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Hiroaki Kobayashi
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Ultraporous, Ultrasmall MgMn<sub>2</sub>O<sub>4</sub> Spinel Cathode for a Room-Temperature Magnesium Rechargeable Battery
Description/Abstract:
we fabricate an ultraporous (>500 m2 g−1) and ultrasmall (<2.5 nm) cubic spinel MgMn2O4 (MMO) by a freeze-dry assisted room-temperature a...
Keyword:
cathode materials
,
cubic metastable spinel
,
freeze-drying
,
magnesium battery
, and
porous nanoparticles
Resource Type:
Article
Author:
Hiroaki Kobayashi
,
Yu Fukumi
,
Hiroto Watanabe
,
Reona Iimura
,
Naomi Nishimura
,
Toshihiko Mandai
,
Yoichi Tominaga
,
Masanobu Nakayama
,
Tetsu Ichitsubo
,
Itaru Honma
, and
Hiroaki Imai
Journal:
ACS Nano
Date Uploaded:
10/10/2024
First-principles study of the reconstruction of MgM2O4 (M = Mn, Fe, Co) spinel surface
Description/Abstract:
MgM2O4 (M = Mn, Fe, Co) spinels, which transform into rock-salt phases on Mg incorporation, are attractive cathode materials for future M...
Keyword:
Cathode
,
First-principles calculations
,
Mg-battery
,
Spinel Surface
, and
Surface reconstruction
Resource Type:
Article
Author:
Tomoaki Kaneko
,
Yui Fujihara
,
Hiroaki Kobayashi
, and
Keitaro Sodeyama
Date Uploaded:
01/02/2023
Date Modified:
20/03/2024
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Cathode
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First-principles calculations
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Spinel Surface
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English
2
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American Chemical Society (ACS)
1
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Rights Statement Sim
Creative Commons BY Attribution 4.0 International
1
Creative Commons BY-NC-ND Attribution-NonCommercial-NoDerivs 4.0 International
1
Author
Hiroaki Kobayashi
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2
Hiroaki Imai
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Hiroto Watanabe
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Itaru Honma
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Keitaro Sodeyama
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Advanced Low Carbon Technology Research and Development Program
1
Japan Society for the Promotion of Science
1
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ACS Nano
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