Control of single-ligand chemistry on thiolated Au<sub>25</sub> nanoclusters.

Cao, Yitao; Fung, Victor; Yao, Qiaofeng; Chen, Tiankai; Zang, Shuangquan; Jiang, De-En; Xie, Jianping · Nat Commun · 2020

basic_science · Level V

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Abstract

Diverse methods have been developed to tailor the number of metal atoms in metal nanoclusters, but control of surface ligand number at a given cluster size is rare. Here we demonstrate that reversible addition and elimination of a single surface thiolate ligand (-SR) on gold nanoclusters can be realized, opening the door to precision ligand engineering on atomically precise nanoclusters. We find that oxidative etching of [Au<sub>25</sub>SR<sub>18</sub>]<sup>-</sup> nanoclusters adds an excess thiolate ligand and generates a new species, [Au<sub>25</sub>SR<sub>19</sub>]<sup>0</sup>. The addition reaction can be reversed by CO reduction of [Au<sub>25</sub>SR<sub>19</sub>]<sup>0</sup>, leading back to [Au<sub>25</sub>SR<sub>18</sub>]<sup>-</sup> and eliminating precisely one surface ligand. Intriguingly, we show that the ligand shell of Au<sub>25</sub> nanoclusters becomes more fragile and rigid after ligand addition. This reversible addition/elimination reaction of a single surface ligand on gold nanoclusters shows potential to precisely control the number of surface ligands and to explore new ligand space at each nuclearity.