Rational design of asymmetric red fluorescent probes for live cell imaging with high AIE effects and large two-photon absorption cross sections using tunable terminal groups
10.1039/c5sc04920b
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Royal Society of Chemistry
2020
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sg-nus-scholar.10635-1803932024-03-26T08:54:43Z Rational design of asymmetric red fluorescent probes for live cell imaging with high AIE effects and large two-photon absorption cross sections using tunable terminal groups Chang, Z.-F Jing, L.-M Chen, B Zhang, M Cai, X Liu, J.-J Ye, Y.-C Lou, X Zhao, Z Liu, B Wang, J.-L Tang, B.Z CHEMICAL & BIOMOLECULAR ENGINEERING Biocompatibility Cytology Efficiency Fluorescence Medical imaging Photons Probes Two photon processes Asymmetric structures Fluorescence quantum efficiency MCF-7 breast cancer cells One photon excitations Triphenylamine groups Two-photon absorption cross section Two-photon excitations Two-photon fluorescence imaging Quantum efficiency 10.1039/c5sc04920b Chemical Science 7 7 4527-4536 2020-10-26T08:46:59Z 2020-10-26T08:46:59Z 2016 Article Chang, Z.-F, Jing, L.-M, Chen, B, Zhang, M, Cai, X, Liu, J.-J, Ye, Y.-C, Lou, X, Zhao, Z, Liu, B, Wang, J.-L, Tang, B.Z (2016). Rational design of asymmetric red fluorescent probes for live cell imaging with high AIE effects and large two-photon absorption cross sections using tunable terminal groups. Chemical Science 7 (7) : 4527-4536. ScholarBank@NUS Repository. https://doi.org/10.1039/c5sc04920b 2041-6520 https://scholarbank.nus.edu.sg/handle/10635/180393 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Royal Society of Chemistry Unpaywall 20201031 |
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Biocompatibility Cytology Efficiency Fluorescence Medical imaging Photons Probes Two photon processes Asymmetric structures Fluorescence quantum efficiency MCF-7 breast cancer cells One photon excitations Triphenylamine groups Two-photon absorption cross section Two-photon excitations Two-photon fluorescence imaging Quantum efficiency |
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Biocompatibility Cytology Efficiency Fluorescence Medical imaging Photons Probes Two photon processes Asymmetric structures Fluorescence quantum efficiency MCF-7 breast cancer cells One photon excitations Triphenylamine groups Two-photon absorption cross section Two-photon excitations Two-photon fluorescence imaging Quantum efficiency Chang, Z.-F Jing, L.-M Chen, B Zhang, M Cai, X Liu, J.-J Ye, Y.-C Lou, X Zhao, Z Liu, B Wang, J.-L Tang, B.Z Rational design of asymmetric red fluorescent probes for live cell imaging with high AIE effects and large two-photon absorption cross sections using tunable terminal groups |
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10.1039/c5sc04920b |
author2 |
CHEMICAL & BIOMOLECULAR ENGINEERING |
author_facet |
CHEMICAL & BIOMOLECULAR ENGINEERING Chang, Z.-F Jing, L.-M Chen, B Zhang, M Cai, X Liu, J.-J Ye, Y.-C Lou, X Zhao, Z Liu, B Wang, J.-L Tang, B.Z |
format |
Article |
author |
Chang, Z.-F Jing, L.-M Chen, B Zhang, M Cai, X Liu, J.-J Ye, Y.-C Lou, X Zhao, Z Liu, B Wang, J.-L Tang, B.Z |
author_sort |
Chang, Z.-F |
title |
Rational design of asymmetric red fluorescent probes for live cell imaging with high AIE effects and large two-photon absorption cross sections using tunable terminal groups |
title_short |
Rational design of asymmetric red fluorescent probes for live cell imaging with high AIE effects and large two-photon absorption cross sections using tunable terminal groups |
title_full |
Rational design of asymmetric red fluorescent probes for live cell imaging with high AIE effects and large two-photon absorption cross sections using tunable terminal groups |
title_fullStr |
Rational design of asymmetric red fluorescent probes for live cell imaging with high AIE effects and large two-photon absorption cross sections using tunable terminal groups |
title_full_unstemmed |
Rational design of asymmetric red fluorescent probes for live cell imaging with high AIE effects and large two-photon absorption cross sections using tunable terminal groups |
title_sort |
rational design of asymmetric red fluorescent probes for live cell imaging with high aie effects and large two-photon absorption cross sections using tunable terminal groups |
publisher |
Royal Society of Chemistry |
publishDate |
2020 |
url |
https://scholarbank.nus.edu.sg/handle/10635/180393 |
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1795301285273010176 |