Abstract:The Li1.9K0.1ZnTi3O8@ZrO2 (1 wt%, 3 wt%, and 5 wt%) anode material was successfully synthesized, where the ZrO2 coating layer was prepared by citric acid and zirconium acetate, and the potassium source was KCl.
“…30a). 131 The content of ZrO 2 on the physical and electrochemical performance of LZTO was investigated in detail. When the ZrO 2 content was 3 wt%, the Li 1.9 K 0.1 ZnTi 3 O 8 @ZrO 2 sample displayed the most uniform particle size, reduced polarization, and charge transfer resistance, and then the best good electrochemical performance.…”
Section: Modification Strategies Of Li2znti3o8mentioning
Spinel Li2ZnTi3O8 as a zero volumetric change material, is a promising anode of electrochemical energy storage devices. Compared with the commercial graphite, Li2ZnTi3O8 provides high operating potentials of 0.5 and...
“…30a). 131 The content of ZrO 2 on the physical and electrochemical performance of LZTO was investigated in detail. When the ZrO 2 content was 3 wt%, the Li 1.9 K 0.1 ZnTi 3 O 8 @ZrO 2 sample displayed the most uniform particle size, reduced polarization, and charge transfer resistance, and then the best good electrochemical performance.…”
Section: Modification Strategies Of Li2znti3o8mentioning
Spinel Li2ZnTi3O8 as a zero volumetric change material, is a promising anode of electrochemical energy storage devices. Compared with the commercial graphite, Li2ZnTi3O8 provides high operating potentials of 0.5 and...
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