Mechanistic insight into solution-processed p-type tin chalcogenides as a basis for designing their n-type analogs
Fiedler C. 2026. Mechanistic insight into solution-processed p-type tin chalcogenides as a basis for designing their n-type analogs. Institute of Science and Technology Austria.
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| PhD
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| English
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Corresponding author has ISTA affiliation
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ISTA Thesis
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Date Published
2026-08-05
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Institute of Science and Technology Austria
Acknowledgement
This thesis and the publications within, were financially supported by the Institute of Science and Technology Austria and the Werner Siemens Foundation under the project “High Thermoelectric Materials: The Werner Siemens Laboratory for the High Throughput Discovery of Semiconductors for Waste Heat Recovery”.
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141
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IST-REx-ID
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Fiedler C. Mechanistic insight into solution-processed p-type tin chalcogenides as a basis for designing their n-type analogs. 2026. doi:10.15479/AT-ISTA-22626
Fiedler, C. (2026). Mechanistic insight into solution-processed p-type tin chalcogenides as a basis for designing their n-type analogs. Institute of Science and Technology Austria. https://doi.org/10.15479/AT-ISTA-22626
Fiedler, Christine. “Mechanistic Insight into Solution-Processed p-Type Tin Chalcogenides as a Basis for Designing Their n-Type Analogs.” Institute of Science and Technology Austria, 2026. https://doi.org/10.15479/AT-ISTA-22626.
C. Fiedler, “Mechanistic insight into solution-processed p-type tin chalcogenides as a basis for designing their n-type analogs,” Institute of Science and Technology Austria, 2026.
Fiedler C. 2026. Mechanistic insight into solution-processed p-type tin chalcogenides as a basis for designing their n-type analogs. Institute of Science and Technology Austria.
Fiedler, Christine. Mechanistic Insight into Solution-Processed p-Type Tin Chalcogenides as a Basis for Designing Their n-Type Analogs. Institute of Science and Technology Austria, 2026, doi:10.15479/AT-ISTA-22626.
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