Koji Nakanishi
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Explore the profile of Koji Nakanishi including associated specialties, affiliations and a list of published articles.
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155
Citations
3293
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Recent Articles
1.
Zhang D, Yamamoto K, Cao Z, Wang Y, Zhong Z, Kiuchi H, et al.
J Am Chem Soc
. 2025 Jan;
147(7):5649-5657.
PMID: 39804710
All-solid-state fluoride-ion batteries (FIBs) have attracted extensive attention as candidates for next-generation energy storage devices; however, promising cathodes with high energy density are still lacking. In this study, CuN is...
2.
Motoyama M, Sakurai K, Nakagawa T, Nakatani T, Kiuchi H, Nakanishi K, et al.
ACS Appl Mater Interfaces
. 2024 Sep;
16(40):53631-53642.
PMID: 39322220
All-solid-state fluoride batteries have the potential to achieve energy densities significantly higher than those of lithium-ion batteries. A common cathode material for fluoride batteries is Cu. Cu has a low...
3.
Suganuma J, Ueta K, Nakanishi K, Ikeda Y, Morioka S
Neurosci Lett
. 2024 Jul;
837:137900.
PMID: 39019147
The mechanism by which postural threat induced by standing at a high height causes a decrease in the amplitude and an increase in the frequency of postural sway might involve...
4.
Iwasa S, Akaguchi R, Okuno H, Nakanishi K, Ueta K, Morioka S
Cureus
. 2024 Jan;
15(12):e51033.
PMID: 38264384
Spinocerebellar degeneration (SCD) is a progressive disease characterized by cerebellar ataxia or the posterior spinal cord. Among these, spinocerebellar ataxia type 31 (SCA31) is genetically more common in the Japanese...
5.
Miki H, Yamamoto K, Nakaki H, Yoshinari T, Nakanishi K, Nakanishi S, et al.
J Am Chem Soc
. 2024 Jan;
146(6):3844-3853.
PMID: 38193701
Developing electrochemical high-energy storage systems is of crucial importance toward a green and sustainable energy supply. A promising candidate is fluoride-ion batteries (FIBs), which can deliver a much higher volumetric...
6.
Chamidah N, Suzuki A, Shimizu T, Zhong C, Shimoda K, Okazaki K, et al.
RSC Adv
. 2023 Jun;
13(25):17114-17120.
PMID: 37293473
Silicon has been considered to be one of the most promising anode active materials for next-generation lithium-ion batteries due to its large theoretical capacity (4200 mA h g, LiSi). However,...
7.
Feng S, Xu W, Nakanishi K, Yamago S
ACS Macro Lett
. 2022 May;
1(1):146-149.
PMID: 35578492
Ionic liquids (ILs) served perfectly as solvents for the organotellurium-mediated living radical polymerization (TERP) of methyl methacrylate (MMA), methyl acrylate (MA), and styrene. The reaction rate of polymerizing MMA and...
8.
Xiao Y, Yamamoto K, Matsui Y, Watanabe T, Nakanishi K, Uchiyama T, et al.
RSC Adv
. 2022 May;
10(65):39875-39880.
PMID: 35515411
Sulfur is a promising material for next-generation cathodes, owing to its high energy and low cost. However, sulfur cathodes have the disadvantage of serious cyclability issues due to the dissolution...
9.
Sawamura M, Kobayakawa S, Kikkawa J, Sharma N, Goonetilleke D, Rawal A, et al.
ACS Cent Sci
. 2020 Dec;
6(12):2326-2338.
PMID: 33376794
Nanostructured LiMnO integrated with LiPO was successfully synthesized by the mechanical milling route and examined as a new series of positive electrode materials for rechargeable lithium batteries. Although uniform mixing...
10.
Tuerxun F, Yamamoto K, Hattori M, Mandai T, Nakanishi K, Choudhary A, et al.
ACS Appl Mater Interfaces
. 2020 May;
12(23):25775-25785.
PMID: 32395982
To clarify the origin of the polarization of magnesium deposition/dissolution reactions, we combined electrochemical measurement, soft X-ray absorption spectroscopy ( SXAS), Raman, and density functional theory (DFT) techniques to three...