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Updated: Feb 17, 2026

Preparation and 3D Tracking of Catalytic Swimming Devices
Published on: July 1, 2016
Four-Component Catalytic Machinery: Reversible Three-State Control of Organocatalysis by Walking Back and Forth on a
Nikita Mittal1, Merve S Özer1, Michael Schmittel1
1Center of Micro and Nanochemistry and Engineering, Organische Chemie I , Universität Siegen , Adolf-Reichwein-Strasse 2 , D-57068 Siegen , Germany.
Abstract:
A three-component supramolecular walker system is presented where a two-footed ligand (biped) walks back and forth on a tetrahedral 3D track upon the addition and removal of copper(I) ions, respectively. The addition of N-methylpyrrolidine as a catalyst to the walker system generates a four-component catalytic machinery, which acts as a three-state switchable catalytic ensemble in the presence of substrates for a conjugate addition. The copper(I)-ion-initiated walking process of the biped ligand on the track regulates the catalytic activity in three steps: ON versus intON (intermediate ON) versus OFF. To establish the operation of the four-component catalytic machinery in a mixture of all constituents, forward and backward cycles were performed in situ illustrating that both the walking process and catalytic action are fully reversible and reproducible.
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