2014
DOI: 10.1016/j.proche.2014.11.018
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Electrochemistry of Klason Lignin

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Cited by 13 publications
(8 citation statements)
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“…11. The equivalent circuit model includes the bulk resistance R b , the charge transfer resistance R ct , the double layer capacitance C d , and the Warburg resistance W. 60 It could be clearly found that the entire impedance spectrum is composed of a depressed semicircle in the high frequency and a 45 -sloped straight line in the low frequency. The R ct and W are responsible for the semicircle region and the straight-line region, respectively.…”
Section: Electrochemical Performance Of the Fkb Materials In Li/cf X Batteriesmentioning
confidence: 99%
“…11. The equivalent circuit model includes the bulk resistance R b , the charge transfer resistance R ct , the double layer capacitance C d , and the Warburg resistance W. 60 It could be clearly found that the entire impedance spectrum is composed of a depressed semicircle in the high frequency and a 45 -sloped straight line in the low frequency. The R ct and W are responsible for the semicircle region and the straight-line region, respectively.…”
Section: Electrochemical Performance Of the Fkb Materials In Li/cf X Batteriesmentioning
confidence: 99%
“…Various studies have explored the fabrication,e lectrochemical properties, and performance of electrode materials derived from lignin. [162][163][164][165][166][167] For more detail in this area, the readeri sr eferred to the thorough reviewsb yN irmale et al [168] and more recently by Wu et al [169] 7.9. Considerationsa nd challenges for the direct electrocatalytic degradationofl ignins…”
Section: Lignin For Fabrication Of Electrodem Aterials For Lithium Anmentioning
confidence: 99%
“…The aromatic rich nature of lignin has also found applications for making graphitic materials that can be used as electrodes in both primary lithium batteries and secondary Li‐ion batteries. Various studies have explored the fabrication, electrochemical properties, and performance of electrode materials derived from lignin . For more detail in this area, the reader is referred to the thorough reviews by Nirmale et al .…”
Section: Electrocatalytic Treatment Of Ligninmentioning
confidence: 99%
“…48 The incurred results conclude HL as a validated cathode material due to its low cost as compared to other available primary lithium batteries, whereas the Klason lignin (KL) cathode shows a specic capacity of 380 mA h g À1 for sun ower-derived lignin (SFDL) and 600 mA h g À1 for buckwheat-derived lignin (BWDL). 23,92 The SEM study depicts that each lignin type has a different surface morphology, which seems to ease the Li + ion diffusion within lignin particles, whereas EDS gave an estimate of oxygen content, i.e. SF-KL, BW-KL and HL contains 40, 35 and 23 wt% of oxygen, respectively.…”
Section: Primary Lithium Batteriesmentioning
confidence: 99%