Per Calcium+D tab Ca carbonate 1,500 mg (equiv to Ca 600 mg), vit D 3 500 IU. This work provides a constructive avenue for designing high-performance ZIHCs electrode materials. Per 600 tab Ca carbonate 1,500 mg (equiv to Ca 600 mg). If there are any differences between this website labeling and product packaging labeling, this website labeling should be regarded as the most current. The assembled ZIHCs exhibit excellent rate performance (140 mA h g-1 at 0.2 A g-1 and 86.2 mA h g-1 at 6.4 A g-1), high energy density and power density (111.1 W h kg-.2 W kg-1, respectively). Caltrate 600 + D3 PLUSMinerals Calcium & Vitamin D3 Supplement This is the most current labeling information and may differ from labels on product packaging. Based on a clear understanding of the carbonization mechanism, assisted by DFT theoretical simulations, we find the optimal carbonization temperature of the DCP-derived porous carbon for ZIHCs. More importantly, the morphology evolution, heteroatom doping, and defect generation of the DCP during carbonization are clarified. In this study, we developed a simple self-template method for preparing N-doped porous carbon from D-calcium pantothenate (DCP). However, most of the reports focus on the preparation method and modification of porous carbon, and rarely explore the mechanisms of material synthesis/fabrication in the carbonization process. Due to the environmental friendliness and high safety of aqueous Zn-ion hybrid capacitors (ZIHCs), the exploration of high-performance porous carbon electrodes for ZIHCs has recently attracted significant attention.
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