| [1] |
C.Y. Wang, G. Zhang, S. Ge, T. Xu, Y. Ji, X. Yang, Y. Leng, Nature 7587, 515 (2016)
|
| [2] |
L.M. Pazos-Outón, M. Szumilo, R. Lamboll, J. Richter, M. Crespo-Quesada, M. Abdi-Jalebi, H. Beeson, M. Vrućinić, M. Alsari, H. Snaith, Science 6280, 1430 (2016)
|
| [3] |
A. Manthiram, S.H. Chung, C. Zu, Adv. Mater. 12, 1980 (2015)
|
| [4] |
H.D. Yoo, E. Markevich, G. Salitra, D. Sharon, D. Aurbach, Mater. Today 3, 110 (2014)
|
| [5] |
L. Ma, H.L. Zhuang, S. Wei, K. Hendrickson, M. Kim, G. Cohn, R. Hennig, L. Archer, ACS Nano 1, 1050 (2016)
|
| [6] |
C.B. Bucur, M. Jones, M. Kopylov, J. Spear, J. Muldoon, Energy Environ. Sci. 4, 905(2017)
|
| [7] |
M.R. Kaiser, S. Chou, H.K. Liu, S. Dou, C. Wang, J. Wang, Adv. Mater. 48, 1700449(2017)
|
| [8] |
C. Barchasz, F. Molton, C. Duboc, J. Leprêtre, S. Patoux, F. Alloin, Anal. Chem. 9, 3973(2012)
|
| [9] |
G. He, S. Evers, X. Liang, M. Cuisinier, A. Garsuch, L. Nazar, ACS Nano 12, 10920 (2013)
|
| [10] |
N. Jayaprakash, J. Shen, S.S. Moganty, A. Corona, L. Archer, Angew. Chem. Int. Ed. 26, 5904(2011)
|
| [11] |
M.R. Kaiser, Z. Ma, X. Wang, F. Han, T. Gao, X. Fan, J. Wang, H. Liu, S. Dou, C. Wang, ACS Nano 9, 9048 (2017)
|
| [12] |
T. Tao, S. Lu, Y. Fan, W. Lei, S. Huang, Y. Chen, Adv. Mater. 48, 1700542(2017)
|
| [13] |
S.A. Abbas, J. Ding, S.H. Wu, J. Fang, K. Boopathi, A. Mohapatra, L. Lee, P. Wang, C. Chang, C. Chu, ACS Nano 12, 12436 (2017)
URL
PMID
|
| [14] |
S. Lorger, R.E. Usiskin, J. Maier, Adv. Funct. Mater. 6, 1807688(2019)
|
| [15] |
D. Ghosh, M. Gad, I. Lau, M. Pope, Adv. Energy Mater. 27, 1801979(2018)
|
| [16] |
J. Chang, J. Shang, Y. Sun, L. Ono, D. Wang, Z. Ma, Q. Huang, D. Chen, G. Liu, Y. Cui, Nat. Commun. 1, 1(2018)
DOI
URL
PMID
|
| [17] |
S. Li, J. Jiang, Z. Dong, J. Wu, Z. Cheng, H. Zhu, Z. Fan, Y. Wang, D. Leng, Microporous Mesoporous Mater. 293, 109822(2020)
DOI
URL
|
| [18] |
L. Fan, H. Wu, X. Wu, M. Wang, J. Cheng, N. Zhang, Y. Feng, K. Sun, Electrochim. Acta 295, 444-451 (2019)
DOI
URL
|
| [19] |
F. Luna-Lama, C. Hernández-Rentero, J. Morales, A. Caballero, Electrochim. Acta 292, 522 (2018)
DOI
URL
|
| [20] |
D. Luo, G. Li, Y.P. Deng, Z. Zhang, J. Li, R. Liang, M. Li, Y. Jiang, W. Zhang, Y. Liu, Adv. Energy Mater. 18, 1900228(2019)
|
| [21] |
K. Lu, Y. Liu, J. Chen, Z. Zhang, Y. Cheng, ACS Nano 12, 14540 (2019)
|
| [22] |
Y. Zhong, K. Yang, W. Liu, P. He, V. Batista, H. Wang, J. Phys. Chem. C 121, 14222 (2017)
DOI
URL
|
| [23] |
J. He, L. Luo, Y. Chen, A. Manthiram, Adv. Mater. 34, 1702707(2017)
|
| [24] |
Y. Choi, B. Jung, D. Lee, J. Jeong, K. Kim, H. Ahn, K. Cho, H. Gu, Phys. Scr. T129, 62(2007)
DOI
URL
|
| [25] |
J. Park, K. An, Y. Hwang, J. Park, H. Noh, J. Kim, J. Park, N. Hwang, T. Hyeon, Nat. Mater. 12, 891(2004)
|
| [26] |
O.M. Lemine, Superlattices Microstruct. 6, 576(2009)
|
| [27] |
K.S. Sing, Pure Appl. Chem. 4, 603(1985)
|
| [28] |
H. Li, J. Wang, Y. Zhang, Y. Wang, A. Mentbayeva, Z. Bakenov, J. Power Sources 437, 226901 (2019)
DOI
URL
|
| [29] |
D. Wilson, M.A. Langell, Appl. Surf. Sci. 303, 6(2014)
DOI
URL
|
| [30] |
Y.V. Mikhaylik, J.R. Akridge, J. Electrochem. Soc. 11, A1969(2004)
|
| [31] |
D. Moy, A. Manivannan, S. Narayanan, J. Electrochem. Soc. 1, A1(2015)
|
| [32] |
Y. Liu, X. Qin, S. Zhang, G. Liang, F. Kang, G. Chen, B. Li, A.C.S. Appl, Mater. Interfaces 31, 26264 (2018)
|
| [33] |
S.Z. Xiong, K. Xie, X.B. Hong, J. Natl. Univ. Def. Technol. 2, 150(2012)
|