Journal article
Charge-carrier dynamics of solution-processed antimony- and bismuth-based chalcogenide thin films
- Abstract:
- Chalcogenide-based semiconductors have recently emerged as promising candidates for optoelectronic devices, benefiting from their low-cost, solution processability, excellent stability and tunable optoelectronic properties. However, the understanding of their fundamental optoelectronic properties is far behind the success of device performance and starts to limit their further development. To fill this gap, we conduct a comparative study of chalcogenide absorbers across a wide material space, in order to assess their suitability for different types of applications. We utilize optical-pump terahertz-probe spectroscopy and time-resolved microwave conductivity techniques to fully analyze their charge-carrier dynamics. We show that antimony-based chalcogenide thin films exhibit relatively low charge-carrier mobilities and short lifetimes, compared with bismuth-based chalcogenides. In particular, AgBiS2 thin films possess the highest mobility, and Sb2S3 thin films have less energetic disorder, which are beneficial for photovoltaic devices. On the contrary, Bi2S3 showed ultralong carrier lifetime and high photoconductive gain, which is beneficial for designing photoconductors.
- Publication status:
- Published
- Peer review status:
- Peer reviewed
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- Files:
-
-
(Preview, Accepted manuscript, pdf, 1.1MB, Terms of use)
-
- Publisher copy:
- 10.1021/acsenergylett.3c00140
Authors
- Publisher:
- American Chemical Society
- Journal:
- ACS Energy Letters More from this journal
- Volume:
- 8
- Issue:
- 3
- Pages:
- 1485-1492
- Publication date:
- 2023-02-17
- Acceptance date:
- 2023-02-14
- DOI:
- EISSN:
-
2380-8195
- Language:
-
English
- Keywords:
- Pubs id:
-
1331336
- Local pid:
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pubs:1331336
- Deposit date:
-
2023-03-06
Terms of use
- Copyright holder:
- American Chemical Society
- Copyright date:
- 2023
- Rights statement:
- © 2023 American Chemical Society
- Notes:
- This is the accepted manuscript version of the article. The final version is available from American Chemical Society at: 10.1021/acsenergylett.3c00140
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