-
2
-
-
0038237515
-
Electronically conductive phospho-olivines as lithium storage electrodes
-
Chung SY, Bloking JT, Chiang YM (2002) Electronically conductive phospho-olivines as lithium storage electrodes. Nat Mater 1:123–128
-
(2002)
Nat Mater
, vol.1
, pp. 123-128
-
-
Chung, S.Y.1
Bloking, J.T.2
Chiang, Y.M.3
-
8
-
-
33344458713
-
Porous olivine composites synthesized by sol-gel technique
-
Dominko R, Bele M, Gaberscek M, Remskar M, Hanzel D, Goupil JM, Pejovnik S, Jamnic J (2006) Porous olivine composites synthesized by sol-gel technique. J Power Sources 153:274–280
-
(2006)
J Power Sources
, vol.153
, pp. 274-280
-
-
Dominko, R.1
Bele, M.2
Gaberscek, M.3
Remskar, M.4
Hanzel, D.5
Goupil, J.M.6
Pejovnik, S.7
Jamnic, J.8
-
11
-
-
79955872374
-
Continuous supercritical hydrothermal synthesis: Lithium secondary ion battery applications
-
Hong S, Nugroho A, Kim S, Kim J, Chung K, Cho B, Kang J (2011) Continuous supercritical hydrothermal synthesis: lithium secondary ion battery applications. Res Chem In-termed 37:429–440
-
(2011)
Res Chem In-Termed
, vol.37
, pp. 429-440
-
-
Hong, S.1
Nugroho, A.2
Kim, S.3
Kim, J.4
Chung, K.5
Cho, B.6
Kang, J.7
-
12
-
-
4744363924
-
4 cathode materials prepared by a citric acid-based sol–gel route
-
4 cathode materials prepared by a citric acid-based sol–gel route. J Mater Chem 14:2690–2695
-
(2004)
J Mater Chem
, vol.14
, pp. 2690-2695
-
-
Hsu, K.F.1
Tsay, S.Y.2
Hwang, B.J.3
-
16
-
-
54949152255
-
Highly luminescent surface-passivated ZnS:Mn nanoparticles by a simple one-step synthesis
-
Jung DR, Son D, Kim J, Kim C, Park B (2008) Highly luminescent surface-passivated ZnS:Mn nanoparticles by a simple one-step synthesis. Appl Phys Lett 93:163118
-
(2008)
Appl Phys Lett
, vol.93
-
-
Jung, D.R.1
Son, D.2
Kim, J.3
Kim, C.4
Park, B.5
-
17
-
-
62249143548
-
Battery materials for ultrafast charging and discharging
-
Kang B, Ceder G (2009) Battery materials for ultrafast charging and discharging. Nature 458:190–193
-
(2009)
Nature
, vol.458
, pp. 190-193
-
-
Kang, B.1
Ceder, G.2
-
21
-
-
0033350936
-
Frumkin intercalation isotherm—a tool for the description of lithium insertion into host materials: A review
-
Levi MD, Aurbach D (1999) Frumkin intercalation isotherm—a tool for the description of lithium insertion into host materials: a review. Electrochim Acta 45:167–185
-
(1999)
Electrochim Acta
, vol.45
, pp. 167-185
-
-
Levi, M.D.1
Aurbach, D.2
-
22
-
-
56949091929
-
Electrochemically driven first-order phase transitions caused by elastic responses of ion-insertion electrodes under external kinetic control
-
Levi MD, Aurbach D, Maier J (2008) Electrochemically driven first-order phase transitions caused by elastic responses of ion-insertion electrodes under external kinetic control. J Electroanal Chem 624:251–261
-
(2008)
J Electroanal Chem
, vol.624
, pp. 251-261
-
-
Levi, M.D.1
Aurbach, D.2
Maier, J.3
-
23
-
-
53949089395
-
Direct synthesis of porous carbon via carbonizing precursors of aluminum phosphate containing citric acid
-
Liu G, Liu Y, Wang Z, Liao X, Wu S, Zhang W, Jia M (2008) Direct synthesis of porous carbon via carbonizing precursors of aluminum phosphate containing citric acid. Micro Meso Mater 116:439–444
-
(2008)
Micro Meso Mater
, vol.116
, pp. 439-444
-
-
Liu, G.1
Liu, Y.2
Wang, Z.3
Liao, X.4
Wu, S.5
Zhang, W.6
Jia, M.7
-
24
-
-
79952585681
-
4/C cathode materials with both high-rate capability and high tap density for lithium-ion batteries
-
4/C cathode materials with both high-rate capability and high tap density for lithium-ion batteries. J Mater Chem 21:4156–4160
-
(2011)
J Mater Chem
, vol.21
, pp. 4156-4160
-
-
Lou, X.1
Zhang, Y.2
-
27
-
-
33748415721
-
Citrate-derived carbon nanocoatings for poorly conducting cathode
-
Moskon J, Dominko R, Gaberscek M, Cerc-Korosec R, Jamnic J (2006) Citrate-derived carbon nanocoatings for poorly conducting cathode. J Electrochem Soc 153:A1805–A1811
-
(2006)
J Electrochem Soc
, vol.153
, pp. A1805-A1811
-
-
Moskon, J.1
Dominko, R.2
Gaberscek, M.3
Cerc-Korosec, R.4
Jamnic, J.5
-
29
-
-
0031124233
-
Phospho-olivines as positive-electrode materials for rechargeable lithium batteries
-
Padhi AK, Nanjundaswamy KS, Goodenough J (1997) Phospho-olivines as positive-electrode materials for rechargeable lithium batteries. J Electrochem Soc 144:1188–1194
-
(1997)
J Electrochem Soc
, vol.144
, pp. 1188-1194
-
-
Padhi, A.K.1
Nanjundaswamy, K.S.2
Goodenough, J.3
-
33
-
-
0035396858
-
Electroactivity of natural and synthetic triphylite
-
Ravet N, Chouinard Y, Magnan JF, Besner S, Gauthier M, Armand M (2001) Electroactivity of natural and synthetic triphylite. J Power Sources 97:503–507
-
(2001)
J Power Sources
, vol.97
, pp. 503-507
-
-
Ravet, N.1
Chouinard, Y.2
Magnan, J.F.3
Besner, S.4
Gauthier, M.5
Armand, M.6
-
35
-
-
33947173893
-
Synthesis and photoluminescence of Mn-doped zinc sulfide nanoparticles
-
Son D, Jung DR, Kim J, Moon T, Kim C, Park B (2007) Synthesis and photoluminescence of Mn-doped zinc sulfide nanoparticles. Appl Phys Lett 90:101910
-
(2007)
Appl Phys Lett
, vol.90
-
-
Son, D.1
Jung, D.R.2
Kim, J.3
Moon, T.4
Kim, C.5
Park, B.6
-
36
-
-
8644257642
-
Discharge model for the lithium iron-phosphate electrode
-
Srinivasan V, Newman J (2004) Discharge model for the lithium iron-phosphate electrode. J Electrochem Soc 151:A1517– A1529
-
(2004)
J Electrochem Soc
, vol.151
, pp. A1517-A1529
-
-
Srinivasan, V.1
Newman, J.2
-
37
-
-
54749123571
-
4/carbon nanocomposite with a core-shell structure and its synthesis by an in situ polymerization restriction method
-
4/carbon nanocomposite with a core-shell structure and its synthesis by an in situ polymerization restriction method. Angew Chem Int Ed 47:7461–7465
-
(2008)
Angew Chem Int Ed
, vol.47
, pp. 7461-7465
-
-
Wang, Y.G.1
Wang, Y.R.2
Hosono, E.J.3
Wang, K.X.4
Zhou, H.S.5
-
39
-
-
7644220712
-
Lithium batteries and cathode materials
-
Whittingham MS (2004) Lithium batteries and cathode materials. Chem Rev 104:4271–4301
-
(2004)
Chem Rev
, vol.104
, pp. 4271-4301
-
-
Whittingham, M.S.1
-
40
-
-
67650034664
-
4 nanoparticles embedded in a nanoporous carbon matrix: Superior cathode material for electrochemical energy-storage devices
-
4 nanoparticles embedded in a nanoporous carbon matrix: superior cathode material for electrochemical energy-storage devices. Adv Mater 21:2710–2714
-
(2009)
Adv Mater
, vol.21
, pp. 2710-2714
-
-
Wu, X.L.1
Jiang, L.Y.2
Cao, F.F.3
Guo, Y.G.4
Wan, L.J.5
-
43
-
-
79951543356
-
4 nanospheres in tridimensional porous carbon framework for lithium ion batteries
-
4 nanospheres in tridimensional porous carbon framework for lithium ion batteries. J Phys Chem C 115:2888–2894
-
(2011)
J Phys Chem C
, vol.115
, pp. 2888-2894
-
-
Zhao, J.1
He, J.2
Zhou, J.3
Guo, Y.4
Wang, T.5
Wu, S.6
Ding, X.7
Huang, R.8
Xue, H.9
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