-
1
-
-
84941561193
-
State of the art and open questions on cathode preparation based on carbon coated lithium iron phosphate
-
Gören, A., Costa, C.M., Silva, M.M., Lanceros-Méndez, S., State of the art and open questions on cathode preparation based on carbon coated lithium iron phosphate. Compos Part B 83 (2015), 333–345.
-
(2015)
Compos Part B
, vol.83
, pp. 333-345
-
-
Gören, A.1
Costa, C.M.2
Silva, M.M.3
Lanceros-Méndez, S.4
-
2
-
-
38949102073
-
Building better batteries
-
Armand, M., Tarascon, J.M., Building better batteries. Nature 451:7179 (2008), 652–657.
-
(2008)
Nature
, vol.451
, Issue.7179
, pp. 652-657
-
-
Armand, M.1
Tarascon, J.M.2
-
3
-
-
84919627105
-
Ordered multiphase polymer nanocomposites for high-performance solid-state supercapacitors
-
Li, L., Wang, S., Hui, D., Qiu, J., Ordered multiphase polymer nanocomposites for high-performance solid-state supercapacitors. Compos Part B 71 (2015), 40–44.
-
(2015)
Compos Part B
, vol.71
, pp. 40-44
-
-
Li, L.1
Wang, S.2
Hui, D.3
Qiu, J.4
-
4
-
-
84959422439
-
Low cost flexible 3-D aligned and cross-linked efficient ZnFe 2 O 4 nano-flakes electrode on stainless steel mesh for asymmetric supercapacitors
-
Vadiyar, M.M., Bhise, S.C., Kolekar, S.S., Chang, J.-Y., Ghule, K.S., Ghule, A.V., Low cost flexible 3-D aligned and cross-linked efficient ZnFe 2 O 4 nano-flakes electrode on stainless steel mesh for asymmetric supercapacitors. J Mater Chem A 4:9 (2016), 3504–3512.
-
(2016)
J Mater Chem A
, vol.4
, Issue.9
, pp. 3504-3512
-
-
Vadiyar, M.M.1
Bhise, S.C.2
Kolekar, S.S.3
Chang, J.-Y.4
Ghule, K.S.5
Ghule, A.V.6
-
6
-
-
84924074537
-
4/carbon microspheres with highly enhanced lithium battery performance by in-situ carbonization of new lamellar manganese alkoxide (Mn-DEG)
-
4/carbon microspheres with highly enhanced lithium battery performance by in-situ carbonization of new lamellar manganese alkoxide (Mn-DEG). Nano Energy 12 (2015), 833–844.
-
(2015)
Nano Energy
, vol.12
, pp. 833-844
-
-
Huang, S.-Z.1
Cai, Y.2
Jin, J.3
Liu, J.4
Li, Y.5
Yu, Y.6
-
7
-
-
84893449444
-
2 surfaces and vacancy formation for high electrochemical and catalytic performance
-
2 surfaces and vacancy formation for high electrochemical and catalytic performance. J Am Chem Soc 136:4 (2014), 1418–1426.
-
(2014)
J Am Chem Soc
, vol.136
, Issue.4
, pp. 1418-1426
-
-
Tompsett, D.A.1
Parker, S.C.2
Islam, M.S.3
-
9
-
-
77951183616
-
Lithium diffusion in graphitic carbon
-
Persson, K., Sethuraman, V.A., Hardwick, L.J., Hinuma, Y., Meng, Y.S., van der Ven, A., et al. Lithium diffusion in graphitic carbon. J Phys Chem Lett 1:8 (2010), 1176–1180.
-
(2010)
J Phys Chem Lett
, vol.1
, Issue.8
, pp. 1176-1180
-
-
Persson, K.1
Sethuraman, V.A.2
Hardwick, L.J.3
Hinuma, Y.4
Meng, Y.S.5
van der Ven, A.6
-
10
-
-
0032688968
-
Effect of surface structure on the irreversible capacity of various graphitic carbon electrodes
-
Chung, G.C., Jun, S.H., Lee, K.Y., Kim, M.H., Effect of surface structure on the irreversible capacity of various graphitic carbon electrodes. J Electrochem Soc 146:5 (1999), 1664–1671.
-
(1999)
J Electrochem Soc
, vol.146
, Issue.5
, pp. 1664-1671
-
-
Chung, G.C.1
Jun, S.H.2
Lee, K.Y.3
Kim, M.H.4
-
11
-
-
0033322165
-
Surface chemistry and lithium storage capability of the graphite-lithium electrode
-
Yazami, R., Surface chemistry and lithium storage capability of the graphite-lithium electrode. Electrochim Acta 45:1–2 (1999), 87–97.
-
(1999)
Electrochim Acta
, vol.45
, Issue.1-2
, pp. 87-97
-
-
Yazami, R.1
-
12
-
-
84905057051
-
Modeling mechanical stress and exfoliation damage in carbon fiber electrodes subjected to cyclic intercalation/deintercalation of lithium ions
-
Pupurs, A., Varna, J., Modeling mechanical stress and exfoliation damage in carbon fiber electrodes subjected to cyclic intercalation/deintercalation of lithium ions. Compos Part B 65 (2014), 69–79.
-
(2014)
Compos Part B
, vol.65
, pp. 69-79
-
-
Pupurs, A.1
Varna, J.2
-
13
-
-
84936937195
-
Synthesis of different CuO nanostructures by a new catalytic template method as anode materials for lithium-ion batteries
-
Ma, X.-H., Zeng, S.-S., Zou, B.-K., Liang, X., Liao, J.-Y., Chen, C.-H., Synthesis of different CuO nanostructures by a new catalytic template method as anode materials for lithium-ion batteries. RSC Adv 5:71 (2015), 57300–57308.
-
(2015)
RSC Adv
, vol.5
, Issue.71
, pp. 57300-57308
-
-
Ma, X.-H.1
Zeng, S.-S.2
Zou, B.-K.3
Liang, X.4
Liao, J.-Y.5
Chen, C.-H.6
-
14
-
-
38749085606
-
4 nanowire arrays for lithium ion batteries with high capacity and rate capability
-
4 nanowire arrays for lithium ion batteries with high capacity and rate capability. Nano Lett 8:1 (2008), 265–270.
-
(2008)
Nano Lett
, vol.8
, Issue.1
, pp. 265-270
-
-
Li, Y.1
Tan, B.2
Wu, Y.3
-
15
-
-
84891597106
-
Size effect of nickel oxide for lithium ion battery anode
-
Cheng, M.-Y., Ye, Y.-S., Chiu, T.-M., Pan, C.-J., Hwang, B.-J., Size effect of nickel oxide for lithium ion battery anode. J Power Sources 253 (2014), 27–34.
-
(2014)
J Power Sources
, vol.253
, pp. 27-34
-
-
Cheng, M.-Y.1
Ye, Y.-S.2
Chiu, T.-M.3
Pan, C.-J.4
Hwang, B.-J.5
-
16
-
-
47049094486
-
(3) macroporous nanomaterials fabricated by calcinating regenerate cellulose composite fibers
-
(3) macroporous nanomaterials fabricated by calcinating regenerate cellulose composite fibers. Chem Mat 20:11 (2008), 3623–3628.
-
(2008)
Chem Mat
, vol.20
, Issue.11
, pp. 3623-3628
-
-
Liu, S.1
Zhang, L.2
Zhou, J.3
Xiang, J.4
Sun, J.5
Guan, J.6
-
19
-
-
84929870708
-
2 nanoparticles for excellent lithium-ion storage
-
2 nanoparticles for excellent lithium-ion storage. Adv Energy Mater, 5(5), 2015.
-
(2015)
Adv Energy Mater
, vol.5
, Issue.5
-
-
Etacheri, V.1
Seisenbaeva, G.A.2
Caruthers, J.3
Daniel, G.4
Nedelec, J.M.5
Kessler, V.G.6
-
20
-
-
84945917977
-
4, MnO) hierarchical microspheres as lithium-ion battery anodes
-
4, MnO) hierarchical microspheres as lithium-ion battery anodes. Electrochim Acta 184 (2015), 250–256.
-
(2015)
Electrochim Acta
, vol.184
, pp. 250-256
-
-
Gu, X.1
Yue, J.2
Li, L.3
Xue, H.4
Yang, J.5
Zhao, X.6
-
21
-
-
80055024248
-
Silicon nanowire reinforced by single-walled carbon nanotube and its applications to anti-pulverization electrode in lithium ion battery
-
Zang, J.-L., Zhao, Y.-P., Silicon nanowire reinforced by single-walled carbon nanotube and its applications to anti-pulverization electrode in lithium ion battery. Compos Part B 43:1 (2012), 76–82.
-
(2012)
Compos Part B
, vol.43
, Issue.1
, pp. 76-82
-
-
Zang, J.-L.1
Zhao, Y.-P.2
-
23
-
-
84887829972
-
2 for energy conversion and storage
-
2 for energy conversion and storage. RSC Adv 3:47 (2013), 24758–24775.
-
(2013)
RSC Adv
, vol.3
, Issue.47
, pp. 24758-24775
-
-
Weng, Z.1
Guo, H.2
Liu, X.3
Wu, S.4
Yeung, K.W.K.5
Chu, P.K.6
-
24
-
-
84883334544
-
A facile route to synthesize transition metal oxide/reduced graphene oxide composites and their lithium storage performance
-
Zhao, C., Chou, S.-L., Wang, Y., Zhou, C., Liu, H.-K., Dou, S.-X., A facile route to synthesize transition metal oxide/reduced graphene oxide composites and their lithium storage performance. RSC Adv 3:37 (2013), 16597–16603.
-
(2013)
RSC Adv
, vol.3
, Issue.37
, pp. 16597-16603
-
-
Zhao, C.1
Chou, S.-L.2
Wang, Y.3
Zhou, C.4
Liu, H.-K.5
Dou, S.-X.6
-
25
-
-
84922452738
-
Synthesis and electrochemical investigation of hollow hierarchical metal oxide microspheres for high performance lithium-ion batteries
-
Wang, B., Wang, G., Wang, H., Synthesis and electrochemical investigation of hollow hierarchical metal oxide microspheres for high performance lithium-ion batteries. Electrochim Acta 156 (2015), 1–10.
-
(2015)
Electrochim Acta
, vol.156
, pp. 1-10
-
-
Wang, B.1
Wang, G.2
Wang, H.3
-
26
-
-
84904743229
-
2 (anatase): electrochemistry, Raman spectroscopy, and isotope labeling
-
2 (anatase): electrochemistry, Raman spectroscopy, and isotope labeling. J Solid State Electrochem 18:8 (2014), 2297–2306.
-
(2014)
J Solid State Electrochem
, vol.18
, Issue.8
, pp. 2297-2306
-
-
Kavan, L.1
-
27
-
-
78650729810
-
2 nanocrystals for lithium-ion batteries
-
2 nanocrystals for lithium-ion batteries. J Electrochem Soc 158:2 (2011), A59–A62.
-
(2011)
J Electrochem Soc
, vol.158
, Issue.2
, pp. A59-A62
-
-
Kang, J.W.1
Kim, D.H.2
Mathew, V.3
Lim, J.S.4
Gim, J.H.5
Kimz, J.6
-
29
-
-
84930008262
-
2 film electrode with enhanced electrochemical performance
-
2 film electrode with enhanced electrochemical performance. Electrochim Acta 173 (2015), 242–251.
-
(2015)
Electrochim Acta
, vol.173
, pp. 242-251
-
-
Lin, H.1
Li, X.2
He, X.3
Zhao, J.4
-
33
-
-
79952391284
-
2(B) nanowires with ultrahigh surface area and their fast charging and discharging properties in Li-ion batteries
-
2(B) nanowires with ultrahigh surface area and their fast charging and discharging properties in Li-ion batteries. Chem Commun 47:12 (2011), 3439–3441.
-
(2011)
Chem Commun
, vol.47
, Issue.12
, pp. 3439-3441
-
-
Li, J.1
Wan, W.2
Zhou, H.3
Li, J.4
Xu, D.5
-
34
-
-
61849129268
-
Alternative Li-Ion battery electrode based on self-organized titania nanotubes
-
Ortiz, G.F., Hanzu, I., Djenizian, T., Lavela, P., Tirado, J.L., Knauth, P., Alternative Li-Ion battery electrode based on self-organized titania nanotubes. Chem Mater 21:1 (2009), 63–67.
-
(2009)
Chem Mater
, vol.21
, Issue.1
, pp. 63-67
-
-
Ortiz, G.F.1
Hanzu, I.2
Djenizian, T.3
Lavela, P.4
Tirado, J.L.5
Knauth, P.6
-
35
-
-
80055042372
-
2 hollow nanofibers as an anode material for high power lithium ion batteries
-
2 hollow nanofibers as an anode material for high power lithium ion batteries. Energy Environ Sci 4:11 (2011), 4532–4536.
-
(2011)
Energy Environ Sci
, vol.4
, Issue.11
, pp. 4532-4536
-
-
Han, H.1
Song, T.2
Bae, J.-Y.3
Nazar, L.F.4
Kim, H.5
Paik, U.6
-
36
-
-
84880070368
-
Improving the electrochemical performance of anatase titanium dioxide by vanadium doping as an anode material for lithium-ion batteries
-
Ly Tuan, A., Rai, A.K., Trang Vu, T., Gim, J., Kim, S., Shin, E.-C., et al. Improving the electrochemical performance of anatase titanium dioxide by vanadium doping as an anode material for lithium-ion batteries. J Power Sources 243 (2013), 891–898.
-
(2013)
J Power Sources
, vol.243
, pp. 891-898
-
-
Ly Tuan, A.1
Rai, A.K.2
Trang Vu, T.3
Gim, J.4
Kim, S.5
Shin, E.-C.6
-
37
-
-
78650508725
-
2 with mesoporosity and its application for lithium insertion
-
2 with mesoporosity and its application for lithium insertion. Chem Mater 22:24 (2010), 6624–6631.
-
(2010)
Chem Mater
, vol.22
, Issue.24
, pp. 6624-6631
-
-
Wang, Y.1
Smarsly, B.M.2
Djerdj, I.3
-
38
-
-
82955188776
-
One-dimensional hierarchical structures composed of novel metal oxide nanosheets on a carbon nanotube backbone and their lithium-storage properties
-
Ding, S., Chen, J.S., Lou, X.W., One-dimensional hierarchical structures composed of novel metal oxide nanosheets on a carbon nanotube backbone and their lithium-storage properties. Adv Funct Mater 21:21 (2011), 4120–4125.
-
(2011)
Adv Funct Mater
, vol.21
, Issue.21
, pp. 4120-4125
-
-
Ding, S.1
Chen, J.S.2
Lou, X.W.3
-
39
-
-
84907510213
-
Improved lithium ion behavior properties of tio2@graphitic-like carbon Core@Shell Nanostructure
-
Kim, M.-C., Lee, Y.-W., Kim, S.-J., Hwang, B.-M., Park, H.-C., Hwang, E.-T., et al. Improved lithium ion behavior properties of tio2@graphitic-like carbon Core@Shell Nanostructure. Electrochim Acta 147 (2014), 241–249.
-
(2014)
Electrochim Acta
, vol.147
, pp. 241-249
-
-
Kim, M.-C.1
Lee, Y.-W.2
Kim, S.-J.3
Hwang, B.-M.4
Park, H.-C.5
Hwang, E.-T.6
-
42
-
-
84863915891
-
2-graphene composite nanofibers as a highly durable insertion anode for lithium ion batteries
-
2-graphene composite nanofibers as a highly durable insertion anode for lithium ion batteries. J Phys Chem C, 116(28), 2012, 14780.
-
(2012)
J Phys Chem C
, vol.116
, Issue.28
, pp. 14780
-
-
Zhang, X.1
Aravindan, V.2
Madhavi, S.3
-
43
-
-
79151478307
-
2 nanofibers prepared via electrospinning for use in lithium-ion batteries
-
2 nanofibers prepared via electrospinning for use in lithium-ion batteries. ACS Appl Mater Interface 2:7 (2010), 2046–2052.
-
(2010)
ACS Appl Mater Interface
, vol.2
, Issue.7
, pp. 2046-2052
-
-
Nam, S.H.1
Shim, H.-S.2
Kim, Y.-S.3
Dar, M.A.4
Kim, J.G.5
Kim, W.B.6
-
45
-
-
84871084450
-
2 nanocomposite microspheres with hierarchically porous structures for high-performance lithium-ion batteries
-
2 nanocomposite microspheres with hierarchically porous structures for high-performance lithium-ion batteries. RSC Adv, 2(24), 2012, 9173.
-
(2012)
RSC Adv
, vol.2
, Issue.24
, pp. 9173
-
-
Shen, J.1
Wang, L.2
-
46
-
-
84920808870
-
2 nanotube arrays in lithium-ion batteries
-
2 nanotube arrays in lithium-ion batteries. J Nanosci Nanotechnol 15:7 (2015), 5013–5019.
-
(2015)
J Nanosci Nanotechnol
, vol.15
, Issue.7
, pp. 5013-5019
-
-
Wei, J.1
Liu, J.-X.2
Wu, Z.-Y.3
Zhan, Z.-L.4
Shi, J.5
Xu, K.6
-
47
-
-
84940828811
-
Bio-green synthesis of Ni-doped tin oxide nanoparticles and its influence on gas sensing properties
-
Gattu, K.P., Ghule, K., Kashale, A.A., Ghule, A.V., Bio-green synthesis of Ni-doped tin oxide nanoparticles and its influence on gas sensing properties. RSC Adv, 5(89), 2015, 72849.
-
(2015)
RSC Adv
, vol.5
, Issue.89
, pp. 72849
-
-
Gattu, K.P.1
Ghule, K.2
Kashale, A.A.3
Ghule, A.V.4
-
48
-
-
84924873650
-
Room temperature ammonia gas sensing properties of biosynthesized tin oxide nanoparticle thin films
-
Gattu, K.P., Ghule, K., Kashale, A.A., Ghule, A.V., Room temperature ammonia gas sensing properties of biosynthesized tin oxide nanoparticle thin films. Curr Nanosci 11:2 (2015), 253–260.
-
(2015)
Curr Nanosci
, vol.11
, Issue.2
, pp. 253-260
-
-
Gattu, K.P.1
Ghule, K.2
Kashale, A.A.3
Ghule, A.V.4
-
49
-
-
0035129093
-
Pyrolytic characteristics of heterotrophic Chlorella protothecoides for renewable bio-fuel production
-
Peng, W.M., Wu, Q.Y., Tu, P.G., Pyrolytic characteristics of heterotrophic Chlorella protothecoides for renewable bio-fuel production. J Appl Phycol 13:1 (2001), 5–12.
-
(2001)
J Appl Phycol
, vol.13
, Issue.1
, pp. 5-12
-
-
Peng, W.M.1
Wu, Q.Y.2
Tu, P.G.3
-
50
-
-
84899145795
-
Microalga scenedesmus sp.: a potential low-cost green machine for silver nanoparticle synthesis
-
Jena, J., Pradhan, N., Nayak, R.R., Dash, B.P., Sukla, L.B., Panda, P.K., et al. Microalga scenedesmus sp.: a potential low-cost green machine for silver nanoparticle synthesis. J Microbiol Biotechnol 24:4 (2014), 522–533.
-
(2014)
J Microbiol Biotechnol
, vol.24
, Issue.4
, pp. 522-533
-
-
Jena, J.1
Pradhan, N.2
Nayak, R.R.3
Dash, B.P.4
Sukla, L.B.5
Panda, P.K.6
-
52
-
-
84908229276
-
2-reduced graphene oxide nanocomposites with small particle size for lithium ion batteries
-
2-reduced graphene oxide nanocomposites with small particle size for lithium ion batteries. Int J Hydrogen Energy 39:28 (2014), 16116–16122.
-
(2014)
Int J Hydrogen Energy
, vol.39
, Issue.28
, pp. 16116-16122
-
-
Dong, L.1
Li, M.2
Dong, L.3
Zhao, M.4
Feng, J.5
Han, Y.6
-
54
-
-
55849133000
-
Preparation of pectin-ZnO nanocomposite
-
Shi, L., Gunasekaran, S., Preparation of pectin-ZnO nanocomposite. Nanoscale Res Lett 3:12 (2008), 491–495.
-
(2008)
Nanoscale Res Lett
, vol.3
, Issue.12
, pp. 491-495
-
-
Shi, L.1
Gunasekaran, S.2
-
55
-
-
84929180068
-
Citric acid enhanced copper removal by a novel multi-amines decorated resin
-
Ling, C., Liu, F., Pei, Z., Zhang, X., Wei, M., Zhang, Y., et al. Citric acid enhanced copper removal by a novel multi-amines decorated resin. Sci Rep, 5, 2015.
-
(2015)
Sci Rep
, vol.5
-
-
Ling, C.1
Liu, F.2
Pei, Z.3
Zhang, X.4
Wei, M.5
Zhang, Y.6
-
57
-
-
79951519448
-
2 photocatalysts: a combined solid-state nmr and theoretical calculation study
-
2 photocatalysts: a combined solid-state nmr and theoretical calculation study. J Phys Chem C 115:6 (2011), 2709–2719.
-
(2011)
J Phys Chem C
, vol.115
, Issue.6
, pp. 2709-2719
-
-
Feng, N.1
Zheng, A.2
Wang, Q.3
Ren, P.4
Gao, X.5
Liu, S.-B.6
-
59
-
-
0036907635
-
Lithium insertion into titanium phosphates, silicates, and sulfates
-
Patoux, S., Masquelier, C., Lithium insertion into titanium phosphates, silicates, and sulfates. Chem Mater 14:12 (2002), 5057–5068.
-
(2002)
Chem Mater
, vol.14
, Issue.12
, pp. 5057-5068
-
-
Patoux, S.1
Masquelier, C.2
-
61
-
-
66349130556
-
Nanostructures and lithium electrochemical reactivity of lithium titanites and titanium oxides: a review
-
Yang, Z., Choi, D., Kerisit, S., Rosso, K.M., Wang, D., Zhang, J., et al. Nanostructures and lithium electrochemical reactivity of lithium titanites and titanium oxides: a review. J Power Sources 192:2 (2009), 588–598.
-
(2009)
J Power Sources
, vol.192
, Issue.2
, pp. 588-598
-
-
Yang, Z.1
Choi, D.2
Kerisit, S.3
Rosso, K.M.4
Wang, D.5
Zhang, J.6
-
63
-
-
84955254965
-
Size effects in lithium ion batteries
-
Yao, H.-R., Yin, Y.-X., Guo, Y.-G., Size effects in lithium ion batteries. Chin Phys B, 25(1), 2016.
-
(2016)
Chin Phys B
, vol.25
, Issue.1
-
-
Yao, H.-R.1
Yin, Y.-X.2
Guo, Y.-G.3
-
64
-
-
80052990399
-
2 at high rates: emphasis on interfacial storage phenomena
-
2 at high rates: emphasis on interfacial storage phenomena. Adv Funct Mater 21:18 (2011), 3464–3472.
-
(2011)
Adv Funct Mater
, vol.21
, Issue.18
, pp. 3464-3472
-
-
Shin, J.-Y.1
Samuelis, D.2
Maier, J.3
-
67
-
-
84899090582
-
2(B) nanosheets by a hydrothermal process and their application as an anode for lithium-ion batteries
-
2(B) nanosheets by a hydrothermal process and their application as an anode for lithium-ion batteries. J Electron Mater 43:4 (2014), 1048–1054.
-
(2014)
J Electron Mater
, vol.43
, Issue.4
, pp. 1048-1054
-
-
Wu, H.-Y.1
Hon, M.-H.2
Kuan, C.-Y.3
Leu, I.-C.4
|