-
3
-
-
84867285079
-
-
Y. Liang, Z. Tao, J. Chen, Adv. Energy Mater. 2012, 2, 742.
-
(2012)
Adv. Energy Mater.
, vol.2
, pp. 742
-
-
Liang, Y.1
Tao, Z.2
Chen, J.3
-
4
-
-
84901741042
-
-
F.-S. Ke, K. Mishra, L. Jamison, X.-X. Peng, S.-G. Ma, L. Huang, S.-G. Sun, X.-D. Zhou, Chem. Commun. 2014, 50, 3713.
-
(2014)
Chem. Commun.
, vol.50
, pp. 3713
-
-
Ke, F.-S.1
Mishra, K.2
Jamison, L.3
Peng, X.-X.4
Ma, S.-G.5
Huang, L.6
Sun, S.-G.7
Zhou, X.-D.8
-
6
-
-
11644298091
-
-
J. R. Dahn, T. Zheng, Y. Liu, J. S. Xue, Science 1995, 270, 590.
-
(1995)
Science
, vol.270
, pp. 590
-
-
Dahn, J.R.1
Zheng, T.2
Liu, Y.3
Xue, J.S.4
-
7
-
-
57049185903
-
-
a)
-
E. J. Yoo, J. Kim, E. Hosono, H.-S. Zhou, T. Kudo, I. Honma, Nano Lett. 2008, 8, 2277;
-
(2008)
Nano Lett.
, vol.8
, pp. 2277
-
-
Yoo, E.J.1
Kim, J.2
Hosono, E.3
Zhou, H.-S.4
Kudo, T.5
Honma, I.6
-
8
-
-
78049326584
-
-
b)
-
R. A. DiLeo, A. Castiglia, M. J. Ganter, R. E. Rogers, C. D. Cress, R. P. Raffaelle, B. J. Landi, ACS Nano 2010, 4, 6121.
-
(2010)
ACS Nano
, vol.4
, pp. 6121
-
-
DiLeo, R.A.1
Castiglia, A.2
Ganter, M.J.3
Rogers, R.E.4
Cress, C.D.5
Raffaelle, R.P.6
Landi, B.J.7
-
9
-
-
79957449928
-
-
W. Nakanishi, T. Yoshioka, H. Taka, J. Y. Xue, H. Kita, H. Isobe, Angew. Chem. Int. Ed. 2011, 50, 5323.
-
(2011)
Angew. Chem. Int. Ed.
, vol.50
, pp. 5323
-
-
Nakanishi, W.1
Yoshioka, T.2
Taka, H.3
Xue, J.Y.4
Kita, H.5
Isobe, H.6
-
10
-
-
84941095589
-
-
N. Ogihara, T. Yasuda, Y. Kishida, T. Ohsuna, K. Miyamoto, N. Ohba, Angew. Chem. Int. Ed. 2014, 53, 11467.
-
(2014)
Angew. Chem. Int. Ed.
, vol.53
, pp. 11467
-
-
Ogihara, N.1
Yasuda, T.2
Kishida, Y.3
Ohsuna, T.4
Miyamoto, K.5
Ohba, N.6
-
11
-
-
58849095406
-
-
M. Armand, S. Grugeon, H. Vezin, S. Laruelle, P. Ribière, P. Poizot, J.-M. Tarascon, Nat. Mater. 2009, 8, 120.
-
(2009)
Nat. Mater.
, vol.8
, pp. 120
-
-
Armand, M.1
Grugeon, S.2
Vezin, H.3
Laruelle, S.4
Ribière, P.5
Poizot, P.6
Tarascon, J.-M.7
-
12
-
-
84977493382
-
-
in, 2nd ed., (Eds, L. A. Paquette, D. Crich, P. L. Fuchs, G. A. Molander, Wiley, Chichester, UK
-
L. Banfi, E. Narisano, in Encyclopedia of Reagents for Organic Synthesis, 2nd ed., Vol. 8 (Eds: L. A. Paquette, D. Crich, P. L. Fuchs, G. A. Molander), Wiley, Chichester, UK 2009, pp. 6097-2013;6104.
-
(2009)
Encyclopedia of Reagents for Organic Synthesis
, vol.8
, pp. 6097-6104
-
-
Banfi, L.1
Narisano, E.2
-
13
-
-
84862096979
-
-
X. Han, G. Qing, J. Sun, T. Sun, Angew. Chem. Int. Ed. 2012, 51, 5147.
-
(2012)
Angew. Chem. Int. Ed.
, vol.51
, pp. 5147
-
-
Han, X.1
Qing, G.2
Sun, J.3
Sun, T.4
-
14
-
-
84930418260
-
-
B. Häupler, A. Wild, U. S. Schubert, Adv. Energy Mater. 2015, 5, 1402034.
-
(2015)
Adv. Energy Mater.
, vol.5
, pp. 1402034
-
-
Häupler, B.1
Wild, A.2
Schubert, U.S.3
-
15
-
-
84888231914
-
-
L. Fédélem, D. Sauvage, J. Bois, J.-M. Tarascon, M. Bécuwe, J. Electrochem. Soc. 2014, 161, A46.
-
(2014)
J. Electrochem. Soc.
, vol.161
, pp. A46
-
-
Fédélem, L.1
Sauvage, D.2
Bois, J.3
Tarascon, J.-M.4
Bécuwe, M.5
-
16
-
-
84876013132
-
-
R. R. Zhao, Y. L. Cao, X. P. Ai, H. X. Yang, J. Electroanal. Chem. 2013, 688, 93.
-
(2013)
J. Electroanal. Chem.
, vol.688
, pp. 93
-
-
Zhao, R.R.1
Cao, Y.L.2
Ai, X.P.3
Yang, H.X.4
-
19
-
-
84899075742
-
-
b)
-
A. Unemoto, M. Matsuo, S. Orimo, Adv. Funct. Mater. 2014, 24, 2267.
-
(2014)
Adv. Funct. Mater.
, vol.24
, pp. 2267
-
-
Unemoto, A.1
Matsuo, M.2
Orimo, S.3
-
20
-
-
33750326905
-
-
a)
-
T. Minami, A. Hayashi, M. Tatsumisago, Solid State Ionics 2006, 177, 2715;
-
(2006)
Solid State Ionics
, vol.177
, pp. 2715
-
-
Minami, T.1
Hayashi, A.2
Tatsumisago, M.3
-
21
-
-
11144348633
-
-
b)
-
R. Kanno, M. Murayama, T. Inada, T. Kobayashi, K. Sakamoto, N. Sonoyama, A. Yamada, S. Kondo, Electrochem. Solid-State Lett. 2004, 7, A455;
-
(2004)
Electrochem. Solid-State Lett.
, vol.7
, pp. A455
-
-
Kanno, R.1
Murayama, M.2
Inada, T.3
Kobayashi, T.4
Sakamoto, K.5
Sonoyama, N.6
Yamada, A.7
Kondo, S.8
-
22
-
-
84957851215
-
-
c)
-
M. Sakuma, K. Suzuki, M. Hirayama, R. Kanno, Solid State Ionics 2016, 285, 101;
-
(2016)
Solid State Ionics
, vol.285
, pp. 101
-
-
Sakuma, M.1
Suzuki, K.2
Hirayama, M.3
Kanno, R.4
-
23
-
-
62349127062
-
-
d)
-
H. Kitaura, A. Hayashi, K. Tadanaga, M. Tatsumisago, J. Power Sources 2009, 189, 145;
-
(2009)
J. Power Sources
, vol.189
, pp. 145
-
-
Kitaura, H.1
Hayashi, A.2
Tadanaga, K.3
Tatsumisago, M.4
-
24
-
-
84977560216
-
-
e)
-
Y. Seino, K. Takada, B. C. Kim, L. Q. Zhang, N. Ohta, H. Wada, M. Osada, T. Sasaki, Solid State Ionics 2005, 176, 31.
-
(2005)
Solid State Ionics
, vol.176
, pp. 31
-
-
Seino, Y.1
Takada, K.2
Kim, B.C.3
Zhang, L.Q.4
Ohta, N.5
Wada, H.6
Osada, M.7
Sasaki, T.8
-
25
-
-
36549006433
-
-
a)
-
M. Matsuo, Y. Nakamori, S. Orimo, H. Maekawa, H. Takamura, Appl. Phys. Lett. 2007, 91, 224103;
-
(2007)
Appl. Phys. Lett.
, vol.91
, pp. 224103
-
-
Matsuo, M.1
Nakamori, Y.2
Orimo, S.3
Maekawa, H.4
Takamura, H.5
-
27
-
-
84931287690
-
-
a)
-
A. Unemoto, C. L. Chen, Z. Wang, M. Matsuo, T. Ikeshoji, S. Orimo, Nanotechnology 2015, 26, 254001;
-
(2015)
Nanotechnology
, vol.26
, pp. 254001
-
-
Unemoto, A.1
Chen, C.L.2
Wang, Z.3
Matsuo, M.4
Ikeshoji, T.5
Orimo, S.6
-
28
-
-
84907306509
-
-
b)
-
A. Unemoto, S. Yasaku, G. Nogami, M. Tazawa, M. Taniguchi, M. Matsuo, T. Ikeshoji, S. Orimo, Appl. Phys. Lett. 2014, 105, 083901.
-
(2014)
Appl. Phys. Lett.
, vol.105
, pp. 083901
-
-
Unemoto, A.1
Yasaku, S.2
Nogami, G.3
Tazawa, M.4
Taniguchi, M.5
Matsuo, M.6
Ikeshoji, T.7
Orimo, S.8
-
29
-
-
84938933026
-
-
A. Unemoto, T. Ikeshoji, S. Yasaku, M. Matsuo, V. Stavilla, T. J. Udovic, S. Orimo, Chem. Mater. 2015, 27, 5407.
-
(2015)
Chem. Mater.
, vol.27
, pp. 5407
-
-
Unemoto, A.1
Ikeshoji, T.2
Yasaku, S.3
Matsuo, M.4
Stavilla, V.5
Udovic, T.J.6
Orimo, S.7
-
30
-
-
85043116123
-
-
The Coulombic efficiency for the initial three cycles at 727 mA h g, were not high (Figure S1, Supporting Information). We believe that Li-migration pathways and conduction interfaces are being formed in the composite during this process, as is often the case with battery electrodes. For similar observations, see refs. [10], [13][14]. Note that tackling interfacial issues is both tedious and complex. For instance, the composition and nature of interfaces of conventional lithium batteries are still the subject of much controversy, partly because the solid electrolyte interphase forms on Li or carbonaceous materials (ref. [1])
-
-2013;1 were not high (Figure S1, Supporting Information). We believe that Li-migration pathways and conduction interfaces are being formed in the composite during this process, as is often the case with battery electrodes. For similar observations, see refs. [10], [13], and [14]. Note that tackling interfacial issues is both tedious and complex. For instance, the composition and nature of interfaces of conventional lithium batteries are still the subject of much controversy, partly because the solid electrolyte interphase forms on Li or carbonaceous materials (ref. [1]).
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-
-
-
31
-
-
85043119889
-
-
When we analyzed the discharge-2013;charge process at a higher charging rate of 850 mA g, the specific capacity was 14 mA h g, Further extensive studies on the optimum conditions including the charging rate are necessary for practical applications in the future
-
-2013;1. Further extensive studies on the optimum conditions including the charging rate are necessary for practical applications in the future.
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-
-
-
32
-
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85043118291
-
-
A decay in the capacity was 99.96% from 30th to 65th cycles, which may indicate, for instance, 560 mA h g, (90% of 624 mA h g,) at 300 cycles. Further evaluation of extensive cycles is important for practical applications and will be studied in the future
-
-2013;1) at 300 cycles. Further evaluation of extensive cycles is important for practical applications and will be studied in the future.
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-
-
-
33
-
-
85043108066
-
-
An additional plateau was observed at -2248;0.8 V to indicate inferior recyclability in the applied voltage range of 0-2013;1.0 V (vs Li/Li,), which was in stark contrast to the stable recyclability observed in the voltage range of 0.2-2013;1.0 V (Figure S7, Supporting Information). We believe that an excess lithium insertion at low voltage of -003C;0.2 V hampered the stable discharge-2013;charge processes
-
+), which was in stark contrast to the stable recyclability observed in the voltage range of 0.2-2013;1.0 V (Figure S7, Supporting Information). We believe that an excess lithium insertion at low voltage of -003C;0.2 V hampered the stable discharge-2013;charge processes.
-
-
-
-
34
-
-
79960063954
-
-
W. Nakanishi, J. Y. Xue, T. Yoshioka, H. Isobe, Acta Crystallogr. Sect. E Struct. Rep. Online 2011, E67, o1762.
-
(2011)
Acta Crystallogr. Sect. E Struct. Rep. Online
, vol.E67
, pp. o1762
-
-
Nakanishi, W.1
Xue, J.Y.2
Yoshioka, T.3
Isobe, H.4
-
36
-
-
79952182412
-
-
M. J. Turner, J. J. McKinnon, D. Jayatilaka, M. A. Spackman, CrystEngComm 2011, 13, 1804.
-
(2011)
CrystEngComm
, vol.13
, pp. 1804
-
-
Turner, M.J.1
McKinnon, J.J.2
Jayatilaka, D.3
Spackman, M.A.4
-
39
-
-
84927767956
-
-
N. Nitta, F. Wu, J. T. Lee, G. Yushin, Mater. Today 2015, 18, 252.
-
(2015)
Mater. Today
, vol.18
, pp. 252
-
-
Nitta, N.1
Wu, F.2
Lee, J.T.3
Yushin, G.4
-
40
-
-
0035743695
-
-
E. Nishibori, M. Takata, K. Kato, M. Sakata, Y. Kobata, S. Aoyagi, Y. Kuroiwa, M. Yamakata, N. Ikeda, J. Phys. Chem. Solids 2001, 62, 2095.
-
(2001)
J. Phys. Chem. Solids
, vol.62
, pp. 2095
-
-
Nishibori, E.1
Takata, M.2
Kato, K.3
Sakata, M.4
Kobata, Y.5
Aoyagi, S.6
Kuroiwa, Y.7
Yamakata, M.8
Ikeda, N.9
-
41
-
-
0032499862
-
-
M. Winter, J. O. Besenhard, M. E. Spahr, P. Novák, Adv. Mater. 1998, 10, 725.
-
(1998)
Adv. Mater.
, vol.10
, pp. 725
-
-
Winter, M.1
Besenhard, J.O.2
Spahr, M.E.3
Novák, P.4
-
42
-
-
0000551273
-
-
J. J. Brooks, W. Rhine, G. D. Stucky, J. Am. Chem. Soc. 1972, 94, 7346.
-
(1972)
J. Am. Chem. Soc.
, vol.94
, pp. 7346
-
-
Brooks, J.J.1
Rhine, W.2
Stucky, G.D.3
-
44
-
-
0842341771
-
-
M. J. S. Dewar, E. G. Zoebisch, E. F. Healy, J. Am. Chem. Soc. 1985, 107, 3902.
-
(1985)
J. Am. Chem. Soc.
, vol.107
, pp. 3902
-
-
Dewar, M.J.S.1
Zoebisch, E.G.2
Healy, E.F.3
-
45
-
-
77950798343
-
-
H. Tachikawa, T. Iyama, H. Kawabata, Jpn. J. Appl. Phys. 2010, 49, 01AH02.
-
(2010)
Jpn. J. Appl. Phys.
, vol.49
, pp. 01AH02
-
-
Tachikawa, H.1
Iyama, T.2
Kawabata, H.3
-
46
-
-
18944376114
-
-
J. J. McKinnon, M. A. Spackman, A. S. Mitchell, Acta Crystallogr. 2004, B60, 627.
-
(2004)
Acta Crystallogr.
, vol.B60
, pp. 627
-
-
McKinnon, J.J.1
Spackman, M.A.2
Mitchell, A.S.3
-
48
-
-
0000948650
-
-
b)
-
T. Zheng, J. N. Reimers, J. R. Dahn, Phys. Rev. B 1995, 51, 734;
-
(1995)
Phys. Rev. B
, vol.51
, pp. 734
-
-
Zheng, T.1
Reimers, J.N.2
Dahn, J.R.3
-
49
-
-
0035819202
-
-
c)
-
S. Ishikawa, G. Madjarova, T. Yamabe, J. Phys. Chem. B 2001, 105, 11986.
-
(2001)
J. Phys. Chem. B
, vol.105
, pp. 11986
-
-
Ishikawa, S.1
Madjarova, G.2
Yamabe, T.3
-
50
-
-
80051863338
-
-
a)
-
A. V. Zabula, A. S. Filatov, S. N. Spisak, A. Y. Rogachev, M. A. Petrukhina, Science 2011, 333, 1008;
-
(2011)
Science
, vol.333
, pp. 1008
-
-
Zabula, A.V.1
Filatov, A.S.2
Spisak, S.N.3
Rogachev, A.Y.4
Petrukhina, M.A.5
-
51
-
-
84907143924
-
-
b)
-
R. Bomparola, R. P. Davies, S. Hornaeur, A. J. P. White, Dalton Trans. 2014, 43, 14359;
-
(2014)
Dalton Trans.
, vol.43
, pp. 14359
-
-
Bomparola, R.1
Davies, R.P.2
Hornaeur, S.3
White, A.J.P.4
-
52
-
-
0000189007
-
-
c)
-
C. Üffing, R. Köppe, H. Schnöckel, Organometallics 1998, 17, 3512.
-
(1998)
Organometallics
, vol.17
, pp. 3512
-
-
Üffing, C.1
Köppe, R.2
Schnöckel, H.3
-
53
-
-
0033705505
-
-
a)
-
R. E. Gerald II, R. J. Klingler, G. Sandí, C. S. Johnson, L. G. Scanlon, J. W. Rathke, J. Power Sources 2000, 89, 237;
-
(2000)
J. Power Sources
, vol.89
, pp. 237
-
-
Gerald, R.E.1
Klingler, R.J.2
Sandí, G.3
Johnson, C.S.4
Scanlon, L.G.5
Rathke, J.W.6
-
54
-
-
0003380542
-
-
b)
-
G. Sandí, R. E. Gerald II, L. G. Scanlon, C. S. Johnson, R. J. Klingler, J. W. Rathke, J. New Mater. Electrochem. Sys. 2000, 3, 13.
-
(2000)
J. New Mater. Electrochem. Sys.
, vol.3
, pp. 13
-
-
Sandí, G.1
Gerald, R.E.2
Scanlon, L.G.3
Johnson, C.S.4
Klingler, R.J.5
Rathke, J.W.6
-
55
-
-
84975354437
-
-
A. Mabuchi, K. Tokumitsu, H. Fujimoto, T. Kasuh, J. Electrochem. Soc. 1995, 142, 1041.
-
(1995)
J. Electrochem. Soc.
, vol.142
, pp. 1041
-
-
Mabuchi, A.1
Tokumitsu, K.2
Fujimoto, H.3
Kasuh, T.4
-
58
-
-
34248584387
-
-
M. Koshino, T. Tanaka, N. Solin, K. Suenaga, H. Isobe, E. Nakamura, Science 2007, 316, 853.
-
(2007)
Science
, vol.316
, pp. 853
-
-
Koshino, M.1
Tanaka, T.2
Solin, N.3
Suenaga, K.4
Isobe, H.5
Nakamura, E.6
-
59
-
-
84903272972
-
-
W. Nakanishi, N. Matsuyama, D. Hara, A. Saeki, S. Hitosugi, S. Seki, H. Isobe, Chem. Asian J. 2014, 9, 1782.
-
(2014)
Chem. Asian J.
, vol.9
, pp. 1782
-
-
Nakanishi, W.1
Matsuyama, N.2
Hara, D.3
Saeki, A.4
Hitosugi, S.5
Seki, S.6
Isobe, H.7
-
60
-
-
84887022604
-
-
M. Ø. Filsø, M. J. Turner, G. V. Gibbs, A. Adams, M. A. Spackman, B. B. Iversen, Chem. Eur. J. 2013, 19, 15535.
-
(2013)
Chem. Eur. J.
, vol.19
, pp. 15535
-
-
Filsø, M.Ø.1
Turner, M.J.2
Gibbs, G.V.3
Adams, A.4
Spackman, M.A.5
Iversen, B.B.6
-
62
-
-
84881153951
-
-
J. Y. Xue, W. Nakanishi, D. Tanimoto, D. Hara, Y. Nakamura, H. Isobe, Tetrahedron Lett. 2013, 54, 4963.
-
(2013)
Tetrahedron Lett.
, vol.54
, pp. 4963
-
-
Xue, J.Y.1
Nakanishi, W.2
Tanimoto, D.3
Hara, D.4
Nakamura, Y.5
Isobe, H.6
-
64
-
-
84907986082
-
-
a)
-
J. Y. Xue, K. Ikemoto, N. Takahashi, T. Izumi, H. Taka, H. Kita, S. Sato, H. Isobe, J. Org. Chem. 2014, 79, 9735;
-
(2014)
J. Org. Chem.
, vol.79
, pp. 9735
-
-
Xue, J.Y.1
Ikemoto, K.2
Takahashi, N.3
Izumi, T.4
Taka, H.5
Kita, H.6
Sato, S.7
Isobe, H.8
-
65
-
-
84944276383
-
-
b)
-
Z. Sun, P. Sarkar, T. Suenaga, S. Sato, H. Isobe, Angew. Chem. Int. Ed. 2015, 54, 12800;
-
(2015)
Angew. Chem. Int. Ed.
, vol.54
, pp. 12800
-
-
Sun, Z.1
Sarkar, P.2
Suenaga, T.3
Sato, S.4
Isobe, H.5
-
66
-
-
84961300202
-
-
c)
-
J. Y. Xue, T. Izumi, A. Yoshii, K. Ikemoto, T. Koretsune, R. Akashi, R. Arita, H. Taka, H. Kita, S. Sato, H. IsobeChem. Sci. 2016, 7, 896.
-
(2016)
Chem. Sci.
, vol.7
, pp. 896
-
-
Xue, J.Y.1
Izumi, T.2
Yoshii, A.3
Ikemoto, K.4
Koretsune, T.5
Akashi, R.6
Arita, R.7
Taka, H.8
Kita, H.9
Sato, S.10
Isobe, H.11
-
67
-
-
84877706391
-
-
a)
-
A. V. Zabula, A. S. Filatov, J. Xia, R. Jasti, M. A. Petrukhina, Angew. Chem. Int. Ed. 2013, 52, 5033;
-
(2013)
Angew. Chem. Int. Ed.
, vol.52
, pp. 5033
-
-
Zabula, A.V.1
Filatov, A.S.2
Xia, J.3
Jasti, R.4
Petrukhina, M.A.5
-
69
-
-
84899881225
-
-
c)
-
T. Matsuno, H. Naito, S. Hitosugi, S. Sato, M. Kotani, H. Isobe, Pure Appl. Chem. 2014, 86, 489.
-
(2014)
Pure Appl. Chem.
, vol.86
, pp. 489
-
-
Matsuno, T.1
Naito, H.2
Hitosugi, S.3
Sato, S.4
Kotani, M.5
Isobe, H.6
-
70
-
-
79954462991
-
-
a)
-
J. F. M. Oudenhoven, L. Baggetto, P. H. L. Notten, Adv. Energy Mater. 2011, 1, 10;
-
(2011)
Adv. Energy Mater.
, vol.1
, pp. 10
-
-
Oudenhoven, J.F.M.1
Baggetto, L.2
Notten, P.H.L.3
-
71
-
-
84948614405
-
-
b)
-
D. Blanchard, A. Nale, D. Sveinbjörnsson, T. M. Eggenhuisen, M. H. W. Verkuijlen, Suwarno, T. Vegge, A. P. M. Kentgens, P. E. de Jongh, Adv. Funct. Mater. 2015, 25, 184.
-
(2015)
Adv. Funct. Mater.
, vol.25
, pp. 184
-
-
Blanchard, D.1
Nale, A.2
Sveinbjörnsson, D.3
Eggenhuisen, T.M.4
Verkuijlen, M.H.W.5
Suwarno6
Vegge, T.7
Kentgens, A.P.M.8
de Jongh, P.E.9
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