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Tailoring atomic diffusion for in situ fabrication of different heterostructures

Engineering and Technology

Tailoring atomic diffusion for in situ fabrication of different heterostructures

H. Zhang, T. Xu, et al.

This groundbreaking research reveals how electrically driven in situ solid-solid diffusion reactions can be harnessed to fabricate unique heteronanostructures in the Ag-Te system. Authors Hui Zhang, Tao Xu, Kaihao Yu, Wen Wang, Longbing He, and Litao Sun explore the fascinating interplay between atomic diffusion paths, unveiling insights into core-shell structures and segmented heterostructures—all influenced by Joule heating.... show more
Abstract
Atomic diffusion has been recognized as a particularly powerful tool in the synthesis of heterostructures. However, controlled atomic diffusion is very difficult to achieve in the fabrication of individual nanostructures. Here, an electrically driven in situ solid-solid diffusion reaction inside a TEM is reported for the controlled fabrication of two different heteronanostructures in the Ag-Te system. Remarkably, the morphology and structure of the as-formed heterostructures are strongly dependent on the path of atomic diffusion. Our experiments revealed that the surface diffusion of Te atoms to Ag nanowires leads to a core-shell structure, while the bulk diffusion of Ag atoms give rise to a Ag₂Te-Te segmented heterostructure. Heat released by Joule heating caused the surface diffusion process to be replaced by bulk diffusion and thereby determined the structure of the final product. Our experimental results provide an insight into solid-state diffusion reactions under an electric field and also propose a new process for the fabrication of complex nanostructures.
Publisher
Nature Communications
Published On
Aug 10, 2021
Authors
Hui Zhang, Tao Xu, Kaihao Yu, Wen Wang, Longbing He, Litao Sun
Tags
heteronanostructures
Ag-Te system
solid-solid diffusion
atomic diffusion
Joule heating
core-shell structure
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