2013
DOI: 10.1007/s10008-013-2136-x
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Hydrolysis lignin-based organic electrode material for primary lithium batteries

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Cited by 29 publications
(19 citation statements)
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“…The low concentration of the precursor reveals high purity of the sample. The binding energies of 288.9 and 286.6 eV are associated with C@O and CAO groups, respectively, while the peak at 285.0 eV represents an aliphatic carbon presence in material bulk due to the high-temperature defluorination of (AC 2 F 4 A) n [29]. Probably, the carbon has the function of matrix that includes nanocomposite consisting of TiO 2 and TiOF 2 particles [6,30].…”
Section: Structure Morphology and Compositionmentioning
confidence: 96%
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“…The low concentration of the precursor reveals high purity of the sample. The binding energies of 288.9 and 286.6 eV are associated with C@O and CAO groups, respectively, while the peak at 285.0 eV represents an aliphatic carbon presence in material bulk due to the high-temperature defluorination of (AC 2 F 4 A) n [29]. Probably, the carbon has the function of matrix that includes nanocomposite consisting of TiO 2 and TiOF 2 particles [6,30].…”
Section: Structure Morphology and Compositionmentioning
confidence: 96%
“…The impedance data were analyzed using the equivalent circuit (Fig. 11c), which is in a good agreement with the results previously reported in the literature [19,29]. R el is the ohmic resistance of the half-cell due to electrolyte and electrode leads.…”
Section: Structure Morphology and Compositionmentioning
confidence: 96%
“…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%
“…It was found that THL is a residue containing approximately 20%-30% of polysaccharides (mainly cellulose) embedded into hydrolysis lignin ("cellolignin"), which is more condensed than the native lignin (Chudakov 1972;Blažej and Košic 1993). In the literature, various applications of THL are described, such as pyrolysis and gasification (Domburg 1982;Carrott and Carrott 2007;Kulikov et al 2012), as a biofuel (Nowakowski et al 2010), aminated organic fertilizer (Chudakov 1972;Forostyan et al 1987), adsorbents (Podterob et al 2004;Carrott and Carrott 2007;Liang et al 2013), nitrolignin and chlorolignin (Chudakov 1972), new polymeric materials (Sazanov 2009;Zhou et al 2013), polymer cathode materials (Gnedenkov et al 2013), and additives for oil bituminous compositions (Schiling 2000). However, the aforementioned research trends were not applied in a large scale in industrial practice (Vishtal and Kraslawski 2011;Rabinovich 2014).…”
Section: Introductionmentioning
confidence: 99%