Non-oxidized bare copper nanoparticles with surface excess electrons in air

Author:

Chung KyungwhaORCID,Bang Joonho,Thacharon Athira,Song Hyun Yong,Kang Se HwangORCID,Jang Woo-SungORCID,Dhull Neha,Thapa Dinesh,Ajmal C. Muhammed,Song Bumsub,Lee Sung-GyuORCID,Wang Zhen,Jetybayeva Albina,Hong SeungbumORCID,Lee Kyu HyoungORCID,Cho Eun Jin,Baik SeunghyunORCID,Oh Sang HoORCID,Kim Young-MinORCID,Lee Young HeeORCID,Kim Seong-GonORCID,Kim Sung WngORCID

Abstract

AbstractCopper (Cu) nanoparticles (NPs) have received extensive interest owing to their advantageous properties compared with their bulk counterparts. Although the natural oxidation of Cu NPs can be alleviated by passivating the surfaces with additional moieties, obtaining non-oxidized bare Cu NPs in air remains challenging. Here we report that bare Cu NPs with surface excess electrons retain their non-oxidized state over several months in ambient air. Cu NPs grown on an electride support with excellent electron transfer ability are encapsulated by the surface-accumulated excess electrons, exhibiting an ultralow work function of ~3.2 eV. Atomic-scale structural and chemical analyses confirm the absence of Cu oxide moiety at the outermost surface of air-exposed bare Cu NPs. Theoretical energetics clarify that the surface-accumulated excess electrons suppress the oxygen adsorption and consequently prohibit the infiltration of oxygen into the Cu lattice, provoking the endothermic reaction for oxidation process. Our results will further stimulate the practical use of metal NPs in versatile applications.

Funder

National Research Foundation of Korea

Institute for Basic Science

Ministry of Education of the Korean Government

Publisher

Springer Science and Business Media LLC

Subject

Electrical and Electronic Engineering,Condensed Matter Physics,General Materials Science,Biomedical Engineering,Atomic and Molecular Physics, and Optics,Bioengineering

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