Layer-by-Layer Interdigitated CuS/Au2S Heteronanoplates by Selectively Blocking the Pathway of Cation Exchange Reaction

  • Jo, Suin
  • Kim, Taekyung
  • Lee, Chi Ho
  • Lee, Eunsoo
  • Jin, Haneul
  • 외 4명
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초록

Cation exchange reactions (CERs), recognized as a promising postsynthetic modification strategy, have garnered significant interest for generating thermodynamically unfavorable structural features, such as heterointerfaces. The formation of these heterointerfaces, which exhibit physicochemical properties distinct from those of their individual components, relies on precise control over the diffusion pathways of externally introduced cations as they migrate from the surface into the crystal interior. However, achieving regiospecific modulation of cation diffusion to rationally design heterointerfaces remains a formidable challenge. Herein, we synthesized layer-by-layer interdigitated {CuS/Au2S}@IrS2 heteronanoplates (L-Au2S HNPs), in which Au2S and CuS are alternately stacked at the atomic scale, using Cu1.81S@IrS2 nanoplates (CSIS NPs) as a starting template. This distinct structural arrangement was realized through a two-step CER with Au cations and a phase transformation process from Cu2-x S to CuS. Experimental results indicate that S-S bonds within phase-converted CuS crystals act as diffusion barriers during subsequent CER, restricting the migration of Au cations into specific CuS layers. Furthermore, theoretical calculations suggest that the expansion of the anion sublattice within channels containing diffused Au cations induces compressive strain in adjacent CuS layers, thereby impeding further Au incorporation. Expanding this synthetic strategy to construct atomic-layer-level stacked heteronanostructures across a broader range of materials could unlock new opportunities for developing advanced materials with unprecedented optical and catalytic properties.

키워드

CopperCesium AlloysCesium IodideCopperCrystal Atomic StructureIonization Of GasesLayered SemiconductorsNegative IonsTemperatureBlockingsCation Exchange ReactionsDiffusion PathwaysHetero-interfacesIndividual ComponentsLayer By LayerPhysicochemical PropertyPostsynthetic ModificationPrecise ControlStructural FeatureDiffusionCopperCopper SulfideGold DerivativeGold MonosulfideNanoplateUnclassified DrugCationCupric IonNeuropeptide SArticleCation ExchangeCrystal StructureEnergy Dispersive X Ray SpectroscopyScanning Transmission Electron MicroscopyX Ray DiffractionArticleCatalysisControlled StudyDiffusionPhysical ChemistryINITIO MOLECULAR-DYNAMICSTOTAL-ENERGY CALCULATIONSDIALKYL DISULFIDESCRYSTAL-STRUCTURENANOCRYSTALSPHASETRANSFORMATIONNANOMATERIALSSUBLATTICETRANSITION
제목
Layer-by-Layer Interdigitated CuS/Au2S Heteronanoplates by Selectively Blocking the Pathway of Cation Exchange Reaction
저자
Jo, SuinKim, TaekyungLee, Chi HoLee, EunsooJin, HaneulLee, Sang UckLee, KwangyeolBaik, HionsuckPark, Jongsik
DOI
10.1021/jacs.5c03707
발행일
2025-04
유형
Article
저널명
Journal of the American Chemical Society
147
16
페이지
13993 ~ 14003