Construction of amorphous/crystalline heterointerfaces for enhanced electrochemical processes
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Abstract
Amorphous nanomaterials have emerged as potential candidates for energy storage and conversion owing to their amazing physicochemical properties. Recent studies have proved that the manipulation of amorphous nanomaterials can further enhance electrochemical performance. To date, various feasible strategies have been proposed, of which amorphous/crystalline (a-c) heterointerface engineering is deemed an effective approach to break through the inherent activity limitations of electrode materials. The following review discusses recent research progress on a-c heterointerfaces for enhanced electrochemical processes. The general strategies for synthesizing a-c heterojunctions are first summarized. Subsequently, we…
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229
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6Topics & keywords
Topics
Keywords
- Nanomaterials
- Amorphous solid
- Nanotechnology
- Materials science
- Electrochemistry
- Supercapacitor
- Heterojunction
- Electrochemical energy storage
UN Sustainable Development Goals
- Affordable and clean energy
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