2020
DOI: 10.1016/j.jcis.2020.03.092
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Alternative lithium-ion battery using biomass-derived carbons as environmentally sustainable anode

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Cited by 79 publications
(59 citation statements)
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“…The cycling measurements showed that the discharge capacity of the RHPC/SnO 2 anode at the current density of 100 mA g À1 , at the 50 th cycle, was 550 mA h g À1 , which demonstrated that in contrast to pure SnO 2 anodes, the cycling performance of the RHPC/SnO 2 anode was remarkably enhanced by the introduction of the RHPC matrix. It also demonstrates that biomass-sourced carbonaceous materials like RHPC [253][254][255] have promising applications in LIBs due to their low cost and porous structure. 233 Tian et al fabricated non-smooth carbon-coated SnO 2 quasi-nanocubes.…”
Section: Sno 2 With Amorphous Carbonmentioning
confidence: 94%
“…The cycling measurements showed that the discharge capacity of the RHPC/SnO 2 anode at the current density of 100 mA g À1 , at the 50 th cycle, was 550 mA h g À1 , which demonstrated that in contrast to pure SnO 2 anodes, the cycling performance of the RHPC/SnO 2 anode was remarkably enhanced by the introduction of the RHPC matrix. It also demonstrates that biomass-sourced carbonaceous materials like RHPC [253][254][255] have promising applications in LIBs due to their low cost and porous structure. 233 Tian et al fabricated non-smooth carbon-coated SnO 2 quasi-nanocubes.…”
Section: Sno 2 With Amorphous Carbonmentioning
confidence: 94%
“…It is observed that the biomass carbon electrodes with higher SSA are inclined to exhibit higher Coulombic efficiencies. For instance, Selvamani et al [62] found an initial coulombic efficiency of 90% with a CE with an SSA of 1980 m 2 g −1 and Hernández-Rentero et al [63] found an efficiency higher than 99% for a CE with SSA of 1662 m 2 g −1 while Lotfabad et al [64] found a coulombic efficiency of 55% for a CE with an SSA of 130 m 2 g −1 (see Table 2). However, Zhang et al [61] fabricated a CE from rice straw and, among the reports shown in Table 2, it exhibited the highest SSA but not the best electrochemical performances.…”
Section: Effect Of the Physical Characteristics Of Biomass Carbon Elementioning
confidence: 99%
“…The KOH-treated AC obtained the smaller SSA (186 m 2 g −1 ) than the ZnCl 2 -prepared carbon (192 m 2 g −1 ). However, the KOH AC presented a higher presence of functional groups on its surface, and this would probably influence the electrochemical performance, since, for instance, nitrogen, oxygen, and phosphorous functionalities can enhance the electrochemical effects by improving the wettability of porous carbon in contact with electrolytes [55,[59][60][61][62][63][64][65].…”
Section: Preparation Of Acs Through the Chemical Activation Processmentioning
confidence: 99%
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