University of Jyväskylä

Molecules do the triple twist

Möbius-molekyyliAn international research team led by Professor Rainer Herges of the University of Kiel (Germany) and Academy Professor Kari Rissanen of the University of Jyväskylä (Finland) has managed to make a triple-Möbius annulene, the most twisted fully conjugated molecule to date, as reported in Nature Chemistry (DOI:10.1038/nchem.1955, published online 25 May 2014).

An everyday analogue of a single twisted Möbius molecule is a Möbius strip. It can be made easily by twisting one end of a paper strip by 180 degrees and then joining the two ends. A triple twisted Möbius molecule is more difficult to visualize, but its graphical representation resembles the well-known recycling logo, this time with three twisted corners.

Photo 1: Graphical representation of the Möbius molecule.

Photo 2:  M.Sc. Filip Topic and Academy Professor Kari Rissanen.

However, it has turned out to be extremely difficult to twist molecules to a Möbius Prof. Herges and Prof. Rissanensurface that has only one side. Up to now, only the simplest Möbius molecules have been prepared. Now Dr. Gaston Schaller and Professor Rainer Herges from the University of Kiel and M.Sc. Filip Topić and Academy Professor Kari Rissanen from the University of Jyväskylä, together with Professor Yoshio Okamoto (Osaka, Japan) and Jun Shen (Harbin, China), have succeeded in preparing and characterizing a triple twisted annulene – a more complex Möbius molecule which has three twists but only one surface. Currently these chiral one-sided compounds are merely scientifically intriguing topological objects and far from practical application, but they exhibit a high potential in future applications in molecular electronics and optoelectronics.

Further information:

Academy Professor Kari Rissanen, University of Jyväskylä, tel. +358 50 5623 721, kari.t.rissanen@jyu.fi

Professor Rainer Herges, University of Kiel, tel. +49 431 880 2440, rherges@oc.uni-kiel.de

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