Interstitial oxygen dopants(O_(i))in sulfide nanocrystals are more conducive to charge carrier separation for improving the photocatalytic hydrogen evolution(PHE)performance than substituted oxygen dopants(O_(S)).Howe...Interstitial oxygen dopants(O_(i))in sulfide nanocrystals are more conducive to charge carrier separation for improving the photocatalytic hydrogen evolution(PHE)performance than substituted oxygen dopants(O_(S)).However,oxygen dopants exist dominantly in the form of OS,rather than O_(i),in oxygen-doped sulfides prepared via traditional methods.展开更多
基金financial support from the National Natural Science Foundation of China(No.21875150 and 22071165)the 111 Project(D20015).
文摘Interstitial oxygen dopants(O_(i))in sulfide nanocrystals are more conducive to charge carrier separation for improving the photocatalytic hydrogen evolution(PHE)performance than substituted oxygen dopants(O_(S)).However,oxygen dopants exist dominantly in the form of OS,rather than O_(i),in oxygen-doped sulfides prepared via traditional methods.