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Abstract
While sodium metal anodes (SMAs) feature many performance advantages in sodium ion batteries (SIBs), severe safety concerns remain for using bulk sodium electrodes. Herein, a 3D Ag@C natrophilic substrate prepared by a facile thermal evaporation deposition method, which can be employed as a much safer “anode-free” SMA, is reported. Initially, there is no bulk sodium on the Ag@C substrate in the assembled SIBs. Upon charging, sodium will be uniformly deposited onto the Ag@C substrate and afterwards functions as a real SMA, thus inheriting the intrinsic merits of SMA and enhancing safety simultaneously. While cycling, the as-synthesized substrate demonstrates superior sodium plating/stripping cycling stability at 1, 2 and 3 mA cm−2 with a capacity of 2 mAh cm−2. Theoretical simulations reveal that Na ions prefer to bind with Ag and form a Na-Ag network, thus clearly revealing uniform sodium deposition on the Ag@C substrate. More importantly, a full battery based on Ag@C and Prussian white with impressive Coulomb efficiency (CE), high rate capability (from 0.1 C to 5 C) and long-term cycling life is illustrated for the first time, thus making Ag@C feasible for the establishment of “anode-free” SIBs with reduced cost, high gravimetric/volumetric energy density and enhanced safety.
| Original language | English |
|---|---|
| Article number | 2001050 |
| Journal | Small Methods |
| Volume | 5 |
| Issue number | 4 |
| Online published | 18 Jan 2021 |
| DOIs | |
| Publication status | Published - 15 Apr 2021 |
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 7 Affordable and Clean Energy
Research Keywords
- Ag
- C natrophilic substrates
- AIMD and finite element simulations
- anode-free SIBs
- Na–Ag networks
- sodium metal anodes
Fingerprint
Dive into the research topics of '3D Ag@C Cloth for Stable Anode Free Sodium Metal Batteries'. Together they form a unique fingerprint.Projects
- 1 Finished
-
ITF: Stable Organic Nanoparticles With High Photothermal Energy Conversion Efficiencies For Biomedical And Energy Applications
LEE, C. S. (Principal Investigator / Project Coordinator)
1/12/19 → 30/11/21
Project: Research
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