2020
DOI: 10.1016/j.susmat.2020.e00227
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Impact of biomass inorganic impurities on hard carbon properties and performance in Na-ion batteries

Abstract: Biomass waste recently emerged as efficient precursors for hard carbon anode preparation for Na-ion batteries. Despite their very complex microstructure (organic/inorganic) there is a lack of knowledge about their impact on carbon formation. In this paper, the influence of inorganic impurities of three raw local biomass wastes (asparagus, grape and potato) on the hard carbon properties and on their electrochemical performance is investigated, by performing a washing step either before or after the thermal trea… Show more

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Cited by 38 publications
(73 citation statements)
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“…The latter behavior has been cited elsewhere as EDL capacitor behavior, ,, which can be explained by the increased porosity yielding in a faster diffusion and the higher conductivity of the carbon. The electrochemical impedance spectroscopy (EIS) has been used to determine the resistance and, subsequently, to calculate the conductivity of the materials (Table and Figure f). An increase trend of the conductivity with the pyrolysis temperature can be observed.…”
Section: Results and Discussionmentioning
confidence: 99%
“…The latter behavior has been cited elsewhere as EDL capacitor behavior, ,, which can be explained by the increased porosity yielding in a faster diffusion and the higher conductivity of the carbon. The electrochemical impedance spectroscopy (EIS) has been used to determine the resistance and, subsequently, to calculate the conductivity of the materials (Table and Figure f). An increase trend of the conductivity with the pyrolysis temperature can be observed.…”
Section: Results and Discussionmentioning
confidence: 99%
“…As indicated by the arrow in Figure 2 (a), the diffraction peak of the (002) crystal plane shifted slightly to a higher angle, which signifies that the increase in temperature resulted in decreased spacing between the graphite layers, which has been observed by other hard carbon studies. [24][25][26] This finding was confirmed by calculating d 002 with the Bragg formula. HC-900 and HC-1100 showed graphene interlayer distances of 4.07 and 3.95 Å, respectively, both greater than the minimum interlayer space of 3.7 Å necessary for Na + insertion in carbon-based materials.…”
Section: Resultsmentioning
confidence: 56%
“…evaluated the effect of natural impurities in biomass-derived hard carbon as anode materials. 24 The maximum capacity achieved was 214 mAh/g at a rate of 37.…”
Section: Resultsmentioning
confidence: 95%
“…Moreover, they are inexpensive and easy to synthesize from many carbonaceous precursors, mainly oxygen-rich molecules and polymers [36] such as, for example, sucrose [5,38,39], glucose [8,26,40], cellulose [6,33,41,42], lignin [2,43], phenolic resins [44][45][46][47][48] or pre-oxidized pitch [34,45,49]. Among all the precursors of hard carbons, those derived from biomass are of great interest lately, such as lignocellulosic biomass and fruit wastes [36,[50][51][52][53][54][55][56][57]. About 10 to 15 billion tons of biomass waste are formed worldwide each year.…”
Section: Introductionmentioning
confidence: 99%