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Morphology Derived Coconut Sheath for Sodium-Ion Battery

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Morphology Derived Coconut Sheath for Sodium-Ion Battery ( morphology-derived-coconut-sheath-sodium-ion-battery )

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Energies 2022, 15, 8086 Figure 8. N2 adsorption and desorption analysis of K-CS, Na-CS, Zn-CS. 12 of 20 Energies 2022, 15, x FOR PEER REVIEW 13 of 20 S.No 1. 2. 3. Sample K–CS Na–CS Zn–CS 3.757,and3.772nm,respectiv2ely.Thepreparedmesoporecarbonmaterialshavingasmaller Surface Area (m /g) Pore Diameter (nm) Pore volume (cc/g) Figure 9. Pore size distribution of K-CS, Na-CS, Zn-CS. Figure 9. Pore size distribution of K-CS, Na-CS, Zn-CS. The pore diameter of the carbon materials has shown a significant increase after the Table 2. Textural properties of CSHC. treatment of activating agents. The pore diameter of K–CS, Na–CS, and Zn–CS is 3.059 nm, specific area leads to high coulombic efficiency in battery applications. It can be assessed 153.3 3.059 0.004 that while the pore diameter elevates the surface area can be demoted, i.e., pore diameter 79.240 3.757 0.031 20.780 3.772 0.158 The pore diameter of the carbon materials has shown a significant increase after the treatment of activating agents. The pore diameter of K–CS, Na–CS, and Zn–CS is 3.059 nm, 3.757, and 3.772 nm, respectively. The prepared mesopore carbon materials having a

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