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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

Photoisomerization studies of 1: (a) chemical illustration of E-Z

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

UV-vis spectra of 2-4 in THF solvent.

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

Design and synthesis of bifunctional conjugated microporous polymers containing tetraphenylethene and bisulfone units for energy storage and fluorescent sensing of p-nitrophenol - ScienceDirect

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

Tetraphenylethylene-Based AIE-Active Probes for Sensing Applications

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

Construction of anisotropic nanostructures by self-assembly of aggregation- induced emission driven from tris-branched [2]rotaxane based molecular zipper - ScienceDirect

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

Distinct Nanostructures and Organogel Driven by Reversible Molecular Switching of a Tetraphenylethene-Involved Calix[4]arene-Based Amphiphilic [2 ]Rotaxane

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

A) The PL spectrum of 2 before and after grinding, inset: the images