[1] |
T.F. Liu, Y.P. Zhang, Z.G. Jiang, X.Q. Zeng, J.P. Ji, Z.H. Li, X.H. Gao, M.H. Sun, Z. Lin, M. Ling, J.C. Zheng, C.D. Liang, Energy Environ. Sci. 12 (2019) 1512-1533.
|
[2] |
N. Yabuuchi, K. Kubota, M. Dahbi, S. Komaba, Chem. Rev. 114 (2014) 11636-11682.
DOI
URL
PMID
|
[3] |
M.D. Slater, D. Kim, E. Lee, C.S. Johnson, Adv. Funct. Mater. 23 (2013) 947-958.
|
[4] |
P.K. Nayak, L. Yang, W. Brehm, P. Adelhelm, Angew. Chem. Int. Ed. 57 (2018) 102-120.
|
[5] |
G.L. Xu, R. Amine, A. Abouimrane, H. Che, M. Dahbi, Z.F. Ma, I. Saadoune, J. Alami, W.L. Mattis, F. Pan, Z. Chen, K. Amine, Adv. Energy Mater. 8 (2018).
|
[6] |
F. Li, Z. Zhou, Small 14 (2018), 1702961.
|
[7] |
X.D. Ma, X.H. Xiong, J.Q. Zeng, P.J. Zou, Z. Lin, M.L. Liu, J. Mater. Chem. A 8 (2020) 6768-6775.
|
[8] |
H.S. Hou, C.E. Banks, M.J. Jing, Y. Zhang, X.B. Ji, Adv. Mater. 27 (2015) 7861-7866.
URL
PMID
|
[9] |
J. Kim, H. Kim, K. Kang, Adv. Energy Mater. 8 (2018), 1702646.
|
[10] |
Y.B. Niu, Y.X. Yin, Y.G. Guo, Small 15 (2019), 1900233.
|
[11] |
Q. Ni, Y. Bai, F. Wu, C. Wu, Adv. Sci. 4 (2017), 1600275.
|
[12] |
F.X. Wu, C.L. Zhao, S.Q. Chen, Y.X. Lu, Y.L. Hou, Y.S. Hu, J. Maier, Y. Yu, Mater. Today 21 (2018) 960-973.
|
[13] |
Z.L. Jian, W.Z. Han, X. Lu, H.X. Yang, Y.S. Hu, J. Zhou, Z.B. Zhou, J.Q. Li, W. Chen, D.F. Chen, Adv. Energy Mater. 3 (2013) 156-160.
|
[14] |
H.F. Jiang, X.Y. Cai, Z. Wang, L.L. Zhang, L.J. Zhou, L.F. Lai, X. Liu, Electrochim. Acta 306 (2019) 558-567.
|
[15] |
E.H. Wang, M.Z. Chen, X.H. Liu, Y.M. Liu, H.P. Guo, Z.G. Wu, W. Xiang, B.H. Zhong, X.D. Guo, S.L. Chou, S.X. Dou, Small Methods 3 (2018), 1800169.
|
[16] |
Y.J. Chen, Y.L. Xu, X.F. Sun, C. Wang, J. Power Sources 375 (2018) 82-92.
|
[17] |
Y.R. Qi, Z.Z. Tong, J.M. Zhao, L. Ma, T.P. Wu, H.Z. Liu, C. Yang, J. Lu, Y.S. Hu, Joule 2 (2018) 2348-2363.
|
[18] |
T. Broux, F. Fauth, N. Hall, Y. Chatillon, M. Bianchini, T. Bamine, J.B. Leriche, E. Suard, D. Carlier, Y. Reynier, Small Methods 3 (2019), 1800215.
|
[19] |
M. Aragón, P. Lavela, R. Alcántara, J. Tirado, Electrochim. Acta 180 (2015) 824-830.
|
[20] |
C.B. Zhu, K.P. Song, P.A. Van Aken, J. Maier, Y. Yu, Nano Lett. 14 (2014) 2175-2180.
DOI
URL
PMID
|
[21] |
W.C. Duan, Z.Q. Zhu, H. Li, Z. Hu, K. Zhang, F.Y. Cheng, J. Chen, J. Mater. Chem. A 2 (2014) 8668-8675.
|
[22] |
S. Tao, P.X. Cui, W.F. Huang, Z. Yu, X.B. Wang, S.H. Wei, D.B. Liu, L. Song, W.S. Chu, Carbon 96 (2016) 1028-1033.
|
[23] |
S. Li, Y.F. Dong, L. Xu, X. Xu, L. He, L.Q. Mai, Adv. Mater. 26 (2014) 3545-3553.
URL
PMID
|
[24] |
F. Li, Y.E. Zhu, J. Sheng, L.P. Yang, Y. Zhang, Z. Zhou, J. Mater. Chem. A 5 (2017) 25276-25281.
|
[25] |
Y. Jiang, X.F. Zhou, D.L. Li, X.L. Cheng, F.F. Liu, Y. Yu, Adv. Energy Mater. 8 (2018), 1800068.
|
[26] |
W.H. Ren, Z.P. Zheng, C. Xu, C.J. Niu, Q.L. Wei, Q.Y. An, K.N. Zhao, M.Y. Yan, M.S. Qin, L.Q. Mai, Nano Energy 25 (2016) 145-153.
|
[27] |
H. Li, Y. Bai, F. Wu, Y. Li, C. Wu, J. Power Sources 273 (2015) 784-792.
|
[28] |
X.H. Liu, G.L. Feng, E.H. Wang, H. Chen, Z.G. Wu, W. Xiang, Y.J. Zhong, Y.X. Chen, X.D. Guo, B.H. Zhong, ACS Appl. Mater. Interfaces 11 (2019) 12421-12430.
DOI
URL
PMID
|
[29] |
P.N. Didwal, R. Verma, C.W. Min, C.J. Park, J. Power Sources 413 (2019) 1-10.
|
[30] |
C.W. Nan, Acta Phys. Sin. 2 (1987) 191-198 (in Chinese).
|
[31] |
Z. Zhang, Y. Shao, B. Lotsch, Y.S. Hu, H. Li, J. Janek, L.F. Nazar, C.W. Nan, J. Maier, M. Armand, L.Q. Chen, Energy Environ. Sci. 11 (2018) 1945-1976.
|
[32] |
G.Z. Fang, Z.X. Wu, J. Zhou, C.Y. Zhu, X.X. Cao, T.Q. Lin, Y.M. Chen, C. Wang, A.Q. Pan, S.Q. Liang, Adv. Energy Mater. 8 (2018), 1703155.
|
[33] |
S.T. Wang, Y. Yang, W. Quan, Y. Hong, Z.T. Zhang, Z.L. Tang, J. Li, Nano Energy 32 (2017) 294-301.
|
[34] |
R. Liu, H.D. Liu, T. Sheng, S.Y. Zheng, G.M. Zhong, G.R. Zheng, Z.T. Liang, G.F. Ortiz, W.M. Zhao, J.X. Mi, Y. Yang, ACS Appl. Energy Mater. 1 (2018) 3603-3606.
|
[35] |
Q.H. Wang, J.T. Xu, W.C. Zhang, M.L. Mao, Z.X. Wei, L. Wang, C.Y. Cui, Y.X. Zhu, J.M. Ma, J. Mater. Chem. A 6 (2018) 8815-8838.
|
[36] |
J.P. Perdew, K. Burke, M. Ernzerhof, Phys. Rev. Lett. 77 (1996) 3865-3868.
DOI
URL
PMID
|
[37] |
B. Hammer, L.B. Hansen, J.K. Nørskov, Phys. Rev. B 59 (1999) 7413-7421.
|
[38] |
P.E. Blöchl, Phys. Rev. B 50 (1994) 17953-17979.
|
[39] |
G. Kresse, D. Joubert, Phys. Rev. B 59 (1999) 1758-1775.
|
[40] |
H.J. Monkhorst, J.D. Pack, Phys. Rev. B 13 (1976) 5188-5192.
|
[41] |
S.W. Oh, S.T. Myung, S.M. Oh, K.H. Oh, K. Amine, B. Scrosati, Y.K. Sun, Adv. Mater. 22 (2010) 4842.
URL
PMID
|
[42] |
H.G. Jung, S.T. Myung, C.S. Yoon, S.B. Son, K.H. Oh, K. Amine, B. Scrosati, Y.K. Sun, Energy Environ. Sci. 4 (2011) 1345-1351.
|
[43] |
Y.Q. Zhang, L. Tao, C. Xie, D.D. Wang, Y.Q. Zou, R. Chen, Y.Y. Wang, C.K. Jia, S.Y. Wang, Adv. Mater. 32 (2020), 1905923.
|
[44] |
P.W.W. Feng, K. Wang, S. Cheng, K. Jiang, J. Mater. Chem. A 5 (2017) 10261-10268.
|
[45] |
H. Kim, H. Lim, H.S. Kim, K.J. Kim, D. Byun, W. Choi, Nano Res. 12 (2018) 397-404.
|