Takahiro Takei
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Explore the profile of Takahiro Takei including associated specialties, affiliations and a list of published articles.
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25
Citations
60
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Recent Articles
1.
Saito N, Cordier S, Ohsawa T, Saito N, Takei T, Grasset F, et al.
Inorg Chem
. 2025 Jan;
64(4):1909-1918.
PMID: 39763349
In this study, we investigate structural disorder and its implications in metal cluster (MC)-based compounds, specifically focusing on Cs[{MoX}X] (X = Cl and Br). Utilizing synchrotron radiation X-ray diffraction, Fourier...
2.
Kamada Y, Hayasaka R, Uchida K, Suzuki T, Takei T, Kitaura M, et al.
Materials (Basel)
. 2024 Jan;
17(2).
PMID: 38255506
Deep red phosphors have attracted much attention for their applications in lighting, medical diagnosis, health monitoring, agriculture, etc. A new phosphor host material based on fluorine-doped lithium aluminate (ALFO) was...
3.
Eddy D, Nur Sheha G, Permana M, Saito N, Takei T, Kumada N, et al.
Chemosphere
. 2024 Jan;
351:141206.
PMID: 38219987
The elution of pharmaceutical products such as metformin at higher concentrations than the safe level in aquatic systems is a serious threat to human health and the ecosystem. Photocatalytic technology...
4.
Eddy D, Permana M, Sakti L, Nur Sheha G, Solihudin , Hidayat S, et al.
Nanomaterials (Basel)
. 2023 Feb;
13(4).
PMID: 36839072
TiO exists naturally in three crystalline forms: Anatase, rutile, brookite, and TiO (B). These polymorphs exhibit different properties and consequently different photocatalytic performances. This paper aims to clarify the differences...
5.
Yanagida S, Yajima T, Takei T, Kumada N
J Environ Sci (China)
. 2021 Dec;
115:173-189.
PMID: 34969447
All-solid-state Z-scheme photocatalysts, containing CuO, TiO (rutile), and Au as the electron mediator, were prepared and applied to the reduction of Cr(VI) in aqueous solutions. The CuO-Au-TiO composites were prepared...
6.
Hossain K, Saiduzzaman M, Kumada N, Takei T, Yamane H, Rubel M
ACS Omega
. 2021 Jun;
6(24):15975-15980.
PMID: 34179642
A novel distorted perovskite-type (KSr)(NaCaBi)O was prepared by a hydrothermal method using the starting materials NaBiO·HO, Sr(OH)·8HO, Ca(OH), and KOH. Single-crystal X-ray diffraction of the novel compound revealed a GdFeO-related...
7.
Saiduzzaman M, Akutsu S, Kumada N, Takei T, Yanagida S, Yamane H, et al.
Inorg Chem
. 2020 Mar;
59(7):4950-4960.
PMID: 32212697
Four types of bismuth oxides, NaBiO, NaBiO, α-BiO, and ε-BiO, were obtained by hydrothermal reactions using NaBiO·HO in NaOH solution. The crystal structure of a new phase (Na Bi)BiO ((NaBi)BiO)...
8.
Saiduzzaman M, Yoshida H, Takei T, Yanagida S, Kumada N, Nagao M, et al.
Inorg Chem
. 2019 Aug;
58(18):11997-12001.
PMID: 31469548
A new superconducting double perovskite was successfully synthesized by a low-temperature hydrothermal reaction at 240 °C. The crystal structure refinement of this double perovskite was done by single-crystal X-ray diffraction,...
9.
Yang G, Takei T, Yanagida S, Kumada N
Molecules
. 2019 Mar;
24(5).
PMID: 30857377
Electrodes with nanosheet architectures can offer the possibility to achieve enhanced energy storage performance. Herein, we have designed and synthesized novel nanosheet structures of CoAl layered double hydroxide (LDH)-polyaniline (PANI)...
10.
Saiduzzaman M, Takei T, Yanagida S, Kumada N, Das H, Kyokane H, et al.
Inorg Chem
. 2019 Jan;
58(3):1759-1763.
PMID: 30652480
The pyrochlore-type CaBiO and SrBiO have been synthesized from a low-temperature hydrothermal route using NaBiO·nHO as a starting material. The crystal structures of these compounds were refined using synchrotron powder...