Lifetime‐Engineered Carbon Nanodots for Time Division Duplexing
Abstract Optical multiplexing attracts considerable attention in the field of information encryption, optical probe, and time‐resolved bioimaging. However, the optical multiplexing based on rare‐earth nanoparticles suffers from heavy metal elements and relatively short lifetimes; sophisticated facil...
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doaj-152c120cdd064e40985b91a898a9b9442021-03-17T08:43:53ZengWileyAdvanced Science2198-38442021-03-0186n/an/a10.1002/advs.202003433Lifetime‐Engineered Carbon Nanodots for Time Division DuplexingYa‐Chuan Liang0Kai‐Kai Liu1Xue‐Ying Wu2Qing Lou3Lai‐Zhi Sui4Lin Dong5Kai‐Jun Yuan6Chong‐Xin Shan7Henan Key Laboratory of Diamond Optoelectronic Material and Devices School of Physics and Microelectronics Zhengzhou University Zhengzhou 450001 ChinaHenan Key Laboratory of Diamond Optoelectronic Material and Devices School of Physics and Microelectronics Zhengzhou University Zhengzhou 450001 ChinaHenan Key Laboratory of Diamond Optoelectronic Material and Devices School of Physics and Microelectronics Zhengzhou University Zhengzhou 450001 ChinaHenan Key Laboratory of Diamond Optoelectronic Material and Devices School of Physics and Microelectronics Zhengzhou University Zhengzhou 450001 ChinaState Key Laboratory of Molecular Reaction Dynamics Dalian Institute of Chemical Physics Chinese Academy of Sciences 457 Zhongshan Road Dalian 116023 ChinaHenan Key Laboratory of Diamond Optoelectronic Material and Devices School of Physics and Microelectronics Zhengzhou University Zhengzhou 450001 ChinaState Key Laboratory of Molecular Reaction Dynamics Dalian Institute of Chemical Physics Chinese Academy of Sciences 457 Zhongshan Road Dalian 116023 ChinaHenan Key Laboratory of Diamond Optoelectronic Material and Devices School of Physics and Microelectronics Zhengzhou University Zhengzhou 450001 ChinaAbstract Optical multiplexing attracts considerable attention in the field of information encryption, optical probe, and time‐resolved bioimaging. However, the optical multiplexing based on rare‐earth nanoparticles suffers from heavy metal elements and relatively short lifetimes; sophisticated facilities are thus needed. Herein, time division duplexing based on eco‐friendly carbon nanodots (CNDs) with manipulative luminescence lifetimes is demonstrated. In a single green color emission channel, the luminescence lifetimes of the CNDs can be manipulated from nanosecond level to second level by introducing water, while the lifetime of the CNDs confined by a silica shell stays. Time division duplexing based on the CNDs and CNDs@silica with distinct lifetimes is realized and spatio‐temporal overlapping information is thus resolved. High‐level information encryption using the time division duplexing technology is realized. This work may promise the potential applications of CNDs in multi‐lifetime channels biological imaging, high‐density information storage, and anti‐counterfeiting.https://doi.org/10.1002/advs.202003433carbon nanodotsinformation encryptionoptical dultiplexingphosphorescence |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ya‐Chuan Liang Kai‐Kai Liu Xue‐Ying Wu Qing Lou Lai‐Zhi Sui Lin Dong Kai‐Jun Yuan Chong‐Xin Shan |
spellingShingle |
Ya‐Chuan Liang Kai‐Kai Liu Xue‐Ying Wu Qing Lou Lai‐Zhi Sui Lin Dong Kai‐Jun Yuan Chong‐Xin Shan Lifetime‐Engineered Carbon Nanodots for Time Division Duplexing Advanced Science carbon nanodots information encryption optical dultiplexing phosphorescence |
author_facet |
Ya‐Chuan Liang Kai‐Kai Liu Xue‐Ying Wu Qing Lou Lai‐Zhi Sui Lin Dong Kai‐Jun Yuan Chong‐Xin Shan |
author_sort |
Ya‐Chuan Liang |
title |
Lifetime‐Engineered Carbon Nanodots for Time Division Duplexing |
title_short |
Lifetime‐Engineered Carbon Nanodots for Time Division Duplexing |
title_full |
Lifetime‐Engineered Carbon Nanodots for Time Division Duplexing |
title_fullStr |
Lifetime‐Engineered Carbon Nanodots for Time Division Duplexing |
title_full_unstemmed |
Lifetime‐Engineered Carbon Nanodots for Time Division Duplexing |
title_sort |
lifetime‐engineered carbon nanodots for time division duplexing |
publisher |
Wiley |
series |
Advanced Science |
issn |
2198-3844 |
publishDate |
2021-03-01 |
description |
Abstract Optical multiplexing attracts considerable attention in the field of information encryption, optical probe, and time‐resolved bioimaging. However, the optical multiplexing based on rare‐earth nanoparticles suffers from heavy metal elements and relatively short lifetimes; sophisticated facilities are thus needed. Herein, time division duplexing based on eco‐friendly carbon nanodots (CNDs) with manipulative luminescence lifetimes is demonstrated. In a single green color emission channel, the luminescence lifetimes of the CNDs can be manipulated from nanosecond level to second level by introducing water, while the lifetime of the CNDs confined by a silica shell stays. Time division duplexing based on the CNDs and CNDs@silica with distinct lifetimes is realized and spatio‐temporal overlapping information is thus resolved. High‐level information encryption using the time division duplexing technology is realized. This work may promise the potential applications of CNDs in multi‐lifetime channels biological imaging, high‐density information storage, and anti‐counterfeiting. |
topic |
carbon nanodots information encryption optical dultiplexing phosphorescence |
url |
https://doi.org/10.1002/advs.202003433 |
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