Hisao Kiuchi
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Explore the profile of Hisao Kiuchi including associated specialties, affiliations and a list of published articles.
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20
Citations
52
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Recent Articles
1.
Matsuzaki T, Kosugi K, Iwami H, Kambe T, Kiuchi H, Harada Y, et al.
Nat Commun
. 2025 Mar;
16(1):2145.
PMID: 40044652
Water oxidation is the key reaction in natural and artificial photosyntheses but is kinetically and thermodynamically sluggish. Extensive efforts have been made to develop artificial systems comparable to the natural...
2.
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...
3.
Asakura D, Sudayama T, Nanba Y, Hosono E, Kiuchi H, Yamazoe K, et al.
Phys Chem Chem Phys
. 2024 Dec;
27(8):4092-4098.
PMID: 39692579
To understand the electronic-structure change of LiCoO, a widely used cathode material in Li-ion batteries, during charge-discharge, we performed soft X-ray absorption spectroscopy (XAS) and resonant soft X-ray emission spectroscopy...
4.
Izumi Y, Ugalino R, Miyawaki J, Shibazaki C, Adachi M, Kurahashi N, et al.
Dalton Trans
. 2024 Dec;
54(5):1980-1985.
PMID: 39676605
X-ray absorption near edge structure (XANES) spectra of blue copper proteins, amicyanin and azurin, in the solution state were measured in the copper L-edge energy region. The absorption peak energies...
5.
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...
6.
Higaki Y, Masuda T, Shiomoto S, Tanaka Y, Kiuchi H, Harada Y, et al.
Langmuir
. 2024 Sep;
40(37):19612-19618.
PMID: 39227353
Advanced materials leveraging water control are garnering considerable interest, with the state of water emerging as a critical aspect of material design. This study explored the impact of microphase separation...
7.
Ugalino R, Yamazoe K, Miyawaki J, Kiuchi H, Kurahashi N, Kosegawa Y, et al.
J Synchrotron Radiat
. 2024 Feb;
31(Pt 2):217-221.
PMID: 38363223
Metal-organic frameworks (MOFs) exhibit structural flexibility induced by temperature and guest adsorption, as demonstrated in the structural breathing transition in certain MOFs between narrow-pore and large-pore phases. Soft modes were...
8.
Zhang W, Hosono E, Asakura D, Yuzawa H, Ohigashi T, Kobayashi M, et al.
Sci Rep
. 2023 Mar;
13(1):4639.
PMID: 36944681
Lithium-ion deintercalation/intercalation during charge/discharge processes is one of the essential reactions that occur in the layered cathodes of lithium-ion batteries, and the performance of the cathode can be expressed as...
9.
Hikima K, Shimizu K, Kiuchi H, Hinuma Y, Suzuki K, Hirayama M, et al.
Commun Chem
. 2023 Jan;
5(1):52.
PMID: 36697852
Material characterization that informs research and development of batteries is generally based on well-established ex situ and in situ experimental methods that do not consider the band structure. This is...
10.
resonant soft X-ray emission spectroscopy of the LiMnO cathode using an aqueous electrolyte solution
Asakura D, Nanba Y, Niwa H, Kiuchi H, Miyawaki J, Okubo M, et al.
Phys Chem Chem Phys
. 2022 Jun;
24(32):19177-19183.
PMID: 35731227
The Mn 3d electronic-structure change of the LiMnO cathode during Li-ion extraction/insertion in an aqueous electrolyte solution was studied by resonant soft X-ray emission spectroscopy (RXES). The Mn L RXES...