Citation: | Wangjia Tang, Jianbo Wu, Xiuli Wang, Xinhui Xia, Jiangping Tu. Integrated carbon nanospheres arrays as anode materials for boosted sodium ion storage. Green Energy&Environment, 2018, 3(1): 50-55. doi: 10.1016/j.gee.2017.08.001 |
[1] |
T.Shen, X.-H.Xia, D.Xie, et al. J. Mater. Chem. A, 5 (2017),pp. 11197-11203
|
[2] |
X.Sun, X.Zhu, X.Yang, et al. Green Energy Environ., 2 (2017),pp. 160-167
|
[3] |
Q.Li, J.Chen, L.Fan, et al. Green Energy Environ., 1 (2016),pp. 18-42
|
[4] |
Z.Tai, Y.Liu, Q.Zhang, et al. Green Energy Environ. (2017)
|
[5] |
Y.Zhong, X.Xia, J.Zhan, et al. J. Mater. Chem. A, 4 (2016),pp. 11207-11213
|
[6] |
Y.Zhong, X.Xia, F.Shi, et al. Adv. Sci., 3 (2016),p. 1500286
|
[7] |
X.H.Xia, Y.Q.Zhang, Z.X.Fan, et al. Adv. Energy Mater., 5 (2015),p. 1401709
|
[8] |
X.H.Xia, Y.Q.Zhang, D.L.Chao, et al. Energy Environ. Sci., 8 (2015),pp. 1559-1568
|
[9] |
X.Yan, H.Ye, X.-L.Wu, et al. J. Mater. Chem. A, 5 (2017),pp. 16622-16629
|
[10] |
Z.Yao, X.Xia, Y.Zhong, et al. J. Mater. Chem. A, 5 (2017),pp. 8916-8921
|
[11] |
C.Zhou, X.Xia, Y.Wang, et al. J. Mater. Chem. A, 5 (2017),pp. 1394-1399
|
[12] |
D.Xie, X.H.Xia, Y.Zhong, et al. Adv. Energy Mater., 7 (2017),p. 1601804
|
[13] |
M.Chen, D.Chao, J.Liu, et al. Adv. Funct. Mater., 27 (2017),p. 1606232
|
[14] |
M.Chen, W.Zhou, M.Qi, et al. J. Power Sources, 342 (2017),pp. 964-969
|
[15] |
D.Chao, P.Liang, Z.Chen, et al. ACS Nano, 10 (2016),pp. 10211-10219
|
[16] |
D.Chao, C.Zhu, P.Yang, et al. Nat. Commun., 7 (2016),p. 12122
|
[17] |
K.-L.Hong, L.Qie, R.Zeng, et al. J. Mater. Chem. A, 2 (2014),pp. 12733-12738
|
[18] |
X.Xie, T.Makaryan, M.Zhao, et al. Adv. Energy Mater., 6 (2016),p. 1502161
|
[19] |
D.Xie, W.J.Tang, Y.D.Wang, et al. Nano Res., 9 (2016),pp. 1618-1629
|
[20] |
L.Yan, J.Yu, J.Houston, et al. Green Energy Environ., 2 (2017),pp. 84-99
|
[21] |
Y.Cao, L.Xiao, M.L.Sushko, et al. Nano Lett., 12 (2012),pp. 3783-3787
|
[22] |
H.Wang, Y.Zhang, W.Sun, et al. J. Power Sources, 307 (2016),pp. 17-24
|
[23] |
L.Fu, K.Tang, K.Song, et al. Nanoscale, 6 (2014),pp. 1384-1389
|
[24] |
H.Wang, G.Jia, Y.Guo, et al. Adv. Mater. Inter., 3 (2016),p. 1600375
|
[25] |
K.Tang, L.Fu, R.J.White, et al. Adv. Energy Mater., 2 (2012),pp. 873-877
|
[26] |
Z.Wang, L.Qie, L.Yuan, et al. Carbon, 55 (2013),pp. 328-334
|
[27] |
T.Chen, L.Pan, T.Lu, et al. J. Mater. Chem. A, 2 (2014),pp. 1263-1267
|
[28] |
Y.N.Ko, Y.C.Kang Chem. Commun., 50 (2014),pp. 12322-12324
|
[29] |
G.Zheng, S.W.Lee, Z.Liang, et al. Nat. Nanotechnol., 9 (2014),pp. 618-623
|
[30] |
Y.Zhong, X.Xia, J.Zhan, et al. J. Mater. Chem. A, 4 (2016),pp. 18717-18722
|
[31] |
S.-W.Kim, D.-H.Seo, X.Ma, et al. Adv. Energy Mater., 2 (2012),pp. 710-721
|
[32] |
H.Zhang, F.Yu, W.Kang, et al. Carbon, 95 (2015),pp. 354-363
|
[33] |
W.Lv, F.Wen, J.Xiang, et al. Electrochim. Acta, 176 (2015),pp. 533-541
|
[34] |
D.J.Ryu, R.G.Oh, Y.D.Seo, et al. Environ. Sci. Pollut. Res. Int., 22 (2015),pp. 10405-10412
|
[35] |
Z.Li, Z.Xu, X.Tan, et al. Energy Environ. Sci., 6 (2013),pp. 871-878
|
[36] |
J.Jiang, J.Zhu, W.Ai, et al. Energy Environ. Sci., 7 (2014),pp. 2670-2679
|
[37] |
H.Song, N.Li, H.Cui, et al. Nano Energy, 4 (2014),pp. 81-87
|
[38] |
K.Zhang, X.Li, J.Liang, et al. Electrochim. Acta, 155 (2015),pp. 174-182
|
[39] |
X.H.Xia, Z.L.Ku, D.Zhou, et al. Mater. Horiz., 3 (2016),pp. 588-595
|
[40] |
Q.Xiong, C.Zheng, H.Chi, et al. Nanotechnology, 28 (2016),p. 055405
|
[41] |
Q.Q.Xiong, Z.G.Ji J. Alloys Compd., 673 (2016),pp. 215-219
|
[42] |
Q.Xiong, H.Chi, J.Zhang, et al. J. Alloys Compd., 688, Part B (2016),pp. 729-735
|
[43] |
S.Deng, Y.Zhong, Y.Zeng, et al. Adv. Mater., 29 (2017),p. 1700748
|