Published 2024 | Version v3
Dataset Open

Dataset to accompany publication "Best practices in measuring absorption at the macro- and microscale"

Description

This dataset accompanies the publication "Best practices in measuring absorption at the macro- and microscale" published in APL Photonics. The data can be used to reproduce original plots in figures 1-4 in the main text and all original plots in the supporting information (noting several plots are reproductions of others' works, as noted in the text). This data was generated through a microscale absorption meaurements and . All files are in .csv and easily readable. 

The abstract for the associated paper is as follows:

The fraction of light absorbed in a material is a key parameter for a wide range of optoelectronic and energy devices, including solar cells, light emitting diodes and photo(electro)chemical devices. It can reveal detailed performance information and establish a material’s theoretical efficiency limits. However, measuring absorption accurately is challenging, especially due to scattering effects at macroscale and achieving perpendicular illumination over a small area at the microscale. In this tutorial we present concepts and best practices in measuring absorption at both the macro- and micro-scale. We also give examples of using absorption to reveal critical optoelectronic information in energy devices. This work aims at standardising the recording of absorption measurements across a number of fields, allowing for improved microscale understanding of a wide range of samples.

Files

Figure 2e.csv

Files (3.6 MB)

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md5:c0e9e27419f28dfc1d640ff13f7dc8fa
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md5:f1f0b080436300c30acb297b4a6131e0
41.6 kB Preview Download
md5:db0985f3e5767836fb3e7711aeebc48f
35.8 kB Preview Download
md5:43fbc4a4655ff4752e828675f7e2db9c
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md5:35197f5f257849fe2493b1c8cfc2608d
95.7 kB Preview Download
md5:5321466d29e8827ddef36804be53acfd
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md5:f599fb0f205b4eac46661bcb954f3977
111.7 kB Preview Download
md5:ae68189838e132890059d555455317fa
1.3 MB Preview Download
md5:4996e97573d39df97cb92cfa70410409
1.2 MB Preview Download
md5:497225713d5a3a7e598c5612a561fcd6
4.6 kB Preview Download
md5:75fa843cf1547997361aaa282e6101bd
76.1 kB Preview Download
md5:01c45fbf6586ba44c1aa11d0fa146fe0
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Additional details

Related works

Is supplement to
Publication: 10.1063/5.0210830 (DOI)

Funding

Nanophotonic Control of Charge- and Ion-transport for Advancing Light-energy Storage Devices 194181
Swiss National Science Foundation
Plasmon Enhanced Visualization of Buried Interfaces in Solar Cells 217040
Swiss National Science Foundation
Scholarship 201906210091
China Scholarship Council