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It is challenging to determine the structures of water-soluble metal nanoclusters due to the difficulty of their crystallization in aqueous media. As a consequence, the structures of many water-soluble nanoclusters are usually inferred from indirect models, which complicates the understanding of their structure–property relationships. We have developed a facile method to synthesize water-soluble gold nanoclusters with well-defined structures from esterified precursors. C 19 H 18 N 3 Au 25 (3-MeOOCC 6 H 4 C 2 ) 18 ( Au 25 -COOMe ) has been synthesized using 3-methoxycarbonyl phenylacetylide as the protecting ligand, and its structure has been determined with single-crystal X-ray diffraction. These oil-soluble clusters can be converted to water-soluble Au 25 -COONa in more than 90% yield via mild alkaline hydrolysis. Owing to the preservation of the Au 25 metal core and superatomic electronic structure, the highly efficient photothermal performance of Au 25 -COOMe can be extended to water-soluble Au 25 -COONa . We present a potentially generalizable strategy that provides a viable route to reduce reliance on indirect structural models in studies of water-soluble gold nanoclusters.
Cong et al. (Mon,) studied this question.
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