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Diversiform Nanostructures Constructed from Tetraphenylethene and Pyrene-Based Acid/Base Controllable Molecular Switching Amphiphilic [2]Rotaxanes with Tunable Aggregation-Induced Static Excimers

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Diversiform Nanostructures Constructed from Tetraphenylethene and  Pyrene-Based Acid/Base Controllable Molecular Switching Amphiphilic  [2]Rotaxanes with Tunable Aggregation-Induced Static Excimers

UV-vis spectra of 2–4 and pyrene in THF solutions (10 μM)

Diversiform Nanostructures Constructed from Tetraphenylethene and  Pyrene-Based Acid/Base Controllable Molecular Switching Amphiphilic  [2]Rotaxanes with Tunable Aggregation-Induced Static Excimers

Diversiform and Transformable Glyco-Nanostructures Constructed from Amphiphilic Supramolecular Metallocarbohydrates through Hierarchical Self-Assembly: The Balance between Metallacycles and Saccharides

Diversiform Nanostructures Constructed from Tetraphenylethene and  Pyrene-Based Acid/Base Controllable Molecular Switching Amphiphilic  [2]Rotaxanes with Tunable Aggregation-Induced Static Excimers

Diversiform Nanostructures Constructed from Tetraphenylethene and Pyrene-Based Acid/Base Controllable Molecular Switching Amphiphilic [2]Rotaxanes with Tunable Aggregation-Induced Static Excimers

Diversiform Nanostructures Constructed from Tetraphenylethene and  Pyrene-Based Acid/Base Controllable Molecular Switching Amphiphilic  [2]Rotaxanes with Tunable Aggregation-Induced Static Excimers

Acid–base controllable nanostructures and the fluorescence detection of H 2 PO 4 − by the molecular shuttling of tetraphenylethene-based [2]rotaxanes - Journal of Materials Chemistry C (RSC Publishing) DOI:10.1039/D0TC05358A

Diversiform Nanostructures Constructed from Tetraphenylethene and  Pyrene-Based Acid/Base Controllable Molecular Switching Amphiphilic  [2]Rotaxanes with Tunable Aggregation-Induced Static Excimers

Controlled Sol–Gel and Diversiform Nanostructure Transitions by Photoresponsive Molecular Switching of Tetraphenylethene- and Azobenzene-Functionalized Organogelators

Diversiform Nanostructures Constructed from Tetraphenylethene and  Pyrene-Based Acid/Base Controllable Molecular Switching Amphiphilic  [2]Rotaxanes with Tunable Aggregation-Induced Static Excimers

Molecular modeling studies of the encapsulation of C60 with the Z form

Diversiform Nanostructures Constructed from Tetraphenylethene and  Pyrene-Based Acid/Base Controllable Molecular Switching Amphiphilic  [2]Rotaxanes with Tunable Aggregation-Induced Static Excimers

Diversiform Nanostructures Constructed from Tetraphenylethene and Pyrene-Based Acid/Base Controllable Molecular Switching Amphiphilic [2]Rotaxanes with Tunable Aggregation-Induced Static Excimers

Diversiform Nanostructures Constructed from Tetraphenylethene and  Pyrene-Based Acid/Base Controllable Molecular Switching Amphiphilic  [2]Rotaxanes with Tunable Aggregation-Induced Static Excimers

Encapsulation and release of C60 by the Z form of the molecule. (a)

Diversiform Nanostructures Constructed from Tetraphenylethene and  Pyrene-Based Acid/Base Controllable Molecular Switching Amphiphilic  [2]Rotaxanes with Tunable Aggregation-Induced Static Excimers

FE-SEM images of aggregates formed from (A) TPE-Pi, (B) TPE-Az, (C)