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在“
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”中,
命中:
10,150
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在所有数据库中总计命中:
11,525
条
1.
Spinel
-structure
d
surface layers for facile Li ion transport an
d
improve
d
chemical stability of lithium manganese oxi
d
e
spinel
作者:
Hae Ri Lee
a
;
b
;
1
;
Hyo Ree Seo
a
;
1
;
Boeun Lee
a
;
Byung Won Cho
a
;
Kwan-Young Lee
b
;
Si Hyoung Oh
a
;
sho74@kist.re.kr" class="auth_mail" title="E-mail the correspon
d
ing author
关键词:
LiMn2O4
;
Spinel
;
Surface coating
;
X-Ray absorption spectroscopy
;
Oxi
d
ation state
刊名:Applie
d
Surface Science
出版年:2017
2.
Synthesis an
d
electrochemical properties of
d
ual
d
ope
d
spinel
s LiNi
x
Al
y
Mn
2
−
x
−
y
O
4
via facile novel chelate
d
sol-gel metho
d
as possible catho
d
e material for lithium rechargeable batteries
作者:
R. Thirunakaran
a
;
rthirunakaran@yahoo.com
;
Gil Hwan Lew
b
;
Won-Sub Yoon
b
;
wsyoon@skku.e
d
u
关键词:
Multi-
d
oping
;
Sol&n
d
ash
;
gel metho
d
;
Behenic aci
d
;
D
ifferential capacity
;
Spinel
catho
d
e
刊名:Journal of Energy Chemistry
出版年:2017
3.
Highest UV-vis transparency of MgAl
2
O
4
spinel
ceramics prepare
d
by hot pressing with LiF
作者:
Katja Waetzig
;
katja.waetzig@ikts.fraunhofer.
d
e
;
Thomas Hutzler
关键词:
Transparent ceramic
;
Spinel
;
Hot-pressing
;
UV transmission
;
Optical properties
刊名:Journal of the European Ceramic Society
出版年:2017
4.
Contemporary artists'
spinel
pigments: Non-invasive characterization by means of electronic spectroscopy
作者:
Eva Mariasole Angelin
a
;
e.angelin@campus.fct.unl.pt
;
Mauro Bacci
a
;
Giovanni Bartolozzi
a
;
Emma Cantisani
b
;
Marcello Picollo
a
关键词:
Acrylic paints
;
UV&n
d
ash
;
vis-NIR spectroscopy
;
Electronic transitions
;
Spinel
pigments
;
Contemporary art
;
XR
D
;
XRF
刊名:Spectrochimica Acta Part A: Molecular an
d
Biomolecular Spectroscopy
出版年:2017
5.
Combustion-synthesize
d
Li
x
Mn
2
O
4
-base
d
spinel
nanoro
d
s as catho
d
e materials for lithium-ion batteries
作者:
Pinelopi Angelopoulou
a
;
b
;
Fotis Paloukis
b
;
Grzegorz Słowik
c
;
Grzegorz Wó
;
jcik
c
;
George Avgouropoulos
a
;
geoavg@upatras.gr
关键词:
Li batteries
;
LiMn2O4
spinel
;
D
oping
;
Nanostructures
;
Combustion metho
d
刊名:Chemical Engineering Journal
出版年:2017
6.
Enhancing the performance of high-voltage LiCoMnO
4
spinel
electro
d
es by fluorination
作者:
Anna Win
d
mü
;
ller
a
;
b
;
a.win
d
mueller@fz-juelich.
d
e
;
Chih-Long Tsai
a
;
b
;
Sö
;
ren Mö
;
ller
a
;
Matthias Balski
c
;
Yoo Jung Sohn
a
;
b
;
Sven Uhlenbruck
a
;
b
;
Olivier Guillon
a
;
b
关键词:
Lithium-ion batteries
;
High-voltage
spinel
;
Fluorination
刊名:Journal of Power Sources
出版年:2017
7.
One-step solvothermal synthesis of spherical
spinel
type NiFe
2−x
Mn
x
O
4
-RGO as high-performance supercapacitor electro
d
es
作者:
Qiling Qiu
a
;
Yifan Chen
b
;
Jinjuan Xue
a
;
Junwu Zhu
c
;
Yongsheng Fu
c
;
Guangyu He
a
;
hgy610@hotmail.com
;
Haiqun Chen
a
;
hqchenyf@hotmail.com
关键词:
Solvothermal proce
d
ure
;
Spinel
type
;
NiFe2&minus
;
xMnxO4-RGO
;
Supercapacitor
刊名:Ceramics International
出版年:2017
8.
Nano-structure
d
MgAl
2
O
4
spinel
consoli
d
ate
d
by high pressure spark plasma sintering (HPSPS)
作者:
M. Sokol
;
M. Halabi
;
S. Kalabukhov
;
N. Frage
;
nfrage@bgu.ac.il" class="auth_mail" title="E-mail the correspon
d
ing author
关键词:
Spinel
;
Spark plasma sintering
;
Transparent ceramic
;
High pressure
;
Mechanical properties
刊名:Journal of the European Ceramic Society
出版年:2017
9.
Or
d
ere
d
mesoporous MCo
2
O
4
(M = Cu, Zn an
d
Ni)
spinel
catalysts with high catalytic performance for methane combustion
作者:
Tae Hwan Lim
a
;
Su Bin Park
b
;
Ji Man Kim
b
;
D
o Heui Kim
a
;
d
ohkim@snu.ac.kr
关键词:
Methane combustion
;
Metal cobalt
spinel
;
Mesoporous mixe
d
metal oxi
d
e
刊名:Journal of Molecular Catalysis A: Chemical
出版年:2017
10.
Synthesis an
d
characterisation of MnGa
x
Cr
2−x
O
4
(0.1≤x≤1)
spinel
s as potential electro
d
e support materials for interme
d
iate-temperature soli
d
oxi
d
e fuel cells
作者:
Mingming Li
a
;
Jigui Cheng
a
;
b
;
jgcheng63@sina.com
;
Zhenhao Chen
a
;
Chenxi Xu
a
;
b
关键词:
Interme
d
iate-temperature soli
d
oxi
d
e fuel cells
;
Electro
d
e support materials
;
Spinel
structure
;
Electrochemical performance
刊名:Ceramics International
出版年:2017
1
2
3
4
5
6
7
8
9
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