专题:Photochemistry and Electron Transfer Studies

This cluster of papers focuses on the mechanisms, dynamics, and applications of excited-state proton transfer, intramolecular charge transfer, solvation dynamics, and hydrogen bonding. It also explores the use of these phenomena in luminescent solar concentrators and organic optoelectronic materials.
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Correction: Benchmarking DFT-based excited-state methods for intermolecular charge-transfer excitations

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Balancing charge transport and C–N bond strength in stability-oriented host design for blue TADF-OLEDs

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Best practices for nonadiabatic molecular dynamics simulations [Article v1.0]

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Influence of solvent polarity on excited-state proton transfer reaction for 2,5-diethyl-bis(benzoxazolyl)-2,6-dihydroxynaphthalene fluorophore: A theoretical study

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Engineering the uncontrollable: Steering noisy spin-correlated radical-pairs with coherent and in coherent control

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A unified quantum rate theory of electron transfer: conceptual advances in quantum electrochemistry

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Ligand Control of Ultrafast Hot-Carrier Cooling in CdSe Quantum Dots by a Coherent Nonadiabatic Mechanism

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Electronic structure and excited-state analysis of covalently bridged diphenylhexatriene dimers: a route to design intramolecular singlet fission

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A Dataset of Plausible Proton Transfer Steps for Arrow-Pushing Mechanisms

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Thermally activated delayed fluorescence exciplex sensitizers with fast reverse intersystem crossing for improving efficiency stability of organic light‐emitting diodes based on multi‐resonance emitters

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