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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 117, 2019 - Issue 6
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Research Articles

Impact of electronically excited state hydrogen bonding on luminescent covalent organic framework: a TD-DFT investigation

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Pages 823-830 | Received 28 Jul 2018, Accepted 28 Oct 2018, Published online: 16 Nov 2018

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Raja Ghosh & Francesco Paesani. (2023) Connecting the dots for fundamental understanding of structure–photophysics–property relationships of COFs, MOFs, and perovskites using a Multiparticle Holstein Formalism. Chemical Science 14:5, pages 1040-1064.
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Yuhang Qian, Jiani Li, Mingyang Ji, Jundan Li, Dongge Ma, Anan Liu, Yubao Zhao & Chun Yang. (2022) Fluorescent Covalent Organic Frameworks: A Promising Material Platform for Explosive Sensing. Frontiers in Chemistry 10.
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Zhigang Shuai. (2020) Thermal Vibration Correlation Function Formalism for Molecular Excited State Decay Rates. Chinese Journal of Chemistry 38:11, pages 1223-1232.
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Ping Han, Xuedan Song & Ce Hao. (2020) Excited-state hydrogen bonding: Detecting ammonia using an HHTP-DPB covalent organic framework. Chemical Physics 536, pages 110822.
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Xi Zhao & Songqiu Yang. (2020) Photoinduced excited-state hydrogen bonding strengthening of hemiindigo for the drastically fluorescence quenching in protic solvent and water sensing in aprotic solvent. Journal of Luminescence 220, pages 116993.
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Hassan Alipour. (2022) Physical Insight into the Mechanism of Photoinduced Charge-Transfer and its Effects on Gas Mixture Adsorption in the Metal-Organic Framework: A Study Combining Quantum Mechanics Calculations and Molecular Mechanics Simulations. SSRN Electronic Journal.
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