The Experts below are selected from a list of 11958 Experts worldwide ranked by ideXlab platform
Mouad Dahbi - One of the best experts on this subject based on the ideXlab platform.
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sodium Carboxymethyl Cellulose as a potential binder for hard carbon negative electrodes in sodium ion batteries
Electrochemistry Communications, 2014Co-Authors: Toru Ishikawa, Mouad Dahbi, Naoaki Yabuuchi, Kei Kubota, Takeshi Nakano, Mika Fukunishi, Sota ShibaharaAbstract:Abstract For a non-aqueous sodium-ion battery, a hard-carbon negative electrode with sodium Carboxymethyl Cellulose (CMC) binder demonstrates the superior reversibility and cycleability in NaPF6 propylene carbonate solution at room temperature to that with ordinary poly(vinylidene difluoride) (PVdF) binder. Furthermore, effects of monofluoroethylene carbonate (FEC) additive remarkably depend on the combination with binders, CMC and PVdF. Surface analyses reveal considerable differences in surface and passivation chemistry which depends on the binders and FEC additive used for the hard-carbon negative electrodes.
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Sodium Carboxymethyl Cellulose as a potential binder for hard-carbon negative electrodes in sodium-ion batteries
Elsevier, 2014Co-Authors: Mouad Dahbi, Toru Ishikawa, Naoaki Yabuuchi, Kei Kubota, Takeshi Nakano, Mika Fukunishi, Sota Shibahara, Jin-young Son, Yi-tao Cui, Hiroshi OjiAbstract:For a non-aqueous sodium-ion battery, a hard-carbon negative electrode with sodium Carboxymethyl Cellulose (CMC) binder demonstrates the superior reversibility and cycleability in NaPF6 propylene carbonate solution at room temperature to that with ordinary poly(vinylidene difluoride) (PVdF) binder. Furthermore, effects of monofluoroethylene carbonate (FEC) additive remarkably depend on the combination with binders, CMC and PVdF. Surface analyses reveal considerable differences in surface and passivation chemistry which depends on the binders and FEC additive used for the hard-carbon negative electrodes. Keywords: Hard-carbon, Sodium-ion batteries, Binder, Electrolyt
David Bures - One of the best experts on this subject based on the ideXlab platform.
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the comparison of the effect of sodium caseinate calcium caseinate Carboxymethyl Cellulose and xanthan gum on rice buckwheat dough rheological characteristics and textural and sensory quality of bread
Lwt - Food Science and Technology, 2016Co-Authors: Iva Buresova, Lucie Masařikova, Luděk Hřivna, Soňa Kulhanova, David BuresAbstract:The effect of calcium and sodium caseinate supplements (2 g/100 g) on the behavior of rice-buckwheat dough and bread quality was compared to the effect of xanthan gum and Carboxymethyl Cellulose. The addition of caseinates significantly (P < 0.01) increased dough weakening, which became similar to dough with xanthan gum. During heating, the gelatinization rate became similar to dough with Carboxymethyl Cellulose. Moreover, peak complex viscosity was decreased by 0.4·105 Pa s. Additionally, hydrocolloid supplements impacted bread crumb characteristics. An open structure was found in crumb with added calcium caseinate, Carboxymethyl Cellulose as well as xanthan gum. The hardness of rice-buckwheat crumb without hydrocolloids (12.2 N) was decreased by calcium caseinate (4.3 N), xanthan gum (9.1 N) and Carboxymethyl Cellulose (9.3 N), however, no significant effect of sodium caseinate was recorded (11.5 N). The overall sensory acceptability of rice-buckwheat bread (7.1) was increased by sodium caseinate (7.5), calcium caseinate (7.7) and Carboxymethyl Cellulose (7.8). The acceptability of bread with xanthan gum (5.9) was negatively impacted by dry, coarse crust and extremely sticky crumb. It can be concluded caseinates may be alternative substances with satisfactory impact on the rheological characteristics of rice-buckwheat dough, as well as bread quality.
Sota Shibahara - One of the best experts on this subject based on the ideXlab platform.
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sodium Carboxymethyl Cellulose as a potential binder for hard carbon negative electrodes in sodium ion batteries
Electrochemistry Communications, 2014Co-Authors: Toru Ishikawa, Mouad Dahbi, Naoaki Yabuuchi, Kei Kubota, Takeshi Nakano, Mika Fukunishi, Sota ShibaharaAbstract:Abstract For a non-aqueous sodium-ion battery, a hard-carbon negative electrode with sodium Carboxymethyl Cellulose (CMC) binder demonstrates the superior reversibility and cycleability in NaPF6 propylene carbonate solution at room temperature to that with ordinary poly(vinylidene difluoride) (PVdF) binder. Furthermore, effects of monofluoroethylene carbonate (FEC) additive remarkably depend on the combination with binders, CMC and PVdF. Surface analyses reveal considerable differences in surface and passivation chemistry which depends on the binders and FEC additive used for the hard-carbon negative electrodes.
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Sodium Carboxymethyl Cellulose as a potential binder for hard-carbon negative electrodes in sodium-ion batteries
Elsevier, 2014Co-Authors: Mouad Dahbi, Toru Ishikawa, Naoaki Yabuuchi, Kei Kubota, Takeshi Nakano, Mika Fukunishi, Sota Shibahara, Jin-young Son, Yi-tao Cui, Hiroshi OjiAbstract:For a non-aqueous sodium-ion battery, a hard-carbon negative electrode with sodium Carboxymethyl Cellulose (CMC) binder demonstrates the superior reversibility and cycleability in NaPF6 propylene carbonate solution at room temperature to that with ordinary poly(vinylidene difluoride) (PVdF) binder. Furthermore, effects of monofluoroethylene carbonate (FEC) additive remarkably depend on the combination with binders, CMC and PVdF. Surface analyses reveal considerable differences in surface and passivation chemistry which depends on the binders and FEC additive used for the hard-carbon negative electrodes. Keywords: Hard-carbon, Sodium-ion batteries, Binder, Electrolyt
Naoaki Yabuuchi - One of the best experts on this subject based on the ideXlab platform.
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sodium Carboxymethyl Cellulose as a potential binder for hard carbon negative electrodes in sodium ion batteries
Electrochemistry Communications, 2014Co-Authors: Toru Ishikawa, Mouad Dahbi, Naoaki Yabuuchi, Kei Kubota, Takeshi Nakano, Mika Fukunishi, Sota ShibaharaAbstract:Abstract For a non-aqueous sodium-ion battery, a hard-carbon negative electrode with sodium Carboxymethyl Cellulose (CMC) binder demonstrates the superior reversibility and cycleability in NaPF6 propylene carbonate solution at room temperature to that with ordinary poly(vinylidene difluoride) (PVdF) binder. Furthermore, effects of monofluoroethylene carbonate (FEC) additive remarkably depend on the combination with binders, CMC and PVdF. Surface analyses reveal considerable differences in surface and passivation chemistry which depends on the binders and FEC additive used for the hard-carbon negative electrodes.
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Sodium Carboxymethyl Cellulose as a potential binder for hard-carbon negative electrodes in sodium-ion batteries
Elsevier, 2014Co-Authors: Mouad Dahbi, Toru Ishikawa, Naoaki Yabuuchi, Kei Kubota, Takeshi Nakano, Mika Fukunishi, Sota Shibahara, Jin-young Son, Yi-tao Cui, Hiroshi OjiAbstract:For a non-aqueous sodium-ion battery, a hard-carbon negative electrode with sodium Carboxymethyl Cellulose (CMC) binder demonstrates the superior reversibility and cycleability in NaPF6 propylene carbonate solution at room temperature to that with ordinary poly(vinylidene difluoride) (PVdF) binder. Furthermore, effects of monofluoroethylene carbonate (FEC) additive remarkably depend on the combination with binders, CMC and PVdF. Surface analyses reveal considerable differences in surface and passivation chemistry which depends on the binders and FEC additive used for the hard-carbon negative electrodes. Keywords: Hard-carbon, Sodium-ion batteries, Binder, Electrolyt
Kei Kubota - One of the best experts on this subject based on the ideXlab platform.
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sodium Carboxymethyl Cellulose as a potential binder for hard carbon negative electrodes in sodium ion batteries
Electrochemistry Communications, 2014Co-Authors: Toru Ishikawa, Mouad Dahbi, Naoaki Yabuuchi, Kei Kubota, Takeshi Nakano, Mika Fukunishi, Sota ShibaharaAbstract:Abstract For a non-aqueous sodium-ion battery, a hard-carbon negative electrode with sodium Carboxymethyl Cellulose (CMC) binder demonstrates the superior reversibility and cycleability in NaPF6 propylene carbonate solution at room temperature to that with ordinary poly(vinylidene difluoride) (PVdF) binder. Furthermore, effects of monofluoroethylene carbonate (FEC) additive remarkably depend on the combination with binders, CMC and PVdF. Surface analyses reveal considerable differences in surface and passivation chemistry which depends on the binders and FEC additive used for the hard-carbon negative electrodes.
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Sodium Carboxymethyl Cellulose as a potential binder for hard-carbon negative electrodes in sodium-ion batteries
Elsevier, 2014Co-Authors: Mouad Dahbi, Toru Ishikawa, Naoaki Yabuuchi, Kei Kubota, Takeshi Nakano, Mika Fukunishi, Sota Shibahara, Jin-young Son, Yi-tao Cui, Hiroshi OjiAbstract:For a non-aqueous sodium-ion battery, a hard-carbon negative electrode with sodium Carboxymethyl Cellulose (CMC) binder demonstrates the superior reversibility and cycleability in NaPF6 propylene carbonate solution at room temperature to that with ordinary poly(vinylidene difluoride) (PVdF) binder. Furthermore, effects of monofluoroethylene carbonate (FEC) additive remarkably depend on the combination with binders, CMC and PVdF. Surface analyses reveal considerable differences in surface and passivation chemistry which depends on the binders and FEC additive used for the hard-carbon negative electrodes. Keywords: Hard-carbon, Sodium-ion batteries, Binder, Electrolyt