A recognition mechanism study: Luminescent metal-organic framework for the detection of nitro-explosives.
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Abstract |
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This article presents a recognition mechanism for nitro-explosives by the luminescent metal-organic framework 1 (LMOF-1) with the aid of density functional theory (DFT) and time-dependent density functional theory (TDDFT). The behavior of hydrogen bonding between the LMOF-1 and nitro-explosives in the S1 state is closely associated with the fluorescence properties of the LMOF-1. In our research, we calculated the geometric configuration, 1H NMR and IR spectra of the Complex 2 formed by LMOF-1 and nitrobenzene in the S0 and S1 states. The results showed that the hydrogen bond in the S1 state was increased, which was unfavorable for the luminescence of LMOF-1. Furthermore, the fluorescence rate of LMOF-1 decreased after encapsulating nitrobenzene into it. These calculated results collectively suggest that LMOF-1 is a potential fluorescence sensor for the detection of nitro-explosives. This research was aiming to provide a better understanding of the recognition mechanism by LMOFs for nitro-explosives. |
Year of Publication |
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2018
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Journal |
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Journal of molecular graphics & modelling
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Volume |
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80
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Number of Pages |
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132-137
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Date Published |
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2018
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ISSN Number |
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1093-3263
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URL |
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http://linkinghub.elsevier.com/retrieve/pii/S1093-3263(17)30604-6
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DOI |
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10.1016/j.jmgm.2017.12.024
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Short Title |
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J Mol Graph Model
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