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Iron Oxide Nanotubes Incorporated with Fluoride Anions for Enhanced Li-Ion Intercalation
ECS Transactions
◽
10.1149/1.3557707
◽
2019
◽
Vol 33
(24)
◽
pp. 15-24
◽
Cited By ~ 1
Author(s):
Krishnan S. Raja
◽
Mano Misra
Keyword(s):
Iron Oxide
◽
Li Ion
◽
Ion Intercalation
Download Full-text
Related Documents
Cited By
References
Iron Oxide Nanotubes Incorporated with Fluoride Anions for Enhanced Li-Ion Intercalation
ECS Meeting Abstracts
◽
10.1149/ma2010-02/8/538
◽
2010
◽
Keyword(s):
Iron Oxide
◽
Li Ion
◽
Ion Intercalation
Download Full-text
A novel architectured negative electrode based on titania nanotube and iron oxide nanowire composites for Li-ion microbatteries
Journal of Materials Chemistry
◽
10.1039/b927122h
◽
2010
◽
Vol 20
(20)
◽
pp. 4041
◽
Cited By ~ 80
Author(s):
Gregorio F. Ortiz
◽
Ilie Hanzu
◽
Pedro Lavela
◽
José L. Tirado
◽
Philippe Knauth
◽
...
Keyword(s):
Iron Oxide
◽
Negative Electrode
◽
Titania Nanotube
◽
Li Ion
Download Full-text
Energy Storage Systems Beyond Li-Ion Intercalation Chemistry
10.3389/978-2-88966-819-9
◽
2021
◽
Keyword(s):
Energy Storage
◽
Storage Systems
◽
Energy Storage Systems
◽
Li Ion
◽
Ion Intercalation
Download Full-text
A Pseudolayered MoS2 as Li-Ion Intercalation Host with Enhanced Rate Capability and Durability
Small
◽
10.1002/smll.201803344
◽
2018
◽
Vol 14
(48)
◽
pp. 1803344
◽
Cited By ~ 8
Author(s):
Shan Gong
◽
Guangyu Zhao
◽
Pengbo Lyu
◽
Kening Sun
Keyword(s):
Rate Capability
◽
Li Ion
◽
Ion Intercalation
Download Full-text
Li‐Ion Batteries: Ultrafine Copper Nanopalm Tree‐Like Framework Decorated with Iron Oxide for Li‐Ion Battery Anodes with Exceptional Rate Capability and Cycling Stability (Adv. Energy Mater. 13/2019)
Advanced Energy Materials
◽
10.1002/aenm.201970039
◽
2019
◽
Vol 9
(13)
◽
pp. 1970039
Author(s):
Jae Young Seok
◽
Jaehak Lee
◽
Jung Hwan Park
◽
Minyang Yang
Keyword(s):
Iron Oxide
◽
Rate Capability
◽
Cycling Stability
◽
Li Ion Batteries
◽
Li Ion Battery
◽
Li Ion
◽
Ultrafine Copper
◽
Energy Mater
Download Full-text
Formation of artificial solid electrolyte interphase by grafting for improving Li-ion intercalation and preventing exfoliation of graphite
Carbon
◽
10.1016/j.carbon.2012.02.019
◽
2012
◽
Vol 50
(7)
◽
pp. 2599-2614
◽
Cited By ~ 31
Author(s):
Pallavi Verma
◽
Petr Novák
Keyword(s):
Solid Electrolyte
◽
Solid Electrolyte Interphase
◽
Li Ion
◽
Ion Intercalation
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Chemical Mass Production of MoS 2 /Graphene van der Waals Heterostructure as a High‐Performance Li‐ion Intercalation Host
ChemElectroChem
◽
10.1002/celc.201900783
◽
2019
◽
Vol 6
(13)
◽
pp. 3393-3400
◽
Cited By ~ 2
Author(s):
Shan Gong
◽
Guangyu Zhao
◽
Naiqing Zhang
◽
Kening Sun
Keyword(s):
Mass Production
◽
High Performance
◽
Van Der Waals
◽
Van Der Waals Heterostructure
◽
Li Ion
◽
Ion Intercalation
Download Full-text
Electrochemical Li-Ion Intercalation in Octacyanotungstate-Bridged Coordination Polymer with Evidence of Three Magnetic Regimes
Inorganic Chemistry
◽
10.1021/acs.inorgchem.6b01086
◽
2016
◽
Vol 55
(15)
◽
pp. 7637-7646
◽
Cited By ~ 13
Author(s):
Jérôme Long
◽
Daisuke Asakura
◽
Masashi Okubo
◽
Atsuo Yamada
◽
Yannick Guari
◽
...
Keyword(s):
Coordination Polymer
◽
Li Ion
◽
Ion Intercalation
Download Full-text
Synthesis, structure, and electrochemical Li-ion intercalation properties of Li2Ti3O7 with Na2Ti3O7-type layered structure
Solid State Ionics
◽
10.1016/j.ssi.2007.11.004
◽
2008
◽
Vol 178
(33-34)
◽
pp. 1725-1730
◽
Cited By ~ 58
Author(s):
K CHIBA
◽
N KIJIMA
◽
Y TAKAHASHI
◽
Y IDEMOTO
◽
J AKIMOTO
Keyword(s):
Layered Structure
◽
Li Ion
◽
Ion Intercalation
Download Full-text
Solventless synthesis of an iron-oxide/graphene nanocomposite and its application as an anode in high-rate Li-ion batteries
Journal of Materials Chemistry A
◽
10.1039/c3ta13717a
◽
2013
◽
Vol 1
(48)
◽
pp. 15442
◽
Cited By ~ 39
Author(s):
Byungchul Jang
◽
Oh B. Chae
◽
Seung-Keun Park
◽
Jeonghyun Ha
◽
Seung M. Oh
◽
...
Keyword(s):
Iron Oxide
◽
High Rate
◽
Li Ion Batteries
◽
Graphene Nanocomposite
◽
Li Ion
◽
Solventless Synthesis
Download Full-text
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