is available under the Creative Commons license with attribution clause, described here and, in its full text, here.