Confinement of Aggregation-Induced Emission Molecular Rotors in Ultrathin Two-Dimensional Porous Organic Nanosheets for Enhanced Molecular Recognition
Тип публикации: Journal Article
Дата публикации: 2018-02-28
scimago Q1
wos Q1
БС1
SJR: 5.554
CiteScore: 22.5
Impact factor: 15.6
ISSN: 00027863, 15205126
PubMed ID:
29489364
General Chemistry
Catalysis
Biochemistry
Colloid and Surface Chemistry
Краткое описание
Despite the rapid development of molecular rotors over the past decade, it still remains a huge challenge to understand their confined behavior in ultrathin two-dimensional (2D) nanomaterials for molecular recognition. Here, we report an all-carbon, 2D π-conjugated aromatic polymer, named NUS-25, containing flexible tetraphenylethylene (TPE) units as aggregation-induced emission (AIE) molecular rotors. NUS-25 bulk powder can be easily exfoliated into micrometer-sized lamellar freestanding nanosheets with a thickness of 2-5 nm. The dynamic behavior of the TPE rotors is partially restricted through noncovalent interactions in the ultrathin 2D nanosheets, which is proved by comparative experimental studies including AIE characteristics, size-selective molecular recognition, and theoretical calculations of rotary energy barrier. Because of the partially restricted TPE rotors, NUS-25 nanosheets are highly fluorescent. This property allows NUS-25 nanosheets to be used as a chemical sensor for the specific detection of acenaphthylene among a series of polycyclic aromatic hydrocarbons (PAHs) via fluorescent quenching mechanism. Further investigations show that NUS-25 nanosheets have much higher sensitivity and selectivity than their stacked bulk powder and other similar polymers containing dynamic TPE rotors. The highly efficient molecular recognition can be attributed to the photoinduced electron transfer (PET) from NUS-25 nanosheets to acenaphthylene, which is investigated by time-resolved photoluminescence measurements (TRPL), excitation and emission spectra, and density functional theory (DFT) calculations. Our findings demonstrate that confinement of AIE molecular rotors in 2D nanomaterials can enhance the molecular recognition. We anticipate that the material design strategy demonstrated in this study will inspire the development of other ultrathin 2D nanomaterials equipped with smart molecular machines for various applications.
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Dong J. et al. Confinement of Aggregation-Induced Emission Molecular Rotors in Ultrathin Two-Dimensional Porous Organic Nanosheets for Enhanced Molecular Recognition // Journal of the American Chemical Society. 2018. Vol. 140. No. 11. pp. 4035-4046.
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Dong J., Li X., Zhang K., Yuan Y. D., Wang Y., Zhai L., Liu G., Yuan D., Jiang J., Zhao D. Confinement of Aggregation-Induced Emission Molecular Rotors in Ultrathin Two-Dimensional Porous Organic Nanosheets for Enhanced Molecular Recognition // Journal of the American Chemical Society. 2018. Vol. 140. No. 11. pp. 4035-4046.
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TY - JOUR
DO - 10.1021/jacs.7b13069
UR - https://doi.org/10.1021/jacs.7b13069
TI - Confinement of Aggregation-Induced Emission Molecular Rotors in Ultrathin Two-Dimensional Porous Organic Nanosheets for Enhanced Molecular Recognition
T2 - Journal of the American Chemical Society
AU - Dong, Jinqiao
AU - Li, Xu
AU - Zhang, Kang
AU - Yuan, Yi Di
AU - Wang, Yuxiang
AU - Zhai, Linzhi
AU - Liu, Guoliang
AU - Yuan, Daqiang
AU - Jiang, Jian-Wen
AU - Zhao, Dan
PY - 2018
DA - 2018/02/28
PB - American Chemical Society (ACS)
SP - 4035-4046
IS - 11
VL - 140
PMID - 29489364
SN - 0002-7863
SN - 1520-5126
ER -
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@article{2018_Dong,
author = {Jinqiao Dong and Xu Li and Kang Zhang and Yi Di Yuan and Yuxiang Wang and Linzhi Zhai and Guoliang Liu and Daqiang Yuan and Jian-Wen Jiang and Dan Zhao},
title = {Confinement of Aggregation-Induced Emission Molecular Rotors in Ultrathin Two-Dimensional Porous Organic Nanosheets for Enhanced Molecular Recognition},
journal = {Journal of the American Chemical Society},
year = {2018},
volume = {140},
publisher = {American Chemical Society (ACS)},
month = {feb},
url = {https://doi.org/10.1021/jacs.7b13069},
number = {11},
pages = {4035--4046},
doi = {10.1021/jacs.7b13069}
}
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MLA
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Dong, Jinqiao, et al. “Confinement of Aggregation-Induced Emission Molecular Rotors in Ultrathin Two-Dimensional Porous Organic Nanosheets for Enhanced Molecular Recognition.” Journal of the American Chemical Society, vol. 140, no. 11, Feb. 2018, pp. 4035-4046. https://doi.org/10.1021/jacs.7b13069.