2024 Nano Letters Original

Atomic Layer Engineering of Pd Nanosheets for an Enhanced Hydrogen Evolution Reaction

更新日:

Sumiya Ando, Eisuke Yamamoto, Makoto Kobayashi, Minoru Osada*
"Atomic Layer Engineering of Pd Nanosheets for an Enhanced Hydrogen Evolution Reaction", Nano Lett., 2024, 24, 36, 11239–11245

https://doi.org/10.1021/acs.nanolett.4c02741

Abstract

Thickness control of two-dimensional (2D) metal nanosheets (metallenes) has scientific significance for energy and catalyst applications, yet is unexplored owing to the lack of an efficient approach for the tailored synthesis of metallenes with controlled atomic layers. Here we report a 2D template-directed synthesis of ultrathin Pd nanosheets with well-controlled thicknesses. Molecularly thin single-crystalline Pd nanosheets with well-defined hexagonal morphologies were synthesized via a one-pot method with 2,4,6-trichlorophenyl formate. Such Pd nanosheets were used as hard templates for the tailored synthesis of the Pd nanosheets with controlled thicknesses (9, 11, 13, and 15 atomic layers). Hard X-ray photoelectron spectroscopy and density functional theory calculations revealed unique electronic states in thickness-controlled Pd nanosheets; these states included reduced surface charges to bulk, increased work functions, and decreased d-band centers. Thus, atomic layer engineering of Pd nanosheets enabled the fine-tuning of the surface electronic states to improve the hydrogen evolution reaction.

Copyright© 名古屋大学 未来材料・システム研究所 長田研究室 , 2024 All Rights Reserved.