References
[1]
Tarascon JM, Armand M. Nature, 2001, 414: 359–367.
Google Scholar
http://scholar.google.com/scholar_lookup?title=Tarascon JM, Armand M. Nature, 2001, 414: 359–367&
[2]
Zu
CX,
Li
H.
Energy Environ Sci,
2011, 4: 2614
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Zu CX&author=Li H&publication_year=2011&journal=Energy Environ Sci&volume=4&pages=2614
[3]
Li
L,
Chen
C,
Yu
A.
Sci China Chem,
2017, 60: 1402-1412
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Li L&author=Chen C&author=Yu A&publication_year=2017&journal=Sci China Chem&volume=60&pages=1402-1412
[4]
Wu
Z,
Li
F,
Sun
Y,
Bin
D,
Piao
J,
Lin
X,
Liu
X,
Cao
A,
Wan
L.
Sci China Chem,
2017, 60: 1180-1186
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Wu Z&author=Li F&author=Sun Y&author=Bin D&author=Piao J&author=Lin X&author=Liu X&author=Cao A&author=Wan L&publication_year=2017&journal=Sci China Chem&volume=60&pages=1180-1186
[5]
Yuan
T,
Tan
Z,
Ma
C,
Yang
J,
Ma
ZF,
Zheng
S.
Adv Energy Mater,
2017, 7: 1601625
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Yuan T&author=Tan Z&author=Ma C&author=Yang J&author=Ma ZF&author=Zheng S&publication_year=2017&journal=Adv Energy Mater&volume=7&pages=1601625
[6]
Griffith
KJ,
Forse
AC,
Griffin
JM,
Grey
CP.
J Am Chem Soc,
2016, 138: 8888-8899
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Griffith KJ&author=Forse AC&author=Griffin JM&author=Grey CP&publication_year=2016&journal=J Am Chem Soc&volume=138&pages=8888-8899
[7]
Han
P,
Yue
Y,
Zhang
L,
Xu
H,
Liu
Z,
Zhang
K,
Zhang
C,
Dong
S,
Ma
W,
Cui
G.
Carbon,
2012, 50: 1355-1362
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Han P&author=Yue Y&author=Zhang L&author=Xu H&author=Liu Z&author=Zhang K&author=Zhang C&author=Dong S&author=Ma W&author=Cui G&publication_year=2012&journal=Carbon&volume=50&pages=1355-1362
[8]
Goodenough
JB,
Kim
Y.
Chem Mater,
2010, 22: 587-603
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Goodenough JB&author=Kim Y&publication_year=2010&journal=Chem Mater&volume=22&pages=587-603
[9]
Zhang
SS.
J Power Sources,
2006, 161: 1385-1391
CrossRef
ADS
Google Scholar
http://scholar.google.com/scholar_lookup?author=Zhang SS&publication_year=2006&journal=J Power Sources&volume=161&pages=1385-1391
[10]
Thackeray
MM.
J Electrochem Soc,
1995, 142: 2558-2563
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Thackeray MM&publication_year=1995&journal=J Electrochem Soc&volume=142&pages=2558-2563
[11]
Zhu
GN,
Wang
YG,
Xia
YY.
Energy Environ Sci,
2012, 5: 6652
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Zhu GN&author=Wang YG&author=Xia YY&publication_year=2012&journal=Energy Environ Sci&volume=5&pages=6652
[12]
Zhao
B,
Deng
X,
Ran
R,
Liu
M,
Shao
Z.
Adv Energy Mater,
2016, 6: 1500924
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Zhao B&author=Deng X&author=Ran R&author=Liu M&author=Shao Z&publication_year=2016&journal=Adv Energy Mater&volume=6&pages=1500924
[13]
Zhang
A,
Zheng
ZM,
Cheng
FY,
Tao
ZL,
Chen
J.
Sci China Chem,
2011, 54: 936-940
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Zhang A&author=Zheng ZM&author=Cheng FY&author=Tao ZL&author=Chen J&publication_year=2011&journal=Sci China Chem&volume=54&pages=936-940
[14]
Wu
X,
Miao
J,
Han
W,
Hu
YS,
Chen
D,
Lee
JS,
Kim
J,
Chen
L.
Electrochem Commun,
2012, 25: 39-42
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Wu X&author=Miao J&author=Han W&author=Hu YS&author=Chen D&author=Lee JS&author=Kim J&author=Chen L&publication_year=2012&journal=Electrochem Commun&volume=25&pages=39-42
[15]
Cheng
Q,
Liang
J,
Zhu
Y,
Si
L,
Guo
C,
Qian
Y.
J Mater Chem A,
2014, 2: 17258-17262
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Cheng Q&author=Liang J&author=Zhu Y&author=Si L&author=Guo C&author=Qian Y&publication_year=2014&journal=J Mater Chem A&volume=2&pages=17258-17262
[16]
Liu
G,
Jin
B,
Zhang
R,
Bao
K,
Xie
H,
Guo
J,
Wei
M,
Jiang
Q.
Int J Hydrogen Energy,
2016, 41: 14807-14812
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Liu G&author=Jin B&author=Zhang R&author=Bao K&author=Xie H&author=Guo J&author=Wei M&author=Jiang Q&publication_year=2016&journal=Int J Hydrogen Energy&volume=41&pages=14807-14812
[17]
Deng
S,
Luo
Z,
Liu
Y,
Lou
X,
Lin
C,
Yang
C,
Zhao
H,
Zheng
P,
Sun
Z,
Li
J,
Wang
N,
Wu
H.
J Power Sources,
2017, 362: 250-257
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Deng S&author=Luo Z&author=Liu Y&author=Lou X&author=Lin C&author=Yang C&author=Zhao H&author=Zheng P&author=Sun Z&author=Li J&author=Wang N&author=Wu H&publication_year=2017&journal=J Power Sources&volume=362&pages=250-257
[18]
Takashima
T,
Tojo
T,
Inada
R,
Sakurai
Y.
J Power Sources,
2015, 276: 113-119
CrossRef
ADS
Google Scholar
http://scholar.google.com/scholar_lookup?author=Takashima T&author=Tojo T&author=Inada R&author=Sakurai Y&publication_year=2015&journal=J Power Sources&volume=276&pages=113-119
[19]
Lin
C,
Yu
S,
Zhao
H,
Wu
S,
Wang
G,
Yu
L,
Li
Y,
Zhu
ZZ,
Li
J,
Lin
S.
Sci Rep,
2015, 5: 17836
CrossRef
PubMed
ADS
Google Scholar
http://scholar.google.com/scholar_lookup?author=Lin C&author=Yu S&author=Zhao H&author=Wu S&author=Wang G&author=Yu L&author=Li Y&author=Zhu ZZ&author=Li J&author=Lin S&publication_year=2015&journal=Sci Rep&volume=5&pages=17836
[20]
Lin
C,
Yu
S,
Wu
S,
Lin
S,
Zhu
ZZ,
Li
J,
Lu
L.
J Mater Chem A,
2015, 3: 8627-8635
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Lin C&author=Yu S&author=Wu S&author=Lin S&author=Zhu ZZ&author=Li J&author=Lu L&publication_year=2015&journal=J Mater Chem A&volume=3&pages=8627-8635
[21]
Guo
B,
Yu
X,
Sun
XG,
Chi
M,
Qiao
ZA,
Liu
J,
Hu
YS,
Yang
XQ,
Goodenough
JB,
Dai
S.
Energy Environ Sci,
2014, 7: 2220-2226
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Guo B&author=Yu X&author=Sun XG&author=Chi M&author=Qiao ZA&author=Liu J&author=Hu YS&author=Yang XQ&author=Goodenough JB&author=Dai S&publication_year=2014&journal=Energy Environ Sci&volume=7&pages=2220-2226
[22]
Park
H,
Shin
DH,
Song
T,
Park
WI,
Paik
U.
J Mater Chem A,
2017, 5: 6958-6965
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Park H&author=Shin DH&author=Song T&author=Park WI&author=Paik U&publication_year=2017&journal=J Mater Chem A&volume=5&pages=6958-6965
[23]
Wang
WL,
Oh
BY,
Park
JY,
Ki
H,
Jang
J,
Lee
GY,
Gu
HB,
Ham
MH.
J Power Sources,
2015, 300: 272-278
CrossRef
ADS
Google Scholar
http://scholar.google.com/scholar_lookup?author=Wang WL&author=Oh BY&author=Park JY&author=Ki H&author=Jang J&author=Lee GY&author=Gu HB&author=Ham MH&publication_year=2015&journal=J Power Sources&volume=300&pages=272-278
[24]
Yang
C,
Deng
S,
Lin
C,
Lin
S,
Chen
Y,
Li
J,
Wu
H.
Nanoscale,
2016, 8: 18792-18799
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Yang C&author=Deng S&author=Lin C&author=Lin S&author=Chen Y&author=Li J&author=Wu H&publication_year=2016&journal=Nanoscale&volume=8&pages=18792-18799
[25]
Yu
H,
Lan
H,
Yan
L,
Qian
S,
Cheng
X,
Zhu
H,
Long
N,
Shui
M,
Shu
J.
Nano Energy,
2017, 38: 109-117
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Yu H&author=Lan H&author=Yan L&author=Qian S&author=Cheng X&author=Zhu H&author=Long N&author=Shui M&author=Shu J&publication_year=2017&journal=Nano Energy&volume=38&pages=109-117
[26]
Cao
AM,
Hu
JS,
Wan
LJ.
Sci China Chem,
2012, 55: 2249-2256
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Cao AM&author=Hu JS&author=Wan LJ&publication_year=2012&journal=Sci China Chem&volume=55&pages=2249-2256
[27]
Yang
C,
Yu
S,
Lin
C,
Lv
F,
Wu
S,
Yang
Y,
Wang
W,
Zhu
ZZ,
Li
J,
Wang
N,
Guo
S.
ACS Nano,
2017, 11: 4217-4224
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Yang C&author=Yu S&author=Lin C&author=Lv F&author=Wu S&author=Yang Y&author=Wang W&author=Zhu ZZ&author=Li J&author=Wang N&author=Guo S&publication_year=2017&journal=ACS Nano&volume=11&pages=4217-4224
[28]
Wadsley
AD.
Acta Cryst,
1961, 14: 664-670
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Wadsley AD&publication_year=1961&journal=Acta Cryst&volume=14&pages=664-670
[29]
Park
H,
Wu
HB,
Song
T,
David Lou
XW,
Paik
U.
Adv Energy Mater,
2015, 5: 1401945
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Park H&author=Wu HB&author=Song T&author=David Lou XW&author=Paik U&publication_year=2015&journal=Adv Energy Mater&volume=5&pages=1401945
[30]
Tanski
JM,
Lobkovsky
EB,
Wolczanski
P.
J Solid State Chem,
2000, 152: 130-140
CrossRef
ADS
Google Scholar
http://scholar.google.com/scholar_lookup?author=Tanski JM&author=Lobkovsky EB&author=Wolczanski P&publication_year=2000&journal=J Solid State Chem&volume=152&pages=130-140
[31]
Guan
J,
Mou
F,
Sun
Z,
Shi
W.
Chem Commun,
2010, 46: 6605-6607
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Guan J&author=Mou F&author=Sun Z&author=Shi W&publication_year=2010&journal=Chem Commun&volume=46&pages=6605-6607
[32]
Shen
L,
Yu
L,
Yu
XY,
Zhang
X,
Lou
XWD.
Angew Chem Int Ed,
2015, 54: 1868-1872
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Shen L&author=Yu L&author=Yu XY&author=Zhang X&author=Lou XWD&publication_year=2015&journal=Angew Chem Int Ed&volume=54&pages=1868-1872
[33]
Liu
B,
Li
X,
Zhao
Q,
Hou
Y,
Chen
G.
J Mater Chem A,
2017, 5: 8909-8915
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Liu B&author=Li X&author=Zhao Q&author=Hou Y&author=Chen G&publication_year=2017&journal=J Mater Chem A&volume=5&pages=8909-8915
[34]
Hu
LL,
Yang
LP,
Zhang
D,
Tao
XS,
Zeng
C,
Cao
AM,
Wan
LJ.
Chem Commun,
2017, 53: 11189-11192
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Hu LL&author=Yang LP&author=Zhang D&author=Tao XS&author=Zeng C&author=Cao AM&author=Wan LJ&publication_year=2017&journal=Chem Commun&volume=53&pages=11189-11192
[35]
Yang
LP,
Lin
XJ,
Zhang
X,
Zhang
W,
Cao
AM,
Wan
LJ.
J Am Chem Soc,
2016, 138: 5916-5922
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Yang LP&author=Lin XJ&author=Zhang X&author=Zhang W&author=Cao AM&author=Wan LJ&publication_year=2016&journal=J Am Chem Soc&volume=138&pages=5916-5922
[36]
Zhou
L,
Zhuang
Z,
Zhao
H,
Lin
M,
Zhao
D,
Mai
L.
Adv Mater,
2017, 29: 1602914
CrossRef
PubMed
Google Scholar
http://scholar.google.com/scholar_lookup?author=Zhou L&author=Zhuang Z&author=Zhao H&author=Lin M&author=Zhao D&author=Mai L&publication_year=2017&journal=Adv Mater&volume=29&pages=1602914
[37]
Liu
J,
Wickramaratne
NP,
Qiao
SZ,
Jaroniec
M.
Nat Mater,
2015, 14: 763-774
CrossRef
PubMed
ADS
Google Scholar
http://scholar.google.com/scholar_lookup?author=Liu J&author=Wickramaratne NP&author=Qiao SZ&author=Jaroniec M&publication_year=2015&journal=Nat Mater&volume=14&pages=763-774
[38]
Mao
W,
Liu
K,
Guo
G,
Liu
G,
Bao
K,
Guo
J,
Hu
M,
Wang
W,
Li
B,
Zhang
K,
Qian
Y.
Electrochim Acta,
2017, 253: 396-402
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Mao W&author=Liu K&author=Guo G&author=Liu G&author=Bao K&author=Guo J&author=Hu M&author=Wang W&author=Li B&author=Zhang K&author=Qian Y&publication_year=2017&journal=Electrochim Acta&volume=253&pages=396-402
[39]
Pham-Cong
D,
Kim
J,
Tran
VT,
Kim
SJ,
Jeong
SY,
Choi
JH,
Cho
CR.
Electrochim Acta,
2017, 236: 451-459
CrossRef
Google Scholar
http://scholar.google.com/scholar_lookup?author=Pham-Cong D&author=Kim J&author=Tran VT&author=Kim SJ&author=Jeong SY&author=Choi JH&author=Cho CR&publication_year=2017&journal=Electrochim Acta&volume=236&pages=451-459
[40]
Yang
C,
Yu
S,
Ma
Y,
Lin
C,
Xu
Z,
Zhao
H,
Wu
S,
Zheng
P,
Zhu
ZZ,
Li
J,
Wang
N.
J Power Sources,
2017, 360: 470-479
CrossRef
ADS
Google Scholar
http://scholar.google.com/scholar_lookup?author=Yang C&author=Yu S&author=Ma Y&author=Lin C&author=Xu Z&author=Zhao H&author=Wu S&author=Zheng P&author=Zhu ZZ&author=Li J&author=Wang N&publication_year=2017&journal=J Power Sources&volume=360&pages=470-479