Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based Molecular Aggregates

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Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Luminescence in Crystalline Organic Materials: From Molecules to Molecular Solids - Gierschner - 2021 - Advanced Optical Materials - Wiley Online Library
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Ultrafast exciton delocalization and localization dynamics of a perylene bisimide quadruple π-stack: a nonadiabatic dynamics simulation - Physical Chemistry Chemical Physics (RSC Publishing) DOI:10.1039/D2CP00018K
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Exciton Dynamics and Self-Trapping of Carbocyanine J-Aggregates in Polymer Films
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Exciton Dynamics and Self-Trapping of Carbocyanine J-Aggregates in Polymer Films
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Spectroscopic Demonstration of Exciton Dynamics and Excimer Formation in a Sterically Controlled Perylene Bisimide Dimer Aggregate.
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Ultrafast exciton delocalization and localization dynamics of a perylene bisimide quadruple π-stack: a nonadiabatic dynamics simulation - Physical Chemistry Chemical Physics (RSC Publishing) DOI:10.1039/D2CP00018K
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Doubly Encapsulated Perylene Diimides: Effect of Molecular Encapsulation on Photophysical Properties - ScienceDirect
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
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Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
C, Free Full-Text
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based Molecular Aggregates
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Doubly Encapsulated Perylene Diimides: Effect of Molecular Encapsulation on Photophysical Properties - ScienceDirect
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Exciton Trapping in π-Conjugated Materials: A Quantum-Chemistry-Based Protocol Applied to Perylene Bisimide Dye Aggregates
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Doubly Encapsulated Perylene Diimides: Effect of Molecular Encapsulation on Photophysical Properties - ScienceDirect
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Exciton Trapping in π-Conjugated Materials: A Quantum-Chemistry-Based Protocol Applied to Perylene Bisimide Dye Aggregates
Ultrafast Exciton Self-Trapping upon Geometry Deformation in Perylene-Based  Molecular Aggregates
Wenlan Liu – Chairman Of The Board – Chinese-German Chemical Association
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