A Molecular Machine Directs the Synthesis of a Rotaxane

R Robert Kluifhooft (Department of Chemistry) T Tommy Wachsmuth (Department of Chemistry Humboldt Universität zu Berlin Berlin Germany) B Bob Barthel (Institute of Chemistry and Biochemistry Freie Universität Berlin Berlin Germany) M Mira Müller (Humboldt Universität zu Berlin, Institut für Chemie Brook Taylor Str. 2 12489 Berlin Germany) A Ann‐Kathrin Rückert (Department of Chemistry – Ångström Laboratory Uppsala University Box 523 Uppsala 751 20 Sweden) M Michael Kathan (Department of Chemistry)

Abstract

Abstract Preorganization by assembly or templating strategies is frequently used in the synthesis of rotaxanes. While these approaches have led to complex interlocked molecules, they are often limited by strict compositional requirements of templates and starting materials. Here, we use a molecular machine to direct the synthesis of a rotaxane by active shaping of starting materials through mechanical winding. Light induced rotation of a molecular motor actively winds a molecular strand around an axle, forming discrete, thermodynamically disfavored crossings between these two parts. Covalent capture preserves the kinetically stable entanglements, transforming the strand into a macrocycle that is subsequently released and mechanically trapped on the axle, yielding a rotaxane. Our machine‐directed strategy pioneers a new way of synthesizing rotaxanes by active mechanical shaping of molecular building blocks, enabling access to interlocked architectures beyond the reach of traditional assembly and templating approaches.

Article Details

Volume / Issue Vol. 65, Issue 1
Published January 02, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (6)

R

Robert Kluifhooft

Department of Chemistry

T

Tommy Wachsmuth

Department of Chemistry Humboldt Universität zu Berlin Berlin Germany

B

Bob Barthel

Institute of Chemistry and Biochemistry Freie Universität Berlin Berlin Germany

M

Mira Müller

Humboldt Universität zu Berlin, Institut für Chemie Brook Taylor Str. 2 12489 Berlin Germany

A

Ann‐Kathrin Rückert

Department of Chemistry – Ångström Laboratory Uppsala University Box 523 Uppsala 751 20 Sweden

M

Michael Kathan

Department of Chemistry