Single-molecule level control of host-guest interactions in metallocycle-C<sub>60</sub> complexes.

Tang, Jian-Hong; Li, Yueqi; Wu, Qingqing; Wang, Zixiao; Hou, Songjun; Tang, Kun; Sun, Yue; Wang, Hui et al. · Nat Commun · 2019

basic_science · Level V

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Abstract

Host-guest interactions are of central importance in many biological and chemical processes. However, the investigation of the formation and decomplexation of host-guest systems at the single-molecule level has been a challenging task. Here we show that the single-molecule conductance of organoplatinum(II) metallocycle hosts can be enhanced by an order of magnitude by the incorporation of a C<sub>60</sub> guest molecule. Mechanically stretching the metallocycle-C<sub>60</sub> junction with a scanning tunneling microscopy break junction technique causes the release of the C<sub>60</sub> guest from the metallocycle, and consequently the conductance switches back to the free-host level. Metallocycle hosts with different shapes and cavity sizes show different degrees of flexibility to accommodate the C<sub>60</sub> guest in response to mechanical stretching. DFT calculations provide further insights into the electronic structures and charge transport properties of the molecular junctions based on metallocycles and the metallocycle-C<sub>60</sub> complexes.

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