Nanoscale LiZnN - luminescent half-Heusler quantum dots
Colloidal semiconductor quantum dots are a well-established technology, with numerous materials available either commercially or through the vast body of literature. The prevalent materials are cadmium-based and are unlikely to find general acceptance in most applications. While the III-V family of...
Main Authors: | , , , , , , , , , , |
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Format: | Journal article |
Language: | English |
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American Chemical Society
2023
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_version_ | 1826312512530808832 |
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author | Carter-Searjeant, S Fairclough, SM Haigh, SJ Zou, Y Curry, RJ Taylor, PN Huang, C Fleck, R Machado, P Kirkland, AI Green, MA |
author_facet | Carter-Searjeant, S Fairclough, SM Haigh, SJ Zou, Y Curry, RJ Taylor, PN Huang, C Fleck, R Machado, P Kirkland, AI Green, MA |
author_sort | Carter-Searjeant, S |
collection | OXFORD |
description | Colloidal semiconductor quantum dots are a well-established technology, with numerous materials available either commercially or through the vast body of literature. The prevalent materials are cadmium-based and are unlikely to find general acceptance in most applications. While the III-V family of materials is a likely substitute, issues remain about its long-term suitability, and other earth-abundant materials are being explored. In this report, we highlight a nanoscale half-Heusler semiconductor, LiZnN, composed of readily available elements as a potential alternative system to luminescent II-VI and III-V nanoparticle quantum dots. |
first_indexed | 2024-04-09T03:55:42Z |
format | Journal article |
id | oxford-uuid:0609ea64-6c8f-443b-8571-b6deef72f546 |
institution | University of Oxford |
language | English |
last_indexed | 2024-04-09T03:55:42Z |
publishDate | 2023 |
publisher | American Chemical Society |
record_format | dspace |
spelling | oxford-uuid:0609ea64-6c8f-443b-8571-b6deef72f5462024-03-18T13:18:58ZNanoscale LiZnN - luminescent half-Heusler quantum dotsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:0609ea64-6c8f-443b-8571-b6deef72f546EnglishSymplectic ElementsAmerican Chemical Society2023Carter-Searjeant, SFairclough, SMHaigh, SJZou, YCurry, RJTaylor, PNHuang, CFleck, RMachado, PKirkland, AIGreen, MAColloidal semiconductor quantum dots are a well-established technology, with numerous materials available either commercially or through the vast body of literature. The prevalent materials are cadmium-based and are unlikely to find general acceptance in most applications. While the III-V family of materials is a likely substitute, issues remain about its long-term suitability, and other earth-abundant materials are being explored. In this report, we highlight a nanoscale half-Heusler semiconductor, LiZnN, composed of readily available elements as a potential alternative system to luminescent II-VI and III-V nanoparticle quantum dots. |
spellingShingle | Carter-Searjeant, S Fairclough, SM Haigh, SJ Zou, Y Curry, RJ Taylor, PN Huang, C Fleck, R Machado, P Kirkland, AI Green, MA Nanoscale LiZnN - luminescent half-Heusler quantum dots |
title | Nanoscale LiZnN - luminescent half-Heusler quantum dots |
title_full | Nanoscale LiZnN - luminescent half-Heusler quantum dots |
title_fullStr | Nanoscale LiZnN - luminescent half-Heusler quantum dots |
title_full_unstemmed | Nanoscale LiZnN - luminescent half-Heusler quantum dots |
title_short | Nanoscale LiZnN - luminescent half-Heusler quantum dots |
title_sort | nanoscale liznn luminescent half heusler quantum dots |
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