High-resolution patterning of colloidal quantum dots via non-destructive, light-driven ligand crosslinking
Designing high-resolution displays based on colloidal quantum dots remains a challenge. Here, the authors demonstrate a photo-patterning method to develop CdSe-based core-shell quantum dots patterns of red, green and blue colours with diameters ranging from 7 to 20 nm and resolution of 1400 pixels p...
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Nature Portfolio
2020
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oai:doaj.org-article:68d70c5c45724f7da0b19ba5e9fab4cd2021-12-02T14:59:27ZHigh-resolution patterning of colloidal quantum dots via non-destructive, light-driven ligand crosslinking10.1038/s41467-020-16652-42041-1723https://doaj.org/article/68d70c5c45724f7da0b19ba5e9fab4cd2020-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16652-4https://doaj.org/toc/2041-1723Designing high-resolution displays based on colloidal quantum dots remains a challenge. Here, the authors demonstrate a photo-patterning method to develop CdSe-based core-shell quantum dots patterns of red, green and blue colours with diameters ranging from 7 to 20 nm and resolution of 1400 pixels per inch.Jeehye YangDonghyo HahmKyunghwan KimSeunghyun RheeMyeongjae LeeSeunghan KimJun Hyuk ChangHye Won ParkJaehoon LimMinkyoung LeeHyeokjun KimJoohee BangHyungju AhnJeong Ho ChoJeonghun KwakBongSoo KimChanghee LeeWan Ki BaeMoon Sung KangNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-9 (2020) |
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Science Q Jeehye Yang Donghyo Hahm Kyunghwan Kim Seunghyun Rhee Myeongjae Lee Seunghan Kim Jun Hyuk Chang Hye Won Park Jaehoon Lim Minkyoung Lee Hyeokjun Kim Joohee Bang Hyungju Ahn Jeong Ho Cho Jeonghun Kwak BongSoo Kim Changhee Lee Wan Ki Bae Moon Sung Kang High-resolution patterning of colloidal quantum dots via non-destructive, light-driven ligand crosslinking |
description |
Designing high-resolution displays based on colloidal quantum dots remains a challenge. Here, the authors demonstrate a photo-patterning method to develop CdSe-based core-shell quantum dots patterns of red, green and blue colours with diameters ranging from 7 to 20 nm and resolution of 1400 pixels per inch. |
format |
article |
author |
Jeehye Yang Donghyo Hahm Kyunghwan Kim Seunghyun Rhee Myeongjae Lee Seunghan Kim Jun Hyuk Chang Hye Won Park Jaehoon Lim Minkyoung Lee Hyeokjun Kim Joohee Bang Hyungju Ahn Jeong Ho Cho Jeonghun Kwak BongSoo Kim Changhee Lee Wan Ki Bae Moon Sung Kang |
author_facet |
Jeehye Yang Donghyo Hahm Kyunghwan Kim Seunghyun Rhee Myeongjae Lee Seunghan Kim Jun Hyuk Chang Hye Won Park Jaehoon Lim Minkyoung Lee Hyeokjun Kim Joohee Bang Hyungju Ahn Jeong Ho Cho Jeonghun Kwak BongSoo Kim Changhee Lee Wan Ki Bae Moon Sung Kang |
author_sort |
Jeehye Yang |
title |
High-resolution patterning of colloidal quantum dots via non-destructive, light-driven ligand crosslinking |
title_short |
High-resolution patterning of colloidal quantum dots via non-destructive, light-driven ligand crosslinking |
title_full |
High-resolution patterning of colloidal quantum dots via non-destructive, light-driven ligand crosslinking |
title_fullStr |
High-resolution patterning of colloidal quantum dots via non-destructive, light-driven ligand crosslinking |
title_full_unstemmed |
High-resolution patterning of colloidal quantum dots via non-destructive, light-driven ligand crosslinking |
title_sort |
high-resolution patterning of colloidal quantum dots via non-destructive, light-driven ligand crosslinking |
publisher |
Nature Portfolio |
publishDate |
2020 |
url |
https://doaj.org/article/68d70c5c45724f7da0b19ba5e9fab4cd |
work_keys_str_mv |
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